فهرست مطالب

علوم باغبانی - سال سی و هفتم شماره 3 (پیاپی 59، پاییز 1402)

نشریه علوم باغبانی
سال سی و هفتم شماره 3 (پیاپی 59، پاییز 1402)

  • تاریخ انتشار: 1402/09/28
  • تعداد عناوین: 20
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  • ناهید زمردی، محمود شور*، علی تهرانی فر، مرتضی گلدانی صفحات 589-597

    دی اکسید کربن یکی از گازهای موجود در اتمسفر می باشد. غلظت دی اکسیدکربن اتمسفر طی چند دهه گذشته افزایش یافته است. بنابراین انتظار می رود که این افزایش روی گیاهان موثر واقع شود. به منظور ارزیابی اثرات غلظت های مختلف دی اکسید کربن بر برخی صفات آناتومیکی دو گونه فیکوس زینتی (فیکوس بنجامین و فیکوس الاستیکا) یک آزمایش اسپلیت پلات بر پایه ی طرح کاملا تصادفی با سه تکرار در گلخانه دانشکده کشاورزی دانشگاه فردوسی مشهد انجام شد. تیمارهای موردنظر شامل دو گونه فیکوس زینتی و سه غلظت دی اکسید کربن (غلظت 380 پی پی ام (شاهد)، 700 و 1050 پی پی ام) بودند. در این آزمایش، هشت صفت آناتومیکی نظیر تراکم روزنه، تراکم سلول های اپیدرمی، عرض روزنه، طول روزنه، شاخص روزنه، مساحت روزنه، مساحت اپیدرم و قطر روزنه روی گیاهان مورد نظر ارزیابی گردید. نتایج نشان داد که تقریبا تمام صفات مورد مطالعه تحت تاثیر دی اکسید کربن قرار گرفت. غلظت 700 پی پی ام دی اکسید کربن بیشترین تاثیر را بر صفات مورد مطالعه داشت. غلظت 700 پی پی ام بیشترین تاثیر را بر صفت مساحت روزنه داشت. میانگین عرض روزنه و تراکم روزنه به ترتیب 28/21 و 91 درصد نسبت به میانگین شاهد افزایش یافت. همچنین این نتایج نشان داد که بیشترین میانگین تراکم روزنه، تراکم سلول های اپیدرمی، مساحت روزنه و قطر روزنه مربوط به گونه فیکوس الاستیکا بود. در بین گونه های مورد بررسی، گونه فیکوس الاستیکا نسبت به گونه فیکوس بنجامین در تمامی صفات برتری نشان داد. در واقع پاسخ روزنه ها به تغییرات محیطی به صفاتی همچون قطر روزنه، تراکم روزنه، شاخص روزنه، اندازه سلول های محافظ و منافذ روزنه و سطح برگ مربوط است که در تبادلات گازی بین گیاه و جو شرکت می کنند.

    کلیدواژگان: الاستیکا، بنجامین، تراکم روزنه، دی اکسید کربن و صفات آناتومیکی
  • سید عباس راضی، داود هاشم آبادی*، بهزاد کاویانی صفحات 599-614
    میخک (Dianthus caryophyllus L.) یکی از مهم ترین گل های شاخه بریده ی جهان است که ارزش بالایی در صنعت گلکاری دارد. این گل فرازگرا به اتیلن و تنش آبی پس از برداشت بسیار حساس است و عمر گلجایی نسبتا پایینی دارد. بیشتر اثرات منفی روی گل های شاخه بریده ناشی از تولید اتیلن است. استفاده از ترکیبات کاهنده یا ممانعت کننده ی سنتز اتیلن راهی موثر در افزایش عمر پس از برداشت میخک است. هدف از پژوهش حاضر، افزایش عمر گلجایی گل شاخه بریده ی میخک رقم ’تمپو‘ با استفاده از مقادیر 01/0، 02/0 و 05/0 میلی مولار پوتریسین و روش های کاربرد پیوسته، پالس و اسپری بود. یک آزمایش بر پایه ی طرح کاملا تصادفی با 10 تیمار در 3 تکرار و 150 شاخه گل انجام شد. در این پژوهش، صفات عمر گلجایی، درجه بریکس، جذب آب، کاهش وزن تر، درصد ماده خشک، کاروتنویید گلبرگ، کلروفیل برگ، نشت یونی، آنزیم پراکسیداز، آنزیم سوپراکسیددیسموتاز و اتیلن اندازه گیری شدند. نتایج نشان داد که بیشترین عمر گلجایی (14 روز) در گل های شاخه بریده ی تیمارشده با 02/0 میلی مولار پوترسین به صورت اسپری (محلول پاشی) مشاهده شد. این تیمار همچنین باعث تولید کمترین اتیلن (36/2 نانولیتر در لیتر در ساعت در گرم وزن تر)، بیشترین جذب آب (88/1 میلی لیتر در هر گرم وزن تر) و بیشترین فعالیت آنزیم سوپراکسید دیسموتاز (04/23 واحد آنزیم در هر گرم وزن تر) گردید. برخی شاخص های فیزیولوژیک و فعالیت آنزیمی دیگر نیز مورد ارزیابی قرار گرفتند. در صفات عمر گلجایی، جذب آب، درجه ی بریکس، درصد ماده ی خشک، میزان کاروتنویید و فعالیت آنزیم های پراکسیداز و سوپراکسیددیسموتاز، کمترین ارزش در گل های شاخه بریده ی شاهد ثبت شد.
    کلیدواژگان: اتیلن، پلی آمین، عمر پس از برداشت، گل فرازگرا
  • فاطمه خسروی، محمدعلی بهمنیار، وحید اکبرپور* صفحات 615-627
    اسیدهیومیک، ماده ای آلی است که طی فرآیندهای شیمیایی در خاک ساخته شده و منجر به بهبود رشد ریشه و قسمت هوایی گیاه، افزایش نفوذ عناصر در گیاه و بهبود نفوذپذیری آب می شود. عنصر روی در حفظ غشای سلول ریشه، فعال کردن آنزیم های آنتی اکسیدانی، در ساخت RNA و DNA تاثیر بسزایی دارد. در این تحقیق اثر اسید هیومیک و سولفات روی بر بعضی صفات مورفولوژیکی و فیتوشیمیایی گیاه مریم گلی مورد مطالعه قرار گرفته است.کاربرد توام این دو ماده با احتمال اینکه کارایی جذب افزایش یابد، صورت گرفت. این آزمایش به صورت فاکتوریل در قالب طرح کاملا تصادفی با دو فاکتور (فاکتور اول شامل غلظت های صفر، 5/1، 3 و 5/4 گرم در هزار اسید هیومیک و فاکتور دوم شامل غلظت های صفر، 3، 6 و 9 گرم در هزار سولفات روی)، با پنج تکرار در سال زراعی 1400 به صورت گلدانی و در هوای آزاد انجام شد. نتایج نشان داد که در اثر استفاده از اسیدهیومیک و سولفات روی، صفات مورفولوژیکی (ارتفاع بوته، تعداد شاخه فرعی، وزن تر و خشک اندام هوایی و قطر ساقه) بهبود یافته و بیشترین تاثیر در غلظت های 5/1 و 5/4 گرم در هزار اسید هیومیک و 3 و 6 گرم در هزار سولفات روی مشاهده شد. صفات فیتوشیمیایی نیز تحت تاثیر مثبت اسید هیومیک و سولفات روی قرار گرفتند به گونه ای که بیشترین اثر در رنگدانه های فتوسنتزی (کارتنویید، کلروفیل a، کلروفیل b و کلروفیل کل) ناشی از کاربرد غلظت های 5/4 گرم در هزار اسید هیومیک و 6 گرم در هزار سولفات روی بوده است. در تیمار بدون کاربرد سولفات روی، افزایش غلظت اسید هیومیک تا 3 گرم در هزار منجر شده تا بیشترین میزان آن (372/0 میلی گرم گالیک اسید بر گرم بافت تازه) مشاهده شود و بیشترین میزان فلاونویید (527/0 میلی گرم کویرسین بر گرم بافت تازه) در تیمار 5/4 گرم در هزار اسید هیومیک و غلظت صفر سولفات روی به دست آمد. ضمنا غلظت های 5/1 و 3 گرم در هزار اسید هیومیک باعث افزایش میزان اسانس از 15/1 درصد (گیاه شاهد) به 40/1 درصد شد. با توجه به نتایج حاصل شده، کاربرد اسید هیومیک به تنهایی و همراه با سولفات روی، بیشترین تاثیر را در اکثر صفات مورد بررسی داشته است.
    کلیدواژگان: اسانس، کلروفیل، فلاونوئید، کارتنوئید، مریم گلی
  • محمدجواد کرمی* صفحات 629-641
    انگور یکی از محصولات مهم و غالب باغی استان فارس و انگور ’رطبی‘ یکی از رقم های مهم انگور آبی در این استان است. دو روش هرس در انگور وجود دارد (هرس بلند و هرس کوتاه). تفاوت این دو روش هرس، در طول شاخه یک ساله نگهداری شده پس از انجام هرس است. در هرس بلند شاخه های با بیش از سه جوانه اما در هرس کوتاه شاخه های کوتاه دو تا سه جوانه ای نگهداری می شود. به منظور تعیین شدت هرس مناسب، واکنش این رقم به دو سطح شدت هرس (سبک با فرمول 20+40 و شدید با فرمول 20+20) و سه سطح تعداد جوانه در هر نقطه بارده (3، 6 و 9 جوانه ای) به مدت سه سال با  آزمایش فاکتوریل بر پایه طرح بلوک های کامل تصادفی در سه تکرار در شیراز بررسی گردید. نتایج نشان داد که اثر متقابل شدت هرس × طول شاخه بارده بر ویژگی های تعداد خوشه، وزن و تعداد حبه (p≤0.01) و بر ویژگی میانگین عملکرد و مقدار اسید میوه (p≤0.05) معنی دار بود. هم چنین اثر شدت هرس بر عملکرد، تعداد خوشه و وزن حبه و اثر تعداد جوانه در هر شاخه بارده بر عملکرد، تعداد خوشه و تعداد حبه معنی دار بود. بیشترین عملکرد در هرس سبک با شاخه های شش جوانه ای (9/34 تن در هکتار) و نه جوانه ای (1/33 تن در هکتار) بدست آمد. بیشترین تعداد خوشه (126 خوشه در هر کرت) در هرس سبک با شاخه نه جوانه ای، سنگین ترین حبه ها (7/5 گرم) در هرس شدید با شاخه شش جوانه ای و بیشترین تعداد حبه (126 عدد) در هرس شدید با شاخه سه جوانه ای مشاهده شد.
    کلیدواژگان: باردهی جوانه، تربیت تاک، هرس تعادلی، هرس سبک
  • فائزه سلیمانی، داود صمصام پور*، عبدالنبی باقری صفحات 643-653
    شوری یکی از مهم ترین عوامل محدودکننده رشد و تولید گیاهان محسوب می شود. کاربرد قارچ ها به عنوان یک کود بیولوژیک می تواند در تامین نیاز غذایی گیاهان و کاهش اثرات تنش های محیطی بر گیاهان مفید باشد. گیاهان دارویی دارای مخازن غنی از مواد موثره اساسی بسیاری از داروها می باشند. با توجه به اهمیت گیاهان دارویی به ویژه در صنعت داروسازی و کمبود آن ها در طبیعت، بررسی جنبه های مختلف زراعی این گیاهان از اهمیت بسزایی برخوردار است، با توجه به گسترش روز افزون خاک های شور، دستیابی به راه حل هایی که بتوان از تنش های محیطی زنده و غیرزنده جلوگیری و یا حداقل نسبت به کاهش آن ها اقدام نمود، ضروری به نظرمی رسد. یکی از این روش ها استفاده از روابط همزیستی قارچ های میکوریزا با گیاهان میزبان می باشد که به کاهش تنش ناشی از شوری منجر می شود. این مطالعه با هدف بررسی تاثیر قارچ آربوسکولار بر صفات رویشی و بیوشیمیایی گیاه علف لیمو در شرایط تنش شوری انجام گرفت. آزمایش به صورت فاکتوریل در قالب طرح کاملا تصادفی با دو عامل شوری (صفر، 5، 10 و 15 دسی زیمنس بر متر کلرید کلسیم) و قارچ (عدم تلقیح و تلقیح با قارچ) انجام شد. صفات ارتفاع بوته، طول ریشه، وزن تر و خشک برگ، محتوای نسبی آب، آنزیم های کاتالاز، پراکسیداز و پلی فنل اکسیداز اندازه گیری شد. نتایج نشان داد تحت شرایط تنش شوری 15 دسی زیمنس بر متر ارتفاع بوته، طول ریشه، وزن تر و خشک برگ، محتوای نسبی آب، آنزیم های کاتالاز، پراکسیداز و پلی فنل اکسیداز در گیاه علف لیمو تلقیح شده به قارچ آربوسکولار در مقایسه با شاهد (عدم تلقیح) افزایش معنی داری یافت. به طور کلی براساس نتایج این تحقیق، می توان نتیجه گرفت که با به کارگیری قارچ آربوسکولار می توان تحمل شوری گیاه علف لیمو را افزایش داد و اقدام به کشت آن در آب و خاک شور نمود.
    کلیدواژگان: پراکسیداز، کاتالاز، گیاهان دارویی، محتوای نسبی آب برگ
  • عبدالله احتشام نیا*، شیرین تقی پور، سارا سیاه منصور صفحات 655-668

    میوه انگور در مراحل پس از برداشت، به دلیل نرم شدن بافت، بسیار فسادپذیر می باشد که همین امر عمر پس از برداشت آن را کوتاه می کند. پوشش های خوراکی مانند کیتوسان و ژل آلویه ورا با ایجاد ساختار محافظت کننده در برابر آسیب های مکانیکی و تغییر اتمسفر درونی بافت، می توانند کیفیت میوه ها را افزایش دهند. به همین منظور، در این بررسی اثر محلول پاشی کیتوسان (در سه غلظت صفر، 2 و 3 درصد) قبل از برداشت و ژل آلویه ورا (صفر، 25 و 33 درصد) بعد از برداشت، بر کیفیت و ماندگاری میوه انگور رقم عسگری در پنج زمان مختلف (صفر، 7، 14، 21 و 28 روز پس از برداشت) در دمای 4 درجه سانتی گراد مورد ارزیابی قرار گرفت. نتایج تجزیه واریانس نشان دهنده معنی دار بودن اثر تیمار و زمان انبارمانی بر صفات مورد نظر در سطح یک درصد بود. میوه های تیمار شده با کیتوسان و ژل آلویه ورا دارای سفتی بافت، شاخص طعم، محتوای فنلی، فعالیت آنتی اکسیدانی و اسیدهای قابل تیتراسیون بالاتر و شاخص پوسیدگی و اسیدیته کم تر از شاهد بودند. بالاترین میزان محتوای فنل، آنتی اکسیدان، شاخص طعم و اسیدیته قابل تیتراسیون در هر پنج زمان اندازه گیری متعلق به تیمارهای کیتوسان 2 درصد به همراه هر دو غلظت ژل آلویه ورا (25 و 33 درصد) و کم ترین میزان مربوط به تیمار شاهد بود. در تیمار شاهد، در مدت زمان انبارمانی درصد شاخص پوسیدگی افزایش یافت و در انگورهای تیمار شده با کیتوسان و ژل آلویه ورا روند پوسیدگی کندتر بود و کم ترین میزان پوسیدگی در تیمار کیتوسان 2 درصد به همراه ژل آلویه ورا در روز 14ام مشاهده شد. به طور کلی، بر اساس نتایج به دست آمده مشاهده شد که کاربرد قبل از برداشت کیتوسان و پس از برداشت ژل آلویه ورا، عمر پس از برداشت انگور ’عسگری‘ را افزایش داد و موجب بهبود صفات کیفی در آن شد.

    کلیدواژگان: آنتی اکسیدان، پوشش طبیعی، شاخص پوسیدگی، محتوای فنول کل
  • پوران کریمی تزرجی، سمیه رستگار*، حامد حسن زاده خانکهدانی صفحات 669-683
    رقم ’پیارم‘ یکی از ارقام مهم تجاری و اقتصادی خرما در ایران محسوب می شود که بازارپسندی بالایی دارد. حفظ خصوصیات ظاهری و کیفی میوه طی مدت انبار اهمیت زیادی دارد. هدف از مطالعه حاضر، بررسی تاثیر پوشش خوراکی ال -آرژنین و ژل آلویه ورا بر حفظ خصوصیات ظاهری و کیفیت خرمای نیمه خشک ’پیارم‘ در طول انبارداری است. این آزمایش به صورت فاکتوریل در قالب طرح کاملا تصادفی اجرا شد. فاکتور اول شامل تیمارها (شاهد، غلظت های 1، 2 و 5 میلی مولار ال -آرژنین و غلظت های 25، 50 و 75 درصد ژل آلویه ورا) و فاکتور دوم شامل ماه های مختلف نگهداری (9 ماه) بودند. نمونه ها هر ماه مورد بررسی قرار گرفتند. صفات مختلف شامل درصد کاهش وزن، درصد کل مواد جامد محلول (TSS)، اسید قابل تیتر، فنول کل، فلاونویید، شاخص های رنگ شامل L*، a*، b* و ظرفیت آنتی اکسیدانی بررسی شد. براساس نتایج به دست آمده با گذشت زمان انبارمانی، شاخص رنگ L*، a* و b*، TSS و درصد کاهش وزن افزایش و صفات فنول، فلاونویید و آنتی اکسیدان کاهش معنی داری یافتند. تیمارها بر صفات شاخص رنگ a* و b*، درصد کاهش وزن، فنول، فلاونویید و آنتی اکسیدان اثرمعنی داری داشتند اما بر صفات TSS و اسید قابل تیتر اثر معنی داری نداشتند؛ به طوری که بیش ترین میزان شاخص رنگ a* و b* در تیمار ال -آرژنین 1 میلی مولار و فنول و فلاونویید در ال -آرژنین 2 میلی مولار و کم ترین میزان درصد کاهش وزن به ترتیب در تیمار ژل آلویه ورا 25 و 75 درصد مشاهده شد. بطور کلی تیمار ال-آرژنین 1 میلی مولار و ژل آلویه ورا با غلظت 75 درصد در حفظ کیفیت انبارمانی مناسب بودند.
    کلیدواژگان: انبارمانی، خرمای نیمه خشک، پوشش خوراکی، کیفیت
  • پرستو مولائی، طاهر برزگر*، محمد بابا اکبری ساری، فاطمه نکونام، زهرا قهرمانی صفحات 685-697
    این پژوهش به منظور یافتن کودهای جایگزین، سازگار با محیط زیست برای افزایش شاخص های کیفی و کمی و کاهش اثرات منفی کودهای شیمیایی در گیاه کاهو گلخانه ای رقم New Red Fire به صورت طرح کاملا تصادفی در سه تکرار به اجرا درآمد. تیمارهای مورد بررسی در این تحقیق 14 تیمار شامل شاهد (بدون مصرف کود و بدون تلقیح)، تلقیح با سه سطح از باکتری های انحلال کننده پتاسیم (باکتری های سودوموناس کورینسیس، سودوموناس ونکورنسیس و ترکیب دو سویه باکتری های سودوموناس کورینسیس و سودوموناس ونکورنسیس) + 100 درصد کود نیتروژن و فسفر، تلقیح با سه سطح از باکتری های انحلال کننده فسفر (باکتری های سودوموناس پوتیدا، پانتوآگلومرانس و ترکیب دو سویه باکتری های سودوموناس پوتیدا و پانتوآگلومرانس) + 100 درصد کود نیتروژن و پتاسیم، تلقیح با یک سطح از ترکیب باکتری های انحلال کننده پتاسیم و فسفر (باکتری های سودوموناس کورینسیس، سودوموناس ونکورنسیس، سودوموناس پوتیدا و پانتوآگلومرانس) + 100 درصد کود نیتروژن، تلقیح با یک سطح قارچ مایکوریزا از ترکیب سه گونه قارچ گلوموس موسه آ، گلوموس اتونیکاتوم و گلوموس اینترادیاسه + 100 درصد کود نیترون و پتاسیم، پنج سطح کود شیمیایی ترکیبی از عناصر نیتروژن، فسفر و پتاسیم به صورت N100P100K100، N100P100K0، N100P0K100، N100P25K100 و N100P100K25 با توجه به آزمون خاک بود. نتایج مقایسه میانگین داده ها نشان داد، با کاربرد ترکیب باکتری های انحلال کننده پتاسیم و فسفر + 100 درصد کود نیتروژن حداکثر وزن تازه بوته (افزایش 3/42 درصد)، قطر تاج بوته (افزایش 4/41 درصد) نسبت به گیاهان شاهد و حداقل تجمع نیترات برگ (14/21 میکروگرم در گرم وزن خشک) بعد از گیاهان شاهد نسبت به سایر تیمارها حاصل شد. کاربرد باکتری سودوموناس کورینسیس + 100 درصد کود نیتروژن و فسفر موجب حداکثر محتوای آنتوسیانین (افزایش 2/62 درصد) و مواد جامد محلول (افزایش 5/82 درصد) نسبت به گیاهان شاهد گردید. بیشترین میزان ویتامین ث (39/32 میلی گرم در 100 میلی لیتر) با اعمال کود شیمیایی N100P100K100 حاصل شد. با کاربرد ترکیب باکتری های انحلال کننده پتاسیم و فسفر + 100 درصد کود نیتروژن و باکتری سودوموناس ونکورنسیس + 100 درصد کود نیتروژن و فسفر، حداکثر اسید قابل تیتراسیون با افزایش 5/154 درصد نسبت به گیاهان شاهد بدست آمد. با توجه به نتایج آزمایش می توان بیان کرد، تلقیح بذر با ترکیب باکتری های انحلال کننده پتاسیم و فسفر + 100 درصد کود نیتروژن نقش موثری در بهبود خصوصیات رشدی و کیفیت گیاه کاهو دارد.
    کلیدواژگان: آنتوسیانین، باکتری های محرک رشد، تجمع نیترات، رشد رویشی
  • زهرا رودباری*، محمدرضا ایمانی، جواد سرحدی، سیب گل خوشکام، رضا یونس زاده صفحات 699-709

    به منظور اطلاع از میزان تنوع موجود در جمعیت فلفل (Capsicum ssp.) و توارث ویژگی های میوه جهت بهره برداری در برنامه های اصلاحی تولید بذر، نیاز به جمعیتی متنوع از نظر ویژگی های تاثیرگذار بر عملکرد میوه است. به همین منظور 42 ژنوتیپ از 7 گونه مختلف فلفل از بانک ژن موسسه تحقیقات ژنتیک گیاهی و گیاهان زراعی آلمان تهیه شد. ژنوتیپ ها در گلخانه هیدروپونیک در منطقه زرندیه استان مرکزی در قالب طرح کاملا تصادفی با 3 تکرار در سال 1400 کشت شده و از نظر صفات وزن میوه، طول و قطر میوه، شاخص شکل میوه (طول/قطر)، ضخامت گوشت میوه، تعداد میوه در بوته/چین و عملکرد میوه در سه چین مورد ارزیابی قرار گرفتند. همچنین وراثت پذیری عمومی صفات بر مبنای واریانس ژنتیکی و فنوتیپی محاسبه شد. براساس نتایج حاصل تفاوت معنی داری بین ژنوتیپ ها ازنظر صفات مورد ارزیابی مشاهده شد. صفات از وراثت پذیری عمومی بالایی برخوردار بودند و گزینش بر اساس این صفات می تواند به بهبود ویژگی های میوه در به نژادی فلفل کمک کند. ژنوتیپ های 318 (کاپی، زرد و شیرین)، 287 (کشیده، قرمز و تند)، 348 (گرد، قرمز و شیرین)، 272 (مثلثی، قرمز و شیرین)، 309 (بلوکی، قرمز و شیرین) و 296 (کشیده، قرمز و شیرین) به دلیل داشتن عملکرد بالا، میوه های با سایز مناسب و بازارپسند می توانند پس از ارزیابی سازگاری به عنوان رقم معرفی شوند. علاوه بر این، با توجه به تنوع قابل توجه در جمعیت مورد ارزیابی، می توان به تولید ارقام هیبرید با ویژگی های متمایز در برنامه های اصلاحی مبادرت نمود.

    کلیدواژگان: تنوع مورفولوژیکی، ژرم پلاسم فلفل، عملکرد میوه، وراثت پذیری عمومی
  • غفار کیانی*، ساسان گل چشمه صفحات 711-722
    پژوهش حاضر با هدف برآورد اجزای واریانس ژنتیکی و قابلیت های ترکیب پذیری عمومی و خصوصی برخی صفات کمی در ژنوتیپ های گوجه فرنگی با استفاده از تجزیه لاین×تستر انجام شد. لاین های SC و V به عنوان پایه مادری و تسترهای L، R و MZ به عنوان والدین پدری با یکدیگر تلاقی یافتند و در سال بعدی شش نتاج هیبرید به همراه والدین تلاقی ها در آزمایشی به صورت طرح بلوک های کامل تصادفی با سه تکرار در مزرعه دانشگاه علوم کشاورزی و منابع طبیعی ساری کشت شدند. صفات مورد ارزیابی شامل تعداد روز تا اولین گل دهی، زودرسی (تعداد روز از جوانه زنی تا اولین رنگ گیری میوه)، تعداد میوه در بوته، وزن میوه در بوته (گرم)، عملکرد میوه (گرم)، طول و عرض میوه (سانتیمتر) بودند. نتایج تجزیه واریانس لاین×تستر نشان داد میانگین مربعات والدین و تسترها برای تمامی صفات به جز طول و عرض میوه و میانگین مربعات تلاقی ها و لاین ها برای تمامی صفات به جز طول میوه معنی دار بودند. اثر لاین×تستر برای تمامی صفات به جز تعداد میوه در بوته و طول میوه معنی دار بود. لاین SC برای بهبود صفات تعداد روز تا اولین گلدهی، زودرسی، ارتفاع بوته، وزن میوه در بوته و عرض میوه و لاین V برای بهبود صفت تعداد میوه در بوته ترکیب شونده های عمومی مناسبی با تسترها بودند. تستر L برای بهبود تمام صفات به جز عملکرد و تستر MZ برای بهبود صفت ارتفاع بوته بهترین ترکیب شونده های عمومی با لاین های مادری بودند. در میان تلاقی ها، تلاقی SC×L برای بهبود صفات زودرسی و عرض میوه و تلاقی های SC×R و V×MZ به ترتیب برای بهبود صفات ارتفاع بوته و وزن میوه در بوته ترکیب شونده های خصوصی مطلوبی بودند. بررسی متوسط وضعیت ژنوتیپ ها نشان داد از میان ارقام والدینی، لاین SC و از میان تلاقی ها، ژنوتیپ L×SC کم ترین میانگین ها را برای صفات تعداد روز تا اولین گلدهی و زودرسی داشتند. همچنین لاین SC برای صفت تعداد میوه در بوته و تلاقی L×SC برای صفات وزن میوه در بوته، عملکرد و عرض میوه بیش ترین میانگین ها را به خود اختصاص دادند. در میان والدین، لاین های مادری SC و V به ترتیب برای صفات تعداد میوه در بوته و ارتفاع بوته، تستر L برای صفت عملکرد میوه و تستر MZ برای صفات وزن میوه در بوته و عرض میوه بیش ترین میانگین ها را ثبت کردند. در میان تلاقی ها، تلاقی L×SC برای صفات وزن میوه در بوته، عملکرد و عرض میوه، تلاقی L×V برای صفت تعداد میوه در بوته و تلاقی V×MZ برای صفت ارتفاع بوته بیش ترین میانگین ها را به خود اختصاص دادند. به طور کلی، بررسی متوسط وضعیت ژنوتیپ ها نشان داد هیبرید L×SC برای صفات تعداد روز تا اولین گلدهی، زودرسی، وزن میوه در بوته، عملکرد میوه و طول و عرض میوه برتر از والدین خود می باشد. برآورد واریانس های افزایشی و غیرافزایشی نشان داد در صفات ارتفاع بوته و وزن میوه در بوته، واریانس افزایشی نقش اصلی داشته و گزینش از میان نسل های درحال تفکیک روش اصلاحی مناسبی برای صفات مذکور است. درحالی که برای صفات تعداد روز تا اولین گلدهی، زودرسی و عملکرد سهم واریانس غیرافزایشی بیش تر از واریانس افزایشی بود، لذا برای بهبود صفات مذکور تولید هیبرید توصیه می شود.
    کلیدواژگان: تستر، گوجه فرنگی، لاین، واریانس افزایشی، واریانس غیرافزایشی
  • سعید شیوخی سوغانلو*، محمدعلی غلامی، یوسف قاسمی صفحات 723-739
    به منظور ارزیابی تاثیر تنش آبی و پساب شهری بر غلظت فلزات سنگین، عملکرد و برخی ویژگی های گیاه ریحان، آزمایشی در قالب فاکتوریل بر پایه طرح کاملا تصادفی با تیمارهای آزمایشی شامل؛ عامل اول منبع آبیاری (I) در دو سطح)پساب و آب چاه) و عامل دوم تنش آبی (S) در شش سطح کم ترین تنش (S1 and S2)، تنش متوسط (S3 and S4) و تنش شدید (S5 and S6) در سه تکرار در مزرعه تحقیقاتی دانشگاه علوم کشاورزی و منابع طبیعی ساری اجرا شد. بر پایه یافته ها، آبیاری با پساب باعث افزایش ارتفاع گیاه، وزن تر، وزن خشک، قطر ساقه، میزان کلروفیل a، کلروفیل b، کلروفیل کل و کارتنویید در مقایسه با آبیاری با آب چاه شد. در حالی که تاثیر چندانی بر میزان فلاونویید، فنل و فعالیت آنتی اکسیدانی نداشت. در شرایط ایجاد کم ترین تنش بویژه سطح S1، میزان کلروفیل a، کلروفیل b، کلروفیل کل، کارتنویید، فلاونویید، فنل و فعالیت آنتی اکسیدانی برگ ریحان به ترتیب با کاهش 3/63، 8/32، 7/40، 8/45، 3/46، 5/55 و 8/9 درصدی نسبت به شرایط تنش شدید S6، روبه رو شد. این در حالی بود که بیشترین میزان ارتفاع گیاه، وزن تر، وزن خشک و قطر ساقه در سطح کم ترین تنش S1، به ترتیب با 6/48 سانتی متر، 5/11 و 51/3 گرم در تک بوته و 4/3 میلی متر مشاهده شد. همچنین نتایج نشان داد که غلظت فلزات سرب و کادمیوم تحت تاثیر اثر متقابل منبع آبیاری و تنش آبی قرار گرفت. به طوری که بیشترین غلظت سرب و کادمیوم در تیمار آبیاری با پساب و سطوح تنش S4 و S5 به ترتیب با 42/13، 40/13، 50/10 و 53/10 میلی گرم بر کیلوگرم مشاهده شد. این در حالی بود که غلظت فلزات کروم و نیکل دستخوش تغییرات چندانی نشد. بر پایه یافته ها، می توان سطوح تنش S4 و S5 را در بهره وری آب مناسب دانست و استفاده از پساب شهری در آبیاری گیاه ریحان را با در نظر گرفتن استانداردهای مجاز موجود، توصیه کرد.
    کلیدواژگان: ارتفاع گیاه، تنش شدید، فعالیت آنتی اکسیدانی، کادمیوم، کلروفیل کل
  • میترا جباری*، رضا درویش زاده صفحات 741-753
    با توجه به اهمیت اقتصادی عملکرد میوه و لزوم انتخاب گیاهان با بهره وری بالا در برنامه های به نژادی، پژوهش حاضر به منظور تعیین ویژگی های مورفولوژیک تاثیرگذار در عملکرد میوه و ارزیابی اثرات مستقیم و غیرمستقیم آن ها در 30 توده ی فلفل ایرانی در قالب طرح کاملا تصادفی با پنج تکرار به صورت گلدانی در محل گلخانه تحقیقاتی دانشگاه ارومیه طی سال 1396-1395 اجرا گردید. نتایج حاصل از همبستگی های فنوتیپی نشان داد که عملکرد میوه دارای همبستگی مثبت و معنی دار با صفات قطر میوه، دور میوه، وزن گوشت و وزن تک میوه بود، اما صفات تعداد میوه و طول میوه همبستگی فنوتیپی منفی و معنی داری با عملکرد میوه داشتند. در بررسی همبستگی ژنتیکی، رابطه مثبت، قوی و معنی داری بین عملکرد با وزن گوشت میوه (907/0)، دور میوه (891/0)، قطر میوه (697/0)، وزن تک میوه (646/0) و دور بوته (381/0) مشاهده گردید. بر اساس نتایج رگرسیون گام به گام برای عملکرد میوه هفت صفت وزن گوشت، دور بوته، قطر میوه، تعداد میوه، ارتفاع بوته، وزن کل بذر و تعداد شاخه به عنوان موثرترین صفات بر عملکرد میوه وارد مدل شدند که در مجموع 6/84 درصد از تغییرات کل عملکرد میوه را توجیه نمودند. بر اساس نتایج تجزیه مسیر صفات قطر میوه (709/0) و وزن گوشت (289/0) به ترتیب بیشترین اثر مثبت و مستقیم را بر عملکرد میوه نشان دادند. قطر میوه دارای همبستگی ژنتیکی مثبت، قوی و معنی داری (697/0) با عملکرد میوه بود، همچنین اثر مستقیم مثبت (709/0) بر عملکرد میوه نشان داد که به طور تقریبی می توان این دو ضریب را با هم برابر درنظر گرفت. لذا انتخاب مستقیم از طریق صفت قطر میوه می تواند در بهبود عملکرد میوه در توده های فلفل مفید باشد.
    کلیدواژگان: تجزیه ضرایب مسیر، رگرسیون گام به گام، عملکرد میوه، فلفل
  • ابراهیم گنجی مقدم*، احمد مصطفی پور، محبوبه زمانی پور صفحات 755-768

    سرشاخه کاری یک رویکرد جدید برای افزایش بهره وری باغات مسن، جوان سازی و تغییر رقم آن هاست. با این هدف، تحقیقی در استان خراسان رضوی طی سه سال انجام شد. این پروژه در سه منطقه چناران، نیشابور و طرقبه شاندیز و شامل سه آزمایش مستقل بود. در هر سه آزمایش، پس از رشد پیوندک، میزان سازگاری و درصد گیرایی، رشد رویشی پیوندک، شروع باردهی، عملکرد، و ارزیابی اقتصادی بررسی شد. در آزمایش اول، جهت تعیین نوع پیوند و رقم بر موفقیت و درصد گیرایی پیوند، از آزمایش فاکتوریل در قالب طرح بلوک کامل تصادفی در سه تکرار و هر تکرار شامل 3 پیوند استفاده شد. فاکتور اول نوع پیوند در دو سطح (اسکنه و تاجی) و فاکتور دوم رقم در سه سطح (’استلا‘، ’سویت هارت‘ و ’سان برست‘) بود. نتایج نشان دادند که رقم ’سان برست‘ با 8/86 درصد گیرایی از بیشترین درصد و رقم ’استلا‘ با 3/64 درصد از کمترین درصد گیرایی پیوند برخوردار بودند. هم چنین، پیوند اسکنه نسبت به پیوند تاجی از درصد گیرایی بالاتری برخوردار بود. بنابراین، پیوند اسکنه با 65 درصد نسبت به پیوند تاجی با 13 درصد از موفقیت بیشتری برخوردار بود. در آزمایش دوم، ارزیابی اثر سن درخت و رقم بر درصد گیرایی پیوند انجام گرفت که جهت اجرای این مرحله از آزمایش فاکتوریل دو عامله، فاکتور اول سن درخت در دو سطح (10 و بالاتر از 20 سال) و فاکتور دوم نوع پیوند (اسکنه و تاجی) استفاده شد. نتایج نشان دادند که با افزایش سن درخت، درصد گیرایی پیوند بشدت کاهش یافت. درصد گیرایی پیوند در درختان جوان حدود 68 درصد و در درختان با سن بالای 25 سال 8 درصد بود. بر این اساس، انجام پیوند سرشاخه کاری در درختان مسن توصیه نمی گردد. در آزمایش سوم، اثر نگهداری شاخه آبکش و رقم بر درصد موفقیت پیوند بررسی شد که این مرحله از آزمایش فاکتوریل دو عامله که عامل اول حضور یا عدم حضور شاخه پرستار و عامل دوم رقم در سه سطح (’استلا‘، ’سان برست‘، ’سویت هارت‘) بود، استفاده شد. ارزیابی اولیه نشان داد که نگهداشت شاخه پرستار در سرشاخه کاری گیلاس تاثیر معنی داری در گیرایی پیوند ندارد. درصد گیرایی پیوند در درختان بدون شاخه پرستار حدود 78 درصد و در درختان با شاخه پرستار حدود 63 درصد بود. بر این اساس، نگهداری شاخه پرستار در سرشاخه کاری گیلاس توصیه نمی گردد. به طور کلی، سرشاخه کاری در درختان گیلاس به منظور تغییر رقم باغ و بهره وری بهتر باغ توصیه می گردد.

    کلیدواژگان: اسکنه، تاجی، جوانسازی، تک دانه، گیرایی پیوند
  • محمد علی احمدی، سعید دقیقی، فرهاد آذرمی آتاجان*، حسن بیات صفحات 769-786
    به منظور بررسی اثر محلول پاشی کلرید کلسیم و سولفات پتاسیم بر خصوصیات فیزیکی و بیوشیمیایی میوه عناب دو آزمایش جداگانه (در دو منطقه سیوجان و ماژان) به صورت فاکتوریل در قالب طرح بلوک های کامل تصادفی در سه تکرار در شهرستان خوسف استان خراسان جنوبی در سال 1401 انجام شد. فاکتورهای مورد بررسی شامل کلرید کلسیم (صفر، 5/0 و 1 درصد) و سولفات پتاسیم (صفر، 1/0 و 3/0 درصد) بودند. نتایج تجزیه واریانس نشان داد که محلول پاشی کلرید کلسیم و سولفات پتاسیم در باغ سیوجان و ماژان بر خصوصیات فیزیکی و بیوشیمیایی میوه عناب معنی دار بود. در باغ سیوجان بیشترین وزن تر (07/4 گرم) و خشک میوه (89/1 گرم)، طول (11/29 میلی متر) و قطر (52/21 میلی متر) میوه و سفتی بافت (81/18 نیوتون بر سانتی متر مربع) در سطح 5/0 درصد کلرید کلسیم به دست آمد. همچنین تیمار محلول پاشی 5/0 درصد کلرید کلسیم در باغ سیوجان دارای بالاترین میزان کارتنویید (473/0 میلی گرم در 100 گرم وزن تر) و فنول کل (66/10 میلی گرم اسیدگالیک در 100 گرم وزن تر) میوه بود. در باغ سیوجان بیشترین میزان کلسیم و پتاسیم میوه در سطح 1 درصد کلرید کلسیم به دست آمد. در باغ ماژان بیشترین وزن تر (9/3 گرم) و خشک میوه (37/1 گرم)، طول و قطر میوه و سفتی بافت از محلول پاشی 5/0 درصد کلرید کلسیم به دست آمد. بالاترین میزان کارتنویید (443/0 میلی گرم در 100 گرم وزن تر) و فنول میوه (53/9 میلی گرم اسید گالیک در 100 گرم وزن تر) در باغ ماژان در سطح 5/0 درصد کلرید کلسیم به دست آمد. بیشترین محتوی کلسیم و پتاسیم میوه باغ ماژان در تیمار 1 درصد کلرید کلسیم حاصل شد. در باغ سیوجان بالاترین وزن تر (63/3 گرم) و خشک میوه (89/1 گرم)، طول (41/28 میلی متر) و قطر (91/20 میلی متر) میوه و سفتی بافت (61/18 نیوتون بر سانتی متر مربع) در سطح 3/0 درصد سولفات پتاسیم به دست آمد. بالاترین میزان شاخص های بیوشیمیایی میوه عناب در باغ سیوجان از سطح 3/0 درصد سولفات پتاسیم به دست آمد. اثر متقابل محلول پاشی کلرید کلسیم و سولفات پتاسیم بر وزن تر  و خشک میوه، طول میوه و کارتنویید میوه باغ سیوجان معنی دار بود. در باغ ماژان نیز صفات وزن تر و خشک میوه، میزان کارتنویید و فنول کل میوه تحت تاثیر اثر متقابل تیمارهای آزمایشی قرار گرفت و بیشترین میزان این صفات در سطح 5/0 درصد کلرید کلسیم و 3/0 درصد سولفات پتاسیم به دست آمد. بر اساس نتایج این تحقیق، محلول پاشی 5/0 درصد کلرید کلسیم و 3/0 درصد سولفات پتاسیم به عنوان موثرترین تیمارها در این آزمایش، می تواند نقش موثری در افزایش کمیت و کیفیت میوه عناب داشته باشند.
    کلیدواژگان: تغذیه برگی، عملکرد، عناصر غذایی، کیفیت
  • رضا شفیعی، محمدرضا عبداللهی*، اصغر میرزائی اصل، سید سعید موسوی، حسن ساریخانی صفحات 787-799
    تولید گیاهان هاپلویید، یک موضوع با اهمیت در برنامه های به نژادی جهت دستیابی سریع به لاین های خالص به منظور تولید بذر هیبرید می باشد. در پژوهش حاضر، پاسخ بساک های دو گونه گل جعفری (Tagetes spp.) به القاء آندروژنز در کشت بساک در قالب دو آزمایش مجزا بررسی شد. در آزمایش اول، اثر متقابل ژنوتیپ (T1، T2، T3، T4 و T5) و اندازه غنچه (5-3، 10-5 و 15-10 میلی متر) و در آزمایش دوم، اثر متقابل روش اعمال تیمار مانیتول (اضافه کردن غلظت های مختلف مانیتول به محیط کشت اصلی و پیش تیمار بساک ها با محیط کشت مایع حاوی غلظت های مختلف مانیتول بمدت 24 ساعت) و غلظت های مختلف مانیتول (صفر، 1/0، 2/0، 3/0، 4/0 و 5/0 مولار) بر القاء آندروژنز در کشت بساک گل جعفری بررسی گردید. نتایج نشان داد که مرحله میکروسپوری مناسب جهت کشت بساک گیاه گل جعفری مرحله تک هسته ای میانی تا دوهسته ای ابتدایی می باشد و مراحل میکروسپوری مذکور در غنچه هایی با اندازه 10-5 میلی متر مشاهده شد. همچنین ژنوتیپ های T3 و T4 بیشترین پاسخ به آندروژنز را نشان دادند. در آزمایش دوم بیشترین درصد کالوس زایی از تیمار محیط کشت جامد حاوی 2/0 مولار مانیتول با 55/95 درصد کالوس زایی بدست آمد. پیش تیمار با محیط کشت مایع حاوی 5/0 مولار مانیتول در روش دوم از نظر صفت تعداد نوساقه به ازای هر بساک و تعداد نوساقه به ازای هر کالوس برتری نشان داد. پیش تیمار با محیط کشت مایع حاوی 2/0 مولار مانیتول با باززایی گیاه کامل 11/31 درصد از نظر این صفت بعنوان برترین تیمار شناخته شد. نتایج شمارش کروموزومی نشان داد که از 5 گیاه بررسی شده 3 گیاه دی هاپلویید بودند و 24 کروموزوم در سلول های نوک ریشه شان داشتند در حالی که گیاهان مادری بررسی شده تتراپلویید بودند و 48 کروموزوم در سلول های نوک ریشه شان نشان دادند.
    کلیدواژگان: آندروژنز، هاپلوئید، کشت بساک، گل جعفری، مانیتول
  • مجید راحمی*، محمد حسن نظران، سمیرا ابولقاسمی، سحر صداقت، مریم زارع صفحات 801-819
    استفاده از تیمارهای گرمایی به همراه کلسیم به عنوان روش های فیزیکی مطمین، و جایگزین به منظور کاهش آسیب سرمازدگی رو به افزایش است. در این پژوهش اثر تیمارهای پس از برداشت کلرید کلسیم و نانوکلات کلسیم بر سرمازدگی و ویژگی های فیزیولوژیکی پرتقال رقم ’محلی داراب‘، فارس، در دمای 5/2±0 درجه سلسیوس و رطوبت نسبی 85 درصد به مدت 60 تا 120 روز بررسی شد. آزمایش به صورت فاکتوریل در قالب طرح کاملا تصادفی که فاکتور اول شامل کلرید کلسیم و نانوکلات کلسیم با غلظت های صفر، 3 و 6 درصد در آب سرد 20 درجه سلسیوس (شاهد) به مدت 25 دقیقه و آب گرم 45 درجه سلسیوس به مدت 15 دقیقه و فاکتور دوم زمان انبارمانی 60 روز و 120 روز بود. پس از انبارمانی ویژگی های کمی و کیفی بررسی شدند. تیمارهای کلرید کلسیم و نانوکلات کلسیم به همراه آب گرم در مقایسه با شاهد سبب کمتر شدن کاهش از دست دادن وزن، مواد جامد محلول، اسیدیته، آسکوربیک اسید، نشت یونی و مالون دی آلدهید و فعالیت آنزیم های آنتی اکسیدانی کاتالاز و پراکسیداز گردید. نتایج نشان داد که ترکیبات کلسیم همراه با آب گرم سبب حفظ میزان کلسیم، افزایش روشنایی و مقدار کروما و زاویه هیو در پوست میوه شدند. بین نانو کلات کلسیم و کلرید کلسیم در غنی سازی کلسیم در گوشت و پوست میوه تفاوت معنی داری دیده شد به طوری که نانو کلات کلسیم در مقایسه با کلرید کلسیم در پوست میوه تا 44 درصد و در گوشت میوه تا 41 درصد موجب حفظ بیشتر میزان کلسیم شد. نانو کلات کلسیم 3 و 6 درصد در دو ماه انبارداری نسبت به کلرید کلسیم به ترتیب 159 و 400 درصد ثبات بیشتری در وزن میوه ایجاد کرد. میزان آسکوربیک اسید در میوه های تیمار شده با نانو کلات کلسیم 6 درصد بعد از دو و چهار ماه انبارداری تا 73 درصد بیشتر از کلرید کلسیم مشاهده شد. نانو کلات کلسیم 3 درصد نسبت به کلرید کلسیم در طی دو ماه انبارداری تا 6/39 درصد از نشت یون پتاسیم جلوگیری کرد. مشخص گردید غوطه وری میوه ها در تیمارهای نانو کلات کلسیم 3 یا 6 درصد به همراه تیمار دمایی آب گرم یا سرد، می تواند در بهبود و حفظ کیفیت میوه های پرتقال محلی در طول انبارمانی سرد تاثیر بسزایی داشته باشد.
    کلیدواژگان: آنزیم های آنتی اکسیدانی، شاخص سرمازدگی، کاهش وزن، نشت یونی
  • مهدی مرادی، بهرام عابدی*، حسین آرویی، ساسان علی نیائی فرد، کمال قاسمی بزدی صفحات 821-841
    نور منبع انرژی برای فتوسنتز و عاملی تحریک کننده برای رشد و نمو گیاه می باشد. جنبه های مختلف نور شامل شدت، کیفیت و دوره تابش نور، رشد و نمو گیاهان و واکنش مربوط به روابط گازی آنها را تحت تاثیر قرار می دهد. در مطالعه حاضر به منظور بررسی عملکرد فتوسنتزی، شاخص های رشدی و میزان اسانس گیاه مریم گلی در واکنش به طیف های مختلف نوری از شش تیمار نوری شامل نور سفید، قرمز، آبی و سه نور ترکیبی (قرمز30:آبی70، قرمز50:آبی50 و قرمز70:آبی30) ساطع شده از لامپ های LED با شدت نوری 10±250 میکرومول فوتون بر متر مربع در ثانیه در قالب طرح کاملا تصادفی با سه تکرار استفاده شد. نتایج به دست آمده حاکی از تاثیر معنی دار طیف های مختلف نوری بر صفات مورد بررسی در سطح پنج و یک درصد بود. درصد بیشتر نور قرمز به ویژه نور ترکیبی قرمز70:آبی30 باعث بهبود شاخص های رشدی گیاه گردید. ارزیابی های فتوسنتزی نشان داد بیشترین شدت فلورسانس در تمامی مراحل تست OJIP متعلق به نور قرمز و کمترین مقدار فلورسانس در نورهای ترکیبی قرمز50:آبی50 و قرمز70:آبی30 بود. کارایی سیستم تجزیه آب فتوسیستم II (Fv/F0) و حداکثر کارایی فتوسیستم II (Fv/Fm) در تیمار نور قرمز حداقل بودند. نور قرمز باعث کاهش شاخص کارایی سیستم به ازای نور جذب شده (PIABS) و افزایش عملکرد کوانتومی اتلاف انرژی (ФD0)، میزان جذب نور به ازای هر مرکز واکنش (ABS/RC) و میزان گرفتن الکترون (TR0/RC) شد. بیشترین و کمترین گشودگی دهانه ی روزنه به ترتیب در نور آبی و قرمز به دست آمد. نتایج نشان داد با افزایش نسبت نور قرمز، ابعاد و منفذ روزنه کوچکتر و موجب کاهش نرخ تعرق و اتلاف آب برگ و بهبود قابلیت حفظ آب برگ شد و بالعکس گیاهانی که تحت نور آبی پرورش یافته اند، دارای روزنه های بزرگتر با شکاف روزنه ای عریض تر بودند. طول و عرض روزنه در محیط نوری آبی نسبت به نور قرمز به ترتیب 52/20 و 47/10 درصد افزایش نشان داد. به نظر می رسد به وجود آمدن این خصوصیات روزنه ای در شرایط با نسبت زیاد نور آبی باعث افزایش هدایت روزنه ای و افزایش نرخ تعرق و کاهش محتوی نسبی آب برگ در گیاهان پرورش یافته در نور آبی گردیده است. بیشترین مقدار اسانس (75/1 درصد حجمی وزنی) در محیط نوری قرمز70:آبی30 مشاهده شد و نسبت به نور سفید افزایش 33/32 درصدی را نشان داد. نتایج این پژوهش نشان داد، برای تولید تجاری گیاه مریم گلی در محیط های کنترل شده با سیستم های نوردهی مصنوعی برای بهینه شدن تبادلات گازی گیاه (فتوسنتز و تعرق)، بهبود خصوصیات رشدی و فیتوشیمیایی، نور ترکیبی قرمز70:آبی30 مناسب می باشد.
    کلیدواژگان: اسانس، رشد، فتوسنتز، کیفیت نور، مریم گلی، OJIP
  • اسما مشت زن، علیرضا یاوری*، مژگان سلیمانی زاده صفحات 843-856
    مریم گلی دارویی با نام علمیSalvia officinalis L.  گیاهی علفی و چندساله و متعلق به تیره نعناع (Lamiaceae) می باشد. این گیاه به دلیل دارا بودن اسانس، یک گیاه مهم اقتصادی در نظر گرفته می شود. امروزه اسانس این گونه، در صنایع داروسازی، عطرسازی و فرآورده های آرایشی- بهداشتی کاربردهای مهمی دارد. خشک کردن فرآیند پس از برداشتی است که در کشت و کارهای با مقیاس صنعتی، به دلیل حجم بالای گیاه تازه تولیدی نیازمند فضای مکانی بزرگ و هزینه های بالا، چه به لحاظ سخت افزاری و چه به لحاظ نیروی انسانی، می باشد تا پس از آن جهت استخراج اسانس به کارخانه انتقال یابد. بنابراین، این پژوهش با هدف بررسی عملکرد کمی و کیفی اسانس گیاه مریم گلی دارویی در نوبت های برداشت مختلف در طول فصل رشد از گیاه تازه و خشک در شرایط آب و هوایی شهرستان سعادت شهر استان فارس انجام شد. بدین منظور، آزمایشی به صورت فاکتوریل در قالب طرح بلوک های کامل تصادفی با 3 تکرار اجرا گردید. عامل اول شامل سه نوبت برداشت و عامل دوم نوع ماده گیاهی (تازه و خشک) بود. نتایج نشان داد که اثر متقابل نوبت برداشت × نوع ماده گیاهی بر بازده اسانس گیاه مریم گلی در سطح احتمال 1 درصد معنی دار شد. مقایسه میانگین اثرات متقابل نوبت برداشت و نوع ماده گیاه نشان داد که بالاترین بازده اسانس گیاه مریم گلی مربوط به نوبت برداشت دوم و ماده گیاهی خشک که معادل 18/1 درصد (وزنی/وزنی) بود، به دست آمد که نسبت به دیگر تیمارها، اختلاف معنی داری را نشان داد. بررسی ترکیب های تشکیل دهنده اسانس این گونه مشخص کرد که در مجموع 34 ترکیب در اسانس سرشاخه های گل دار گیاه مریم گلی در نمونه های جمع آوری شده شناسایی شد. هیدروکربن های منوترپنی گروه اصلی سازنده ترکیبات در همه نمونه های گیاهی مورد مطالعه بود. ترکیب های شاخص تشکیل دهنده اسانس عبارت از 1، 8- سینیول، آلفا- توجون، بتا- پینن و کامفور بودند. نتایج نشان داد که اثر متقابل نوبت برداشت × نوع ماده گیاهی بر 1، 8- سینیول معنی دار نمی باشد، اما در ترکیبات آلفا- توجون و کامفور در سطح احتمال 1 درصد و در بتا- پینن در سطح احتمال 5 درصد معنی دار گردید. در مجموع یافته های حاصل از این پژوهش نشان داد که بیشترین عملکرد کمی اسانس در شرایط آب و هوایی سعادت شهر استان فارس، از ماده گیاهی خشک و در نوبت برداشت دوم حاصل شد. این در حالی است که بیشترین میزان ترکیب های هیدروکربن، به عنوان شاخص کیفی اسانس مریم گلی، در نوبت برداشت سوم در هر دو ماده گیاهی تازه و خشک مشاهده شد.
    کلیدواژگان: اسانس، خشک کردن، عملکرد، هیدروکربن های منوترپنی
  • حمید سلیمانی، میترا اعلائی*، مسعود ارغوانی صفحات 857-871
    گل رز از جمله گل های مهم شاخه بریده می باشد که به دلیل عدم شرایط مناسب نگه داری در زمان پس از برداشت راندمان تولید این گل به شدت کاهش می یابد. در این تحقیق، اثر کاربرد نانو ذرات کلسیم قبل از برداشت همراه با کاربرد نانو ذرات نقره پس از برداشت بر ویژگی های مورفوفیزیولوژیکی گل های شاخه بریده رز رقم ‘Classic Cezanne’ مورد بررسی قرار گرفت. پژوهش حاضر در سال 1400 در گلخانه تجاری تولید گل رز در شهرستان نظرآباد استان البرز و موسسه تحقیقات فنی و مهندسی کشاورزی انجام شد. نانو ذرات کلسیم با غلظت های (صفر، 5 و 10 میلی گرم در لیتر) هر ده روز (از دو ماه قبل از برداشت) روی بوته های گل رز اسپری شدند. پس از برداشت گل ها و انتقال آنها به آزمایشگاه، نانو ذرات نقره در غلظت های صفر، 5 و 10 میلی گرم در لیتر به آب مقطر حاوی ساکارز سه درصد گل اضافه شد. پس از برداشت گل ها در بازه زمانی صفر، 4، 8 و 12 روز صفات عمرگلجای، قطر گل، وزن تر نسبی شاخه گل ها، میزان نسبی محلول جذب شده، پروتیین کل، مالون دی آلدیید و آنزیم سوپراکسید دیسموتاز مورد ارزیابی قرار گرفتند. عمرگلجایی تحت تاثیر تیمار با نانو ذرات کلسیم و نانو ذرات نقره (10 میلی گرم بر لیتر) نسبت به شاهد 4 روز افزایش یافت. براساس نتایج، در روز دوازدهم اندازه گیری تیمار نانو ذرات کلسیم و نقره (غلظت 10 میلی گرم در لیتر) در مقایسه با شاهد (صفر میلی گرم در لیتر) باعث افزایش (14 درصد) قطر گل، وزن تر (12 درصد)، مقدار نسبی محلول جذب شده (46 درصد)، سوپراکسید دیسموتاز (21 درصد) و همچنین کاهش مالون دی آلدیید (37 دردصد) گردید. تیمارها باعث کاهش مقدار مالون دی آلدیید و همچنین افزایش میزان نسبی محلول جذب شده، پروتیین کل و آنزیم سوپراکسید دیسموتاز شدند. از طرفی نانو ذرات مورد استفاده در این آزمایش باعث فعال شدن سیستم آنتی اکسیدانی آنزیمی در تیمارها شد. تیمار نانو ذرات کلسیم قبل از برداشت و نانو ذرات نقره پس از برداشت با فعال کردن سیستم آنزیم آنتی اکسیدانی و حفظ توانایی جذب محلول باعث افزایش عمر گل های شاخه بریده رز شد. به طور کلی تیمار با نانو ذرات کلسیم با غلظت 10 میلی گرم در لیتر قبل از برداشت و تیمار با نانو ذرات نقره با غلظت 10 میلی گرم در لیتر پس از برداشت، در روز دوازدهم موثرترین تیمار در اکثر صفات بودند. با توجه به نتایج به دست آمده از تحقیق حاضر، می توان نتیجه گرفت که استفاده از نانو ذرات کلسیم با نانو ذرات نقره در مقایسه با تیمار شاهد بر اکثر صفات تاثیر بسزایی داشته است. استفاده از نانو ذرات کلسیم با نانو ذرات نقره با افزایش جذب آب و در نتیجه افزایش وزن تازه نسبی، شرایط عمرگلجای را بهبود می بخشد.
    کلیدواژگان: آنزیم های آنتی اکسیدانی، پس از برداشت، عمرگلجایی
  • اسماء نجارزاده، حسن فرحبخش*، مهدی ناصر علوی، روح الله مرادی، مهدی نقی زاده صفحات 873-886
    در سال های اخیر استفاده از بیوچار توجه زیادی را به عنوان یک راهبرد قابل قبول برای افزایش بهره وری گیاهان به خود جلب کرده است. در این مطالعه، تاثیر سه نوع بیوچار کود گاوی (75/0، 25/1، 5/2 و 5 درصد وزنی)، پوست سبز گردو (75/0، 25/1، 5/2 و 5 درصد وزنی) و تفاله گل محمدی (75/0، 25/1، 5/2 و 5 درصد وزنی) به همراه عدم کاربرد بیوچار در قالب طرح کاملا تصادفی با 3 تکرار بر خصوصیات بیوشیمیایی، فیزیولوژیکی و عملکرد گیاه گاوزبان اروپایی در گلخانه تحقیقاتی دانشگاه شهید باهنر کرمان در سال 1400 مورد بررسی قرار گرفت. نتایج نشان داد که بیوچار تفاله گل محمدی و پوست سبز گردو به ترتیب بیشترین و کمترین میزان کربن آلی پایدار را دارا بودند. تیمارهای مورد بررسی بطور معنی داری (p ≤0.01) صفات بیوشیمیایی، فیزیولوژیکی و عملکرد گاوزبان اروپایی را تحت تاثیر قرار دادند. استفاده از بیوچار تفاله گل محمدی و کود گاوی موجب افزایش معنی دار (p ≤0.01) عملکرد و رنگیزه های فتوسنتزی نسبت به شاهد شدند. استفاده از بیوچار گل محمدی به میزان 5/2 درصد وزنی باعث افزایش 119 درصدی وزن اندام هوایی نسبت به تیمار عدم کاربرد بیوچار شد. تیمار 25/1 درصد وزنی از کود گاوی نیز 7/29 درصد وزن تر اندام هوایی را افزایش داد. بیوچار گردو نه تنها تاثیر مثبتی بر رشد و عملکرد گیاه نداشت، بلکه باعث کاهش رشد و عدم تولید گل در گاوزبان اروپایی شد. فعالیت آنزیم کاتالاز در تیمار 5/2 درصد بیوچار تفاله گل محمدی (47/0 واحد بر گرم پروتیین) و 25/1 درصد بیوچار کود گاوی (64/ 0 واحد بر گرم پروتیین) حداکثر بود، میزان پرولین نیز در تیمار75/0 درصد بیوچار پوست گردو (6/10 میکرومول بر گرم وزن تر) به طور معنی داری افزایش یافت. بطور کلی، نتایج نشان داد از بین بیوچارهای مورد بررسی، بیوچار تفاله گل محمدی با نسبت 5/2 درصد وزنی مناسب ترین تیمار از نظر بهبود خصوصیات فیزیولوژیکی و رشدی گاوزبان اروپایی بود.
    کلیدواژگان: پرولین، کاتالاز، گیاه دارویی، هدایت الکتریکی
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  • N. Zomorrodi, M. Shoor *, A. Tehrani Far, M. Goldani Pages 589-597
    Introduction

     Since the beginning of the industrial revolution, the indiscriminate consumption of fossil fuels has led to a dramatic increase in the concentration of atmospheric carbon dioxide. Over the past few decades, the concentration of atmospheric carbon dioxide has increased from 280 to 370 ppm and is expected to increase by about 1.8 ppm each year. Carbon dioxide, such as light, appropriate temperature, water and nutrients, is one of the essential nutrients needed by plants, which is currently less than required by plants. In general, plants need to absorb water from the soil and carbon dioxide from the atmosphere and use it in photosynthesis, which This is done by absorbing carbon dioxide through the through the pores. In general, stomatal properties have a major influence on the response of plants to carbon dioxide treatment. Leaf  morphology, including stomatal density, may have a significant effect on the response of plants to carbon dioxide. There seems to be a great deal of variation among plant species in terms of how stomata density changes with increasing CO2 concentration. The opening and closing of the stomata through carbon dioxide absorption, regulates the amount of water wasted when adverse environmental conditions. In fact, increasing carbon dioxide in plants reduces stomatal conductance and transpiration, increases water use efficiency, photosynthesis rate and higher light utilization efficiency. 

    Materials and Methods

     This study was conducted as a split plot experiment based on a completely randomized design with three replications in the research greenhouse of Ferdowsi University of Mashhad. Treatments included three concentrations of carbon dioxide (380 ppm as control, 700 and 1050 ppm) as the main plot and two species of ornamental ficus (Benjamin and Elastic) as sub plots. At first, cuttings were rooted in boxes containing washed sand infused with carbendazim for 8 weeks. After rooting, the cuttings were transferred to culture media containing appropriate soil mixture and exposed to different concentrations of carbon dioxide for 16 weeks. Were affected. Mean daily temperature of 25 and mean night temperature of 18 °C and 65% humidity were considered equal for all treatments. Then, after the treatments, Stomatal traits were measured.

    Results and Conclusion

     The results showed that high concentrations of carbon dioxide can affect the anatomical traits of Ficus ornamental species. In this study, the results obtained from the analysis of variance of the studied traits showed that the effect of different concentrations of carbon dioxide was not significant only for the stomatal index, but for other traits studied in this study. The main effect of carbon dioxide concentration was significant at 1% probability level.The results showed that the traits of stomata diameter in plant species and different concentrations of carbon dioxide were significant at 5 and 1% probability levels, respectively. Also with increasing the concentration of carbon dioxide the diameter of the stomatal decreased so that the highest stomatal diameter was related to the concentration of 380 ppm and the lowest to the concentration of 1050 ppm. In fact, increasing the concentration of carbon dioxide from the level of 380 to 1050 ppm led to a decrease of 19.91 percent in the diameter of the stomatal. Increasing the concentration of carbon dioxide in the environment of plants, initially increases the slope of the concentration of carbon dioxide between the surrounding air and the chamber under their stomata, and then more carbon dioxide through the pores leads to a decrease in the slope due to the abundance of carbon dioxide in the chamber below the stomata, This action reduces the diameter of the stomatal. As the concentration of carbon dioxide increased the stomatal cell density and stomatal area. Among the high concentrations of carbon dioxide the concentration of 700 ppm affected most of the traits, including stomatal diameter, stomatal area, epidermal cell density, stomach length and stomach width. though there was no significant difference between high concentrations of carbon dioxide (700 and 1050 ppm). According to the results of this study, it seems that anatomical traits are influenced by environmental factors and are not recognized as a hereditary factor. Among the species, the elastica species showed the most reaction to carbon dioxideal. 

    Conclusion

     In general, clarifying the stomatal response to carbon dioxide concentration is important for understanding the stomatal physiology and gas exchange between vegetation and the In general, stomatal properties have a major influence on the response of plants to carbon dioxide treatment. Carbon dioxide at appropriate concentrations can increase growth and also affect the stomach properties to allow the plant to adapt to environmental conditions.

    Keywords: anatomical characteristics, Benjamin, Carbon Dioxide, Elastica, stomatal density
  • S.A. Razi, D. Hashemabadi *, B. Kaviani Pages 599-614
    Introduction
     Carnation (Dianthus caryophyllus L.) is one of the most important cut flowers of the world. This flower is sensitive to postharvest ethylene and water stress and has short vase life. The use of retardants or inhibitors compounds of ethylene is an effective way to increase the postharvest life of carnation. Polyamines including putrescine (diamine), spermidine (triamine) and spermine (tetraamine) as new groups of plant growth regulators that are involved in various processes including increasing cell division, increasing enzyme biosynthesis, regulation of different developmental stages, differentiation, flowering, embryogenesis, rooting and maturity. These compounds exert their anti-aging properties by competing with ethylene production. Polyamines are low molecular weight organic compounds with aliphatic nitrogen groups that have different hydrocarbon rings and two or more amino groups (positive charge agents). These organic compounds bind to cell membranes, nucleic acids, and other macromolecules and are involved in chromatin formation, ion channel control, free radical neutralization, and gene expression. Cell membrane strength and stability play an important role in increasing the post-harvest life of horticultural crops. Putrescine is the major polyamine in plants, which is a precursor to the synthesis of spermidine and spermine, and its positive effect on increasing the vase life of some cut flowers has been reported. Vase life of cut flowers of chrysanthemum, rose and gladiolus was increased by application of putrescine. The purpose of the present research was to increase the vase life of cut carnation flower using different putrescine concentrations and application methods.
     
    Materials and Methods
     A factorial experiment based on completely randomized design with 10 treatments in 3 replicates, 30 plots and 150 cut flowers was employed to investigate the effect of different concentrations of putrescine (0.01, 0.02 and 0.05 mM) and its application methods (continuous, pulse and spray) on vase life of cut carnation (Dianthus caryophyllus L.) flowers. Some other traits such as water uptake, dry mater percentage, decrease of fresh weight, the content of leaf chlorophyll and sepal carotenoid, POD and SOD enzymes activity, MDA, decrease of °Brix (sucrose percentage in flower stalk, soluble sugar in stem end and sepal), ionic leakage, ethylene were also measured. The statistical analysis of data was performed using SAS. The least significant difference (LSD) test at P < 0.05 was used for comparisons of different means of various treatments.
     
    Results and Discussion
     Results showed that the maximum vase life was recorded in cut flowers treated with 0.02 mM putrescine as spray application. The lowest ethylene production, the highest water uptake and superoxide dismutase enzyme activity was observed in 0.02 mM putrescine treatment. Some physiological parameters and enzymatic activity were also evaluated. The control treatment generally yielded the minimum values for most of the observed traits. Factors such as water stress, reduced carbohydrate levels, increased ethylene production, and the presence of microorganisms play pivotal roles in reducing the vase life of cut flowers. Polyamines are key in counteracting these stressors and delaying aging. They fulfill this role by fortifying the plasma membrane, suppressing the activity of hydrolytic enzymes, and inhibiting ethylene synthesis. Additionally, polyamines bind to cell wall pectin, safeguarding them from detrimental cell wall enzymes, including pectinase. They further impede flower maturation by inhibiting the production of essential enzymes required for ethylene synthesis and by dampening ethylene activity. Increasing polyamines by inhibiting lipid peroxidation is probably one of the mechanisms responsible for the anti-aging effect of polyamines. Polyamines have antioxidant properties so they reduce the number of oxygen free radicals and the permeability of plasma membranes by decreasing the activity of lipoxygenase, thereby increasing the vase life and quality of flowers. The use of polyamines to increase the vase life of some cut flowers has been reported, which the results of the present study are consistent with the results of these studies. Treatment of 20 mg l–1 spermine and 10 mg l–1 putrescine had the greatest effect on increasing vase life and reducing senescence of cut Alstroemeria flowers. Spermidine delayed the aging of carnation flowers. In cut rose cv. ‘Doles Vita’ flowers, the use of polyamines increased vase life. Treatment of 2 mM spermidine was the most suitable treatment to increase the vase life of cut carnation cv. ‘Red Corsa’ flowers. Cut rose flowers treated with humic acid and putrescine had the highest vase life compared to the control. Polyamines increased the vase life of cut gladiolus flowers by increasing the stability of plasma membranes. The addition of polyamines to the carnation flower preservative solution reduced their aging and prevented the production of ethylene. Polyamines appear to increase vase life in cut flowers by inhibiting ACC-synthase activity and reducing ethylene production. SOD, POD and catalase (CAT) enzymes, as antioxidant compounds, protect plants against reactive oxygen species and free radicals. Polyamines neutralize free radicals and are also involved in the synthesis of enzymes. Binding of polyamines to proteins protects them from the damaging effects of reactive oxygen species and free radicals. Treatment of 20 mg l–1 spermine increased the activity of SOD enzyme in cut Alstroemeria flowers. Concentrations of 10 and 20 mg l–1 putrescine and spermine significantly increased catalase activity. Spermidine treatment significantly increased the activity of free radical scavenging enzymes such as SOD and CAT. Putrescine in sunflower stimulated the catalase enzyme. At the first onset of senescence, antioxidant enzymes such as POD increase in petal cells to reduce the damaging effects of reactive oxygen species.
    Keywords: climacteric flower, Ethylene, Polyamine, Postharvest longevity
  • F. Khosravi, M.A. Bahmanyar, V. Akbarpour * Pages 615-627
    Introduction
     Humic acid as an organic matter, made during chemical processes in the soil leads to improved root growth and aerial part of the plant. It increases the penetration of elements in the plant and improves water permeability. Zinc is involved in the maintenance of root cell membranes, the activation of antioxidant enzymes, and the production of RNA and DNA. This study aimed to investigate the effect of applying humic acid and zinc sulfate on some morphological and phytochemical traits of Salvia officinalis L.
     
    Materials and Methods
     In this regard, this experiment was conducted as a factorial based in a completely randomized design with two factors (concentrations of 0, 1.5, 3 and 4.5 g/l humic acids and concentrations of 0, 3, 6 and 9 g/l zinc sulfate) in five replications in 2021. The studied traits included plant height, stem diameter, fresh weight, and dry weight, number of sub-branches, chlorophyll, carotenoids, phenols, flavonoids and essential oils. Seedlings of the same size and age as sage were grown under equal. The properties of the soil used in the laboratory were examined. Treatments were sprayed with humic acid 6% and zinc sulfate 34% in five steps, every two weeks.
     
    Results and Discussion
    Result showed that application of humic acid and zinc sulfate had no significant effect on plant height and only their simultaneous use had a significant effect on this trait and the highest plant height was observed for treatment of 1.5 g/l humic acid and 9 g/l zinc sulfate (66.50 cm). In stem diameter analysis, the use of humic acid (p≤0.01) and the application of zinc sulfate (p≤0.05) and the interaction of these two treatments(p≤0.05) affected the stem diameter. According to the results, the highest stem diameter was 8.69 mm, which occurred in the treatment of 4.5 g/l humic acid and 3 g/l zinc sulfate. Application of humic acid significantly (p ≤ 0.01) affected the fresh weight of the plant. Application of zinc sulfate also had a significant effect (p ≤ 0.05) on fresh weight. The effect of simultaneous use of humic acid and zinc sulfate on the fresh weight of this plant was significant at the level of 1% probability and the highest fresh weight was 87.26 g.plant-1, which achieved at a concentration of 4.5 g/l humic acid and 6 g/l zinc sulfate. Compared to the control plant, it has increased by 12.56 grams. The effect of humic acid on dry weight was significant at the level of 5% probability, while the effect of zinc sulfate application on this trait was not significant. The combined use of humic acid and zinc sulfate was significant at the 1% probability level. The maximum dry weight reached 29.73 grams per plant, achieved with a concentration of 4.5 grams per liter of humic acids and 3 grams per liter of zinc sulfate. Both humic acid and zinc sulfate exhibited a significant effect (at the one percent level) on the number of branches. Furthermore, the combined application of humic acid and zinc sulfate proved to be highly effective (p<0.01). The greatest number of sub-branches was observed at the 1.5 grams per liter level of humic acid. Humic acid had a substantial impact on chlorophyll a, b, total chlorophyll, and carotenoids (p≤ 0.01). Similarly, the application of zinc sulfate showed significant effects on chlorophyll a, b, and carotenoids (p≤ 0.01), as well as on total chlorophyll (p≤ 0.05). In the end, the simultaneous application of humic acid and zinc sulfate significantly influenced chlorophyll a, b, total chlorophyll, and carotenoids (p<0.01). The most significant effects on photosynthetic pigments (carotenoids, chlorophyll a, and total chlorophyll) were observed with concentrations of 4.5 grams/liter of humic acid and 6 grams/liter of zinc sulfate. The highest chlorophyll b content was obtained with the treatment of 3 grams/liter of humic acid and 6 grams/liter of zinc sulfate. The effect of humic acid and zinc sulfate application as well as their simultaneous use on the amount of phenols and flavonoids was significant at the level of 1% probability. The highest amount of phenol was 0.372 (mg gallic acid per gram of fresh tissue) which was obtained at a concentration of zero zinc sulfate and 3 g/l humic acid. The highest flavonoid content was 0.527 (mg quercin per gram of fresh tissue) which was observed in the treatment of 4.5 g/l humic acids. The use of humic acid had significant effect on the amount of essential oil. The percentage of essential oil reached the highest levels at the concentrations of 1.5 and 3 g/l humic acids.
     
    Conclusion
     Based on the results, the use of humic acid alone and in combination with zinc sulfate, had the greatest effect on most of the studied traits.
    Keywords: Carotenoids, flavonoids, Essential oils, Chlorophyll, Salvia officinalis
  • M.J. Karami * Pages 629-641
    Introduction
     The Rotabi grape cultivar holds significant importance in the Bavanat region of Fars province. There are two distinct methods of pruning employed for this cultivar: Cane pruning and Spur pruning. These methods vary primarily in the length of one-year-old wood that is preserved after pruning. Cane pruning involves retaining long fruiting canes, typically those with more than 3 buds per cane. Conversely, Spur pruning utilizes shorter canes, usually those with 1-2 buds. The common method of training Rotabi vines in Shiraz vineyards is in the form of bush training. This method of vine training is compatible with spur pruning, in which the canes are usually pruned into 2 to 3 buds. For this reason, there is not enough information about the response of this cultivar to cane pruning. This study was conducted in order to determine the correct method of pruning Rotabi vines based on scientific principles appropriate to its genetic characteristics.
     
    Materials and Methods
     This study was performed on 17-year-old vines of Rotabi cultivar in one of the vineyards of Shiraz of Fars province (Iran). In this study, the response of this cultivar to two levels of pruning severity (light pruning with formula 40 + 20 and severe with formula 20 + 20) and three levels of the number of the buds per cane (3, 6, and 9 buds) during three years in Shiraz region of Fars province (Iran) was evaluated. A factorial experiment based on randomized complete block design was used with three blocks. Quantitative and qualitative characteristics such as yield, average weight of cluster, average number of clusters/vine, titratable acidity (TA), pH of fruit juice, TSS%, bud fruitfulness, the average weight and the number of berries/bunch was recorded.
     
    Results and Discussion
     Results showed that effects of pruning severity on yield, the number of bunch/vine, bunch weight, pH, bud fruitfulness and berry weight was significant (p≤0.01). Effect of cane length on yield, the number of bunch/vine, bunch weight, bud fruitfulness and the number of berry/bunch was significant (p≤0.01). but on berry weight, TA, pH and TSS% of fruit juice was not significant. Interactions between pruning severity with buds per bearing unit on yield, the number of bunch/vine, berry weight and the number of berry/bunch (p≤0.01) and on TA (p≤0.05) was significant. The highest fruit production per hectare (yield) and the number of bunches per vine were obtained in vines subjected to light pruning. However, in vines that underwent severe pruning, bud fruitfulness and berry weight were greater than in lightly pruned vines. The most substantial yield was achieved with 6-bud and 9-bud canes. Yet, the highest number of bunches was observed in vines with 3-bud and 6-bud canes. Bud fruitfulness reached its peak in the 6-bud cane category, while it was at its lowest in the 3-bud cane group. The number of berries was the same in the 3-bud and 9-bud cane treatments, and it exceeded the number of berries in the 6-bud cane group. Notably, due to the interaction between pruning severity levels and the number of buds per cane, the highest yield was recorded in light pruned vines that underwent cane pruning, specifically in the groups of light pruning with 6-bud canes and light pruning with 9-bud canes. The highest number of berries was observed in light pruning with 9 buds. As a result of this study, it was found that by increasing the number of buds/cane or in other words by increasing the cane length to 6 and 9 buds in this cultivar, the fruit yield/vine increased, and but fruitfullness decreased. Increased yield in light pruning can be due to the increase in the number of bunches/vine due to the increase in the number of buds in this type of pruning. Therefore, to increase the yield of this cultivar, cane pruning + 9 buds/cane should be applied. This type of pruning is not compatible with conventional pruning methods (spur pruning) in the cultivation area of this cultivar. Therefore, it is necessary to develop training systems compatible with cane pruning (such as four-arm kniffin system) in these areas.
     
    Conclusion
    While severe pruning led to higher bud fruitfulness, it resulted in lower fruit production per vine (yield) compared to lightly pruned vines. One possible explanation for this difference is that light pruning retained more buds compared to severe pruning. As a consequence, light pruning produced more bunches, ultimately yielding a greater quantity of fruit compared to the severe pruning method. The highest yield (31.3 t/ha) and the highest number of bunches/vine (103) was observed in light pruned vines. Also, the highest yield was obtained in 6-bud and 9-bud canes (31.4 and 31.3 t/ha) respectively. Yield increased with increasing cane length to 6 or 9 buds. Therefore, in order to achieve more yields in this cultivar, cane pruning of at least 6 buds should be applied. But in the end, for better management of vines and the possibility of using standard vine training systems compatible with cane pruning, preferably cane pruning with 9-bud/vine is recommended.
    Keywords: Balanced pruning, Grapevine training, Bud fruitfulness, Light pruning
  • F. Soleimani, D. Samsampour *, A. Bagheri Pages 643-653
    Introduction
     Medicinal plants have reservoirs rich in the active ingredients of many medicines. Medicinal plants have rich reservoirs of essential active ingredients of many drugs. Considering the importance of medicinal plants, especially in the pharmaceutical industry and their scarcity in nature, it is very important to study the various agricultural aspects of these plants, considering the increasing spread of saline soils, to find a solution. It seems necessary to prevent living and non-living environmental stresses or at least reduce them. One of these methods is the use of symbiotic relationships between mycorrhizal fungi and host plants, which reduces the stress caused by salinity. Due to the increasing expansion of saline soils, it seems necessary to find solutions that can prevent or at least reduce the living and non-living environmental stresses. There are different ways to overcome these tensions in different situations. Water salinization is one of the most important environmental limiting factors for crop production, especially in arid and semi-arid regions of the world, since Iran is located in the arid region of the world, given that salinity is one of the environmental factors. Are that have a strong effect on the growth and activity of lemongrass; There are also vast resources of saline and semi-saline groundwater, although not currently used and likely to be used in the future. Solutions to address abiotic stresses include the use of biofertilizers. One of these methods is to use the symbiosis of fungi with host plants, which leads to a reduction in salinity stress. The aim of this study was to investigate the effect of Arbuscular mycorrhizal fungi. On vegetative and biochemical traits of lemongrass under salinity stress. Salinity is one of the most important factors limiting the growth and production of crops. Fungi as a biological fertilizer can be useful in meeting the nutritional needs of plants and reducing the effects of environmental stresses on plants.
     
    Materials and Methods
     The experiment was a factorial experiment in a completely randomized design with two factors of four salinity levels (0, 5, 10 and 15 ds.m-1 NaCl) and fungi (no inoculation and fungal inoculation). For inoculation of Arbuscular mycorrhizal fungi with mixed potting soil was applied to the lemongrass. Plant height, root length, fresh and dry weight of leaves, relative water content, catalase, peroxidase and polyphenol oxidase were measured.
     
    Results and Discussion
     The results indicate that all studied traits were significantly affected by the interaction of mycorrhiza and salinity stress. The application of mycorrhizal fungi in the presence of salinity stress due to the absorption of nutrients and water led to improved growth of lemongrass. The results showed that under salinity stress of 150 mM plant height, root length, fresh and dry weight of leaves, relative water content, catalase, peroxidase and polyphenol oxidase enzymes in lemongrass inoculated with arbuscular fungus at 23.05, 32.69, 25.31, 48.14, 31.83, 30.33, 52.72 and 33.41% respectively, increased compared to the control (no inoculation). In general, based on the results of this study, it can be concluded that the use of mycorrhizal fungi can increase the salinity tolerance of lemongrass and cultivate it in saline soil.
     
    Conclusion
    In summary, the results of the present study showed that inoculation of the fungi can protect the lemongrass plant against salinity stress. In addition, the effect of mycorrhizal fungi on lemongrass under salinity stress has been investigated for the first time. According to the results obtained in this study, salinity reduced morphological parameters and lemongrass as a reaction to salinity to maintain its status to increase the amount of enzyme activity through the mechanism of osmotic regulation to stress conditions. Compromise and to some extent deal with salinity. In the study, it was observed that inoculation with Arbuscular had a positive effect on all measured traits. The application of mycorrhizal fungi in the presence of salinity stress due to the absorption of nutrients and water led to improved growth of lemongrass. By examining all the measured traits, it can be concluded that by using mycorrhizal fungi, the salinity resistance of lemongrass can be increased and cultivated in saline soil. Arbuscular species seems to be more suitable for improving the growth of lemongrass in all conditions.
    Keywords: Catalase, Medicinal plants, Peroxidase, Relative leaf water content
  • A. Ehtesham Nia *, Sh. Taghipour, S. Siahmansour Pages 655-668
    Introduction

    While grapes are considered as non-climacteric fruits, during the post-harvest stages, due to the softening of the tissue, it is very prone to decay, which shortens its post-harvest life. Today, due to the desire of consumers to use high quality food, the use of biodegradable films and coatings with antimicrobial properties, is a suitable alternative to synthetic preservatives, in order to maintain food security and prevent wastage of significant capital. Edible coatings are edible thin layers that are used to increase the shelf life and quality of fruits. This material increases the quality and health of the product by creating a semi-permeable barrier to water vapor and oxygen and carbon dioxide gases between the product and the environment, and to prevent anaerobic respiration, it absorbs a certain amount of gases and to this Sequence increases product shelf life. One of the most important ways to increase the shelf life and maintain the quality of agricultural products, especially fruits, is the use of edible coatings on the crop surface. Chitosan is one of the most important natural derivatives of chitin, of which about 50% of its acetyl’s groups have been removed. Due to the fact that Aloe vera gel has no taste and odor, can be considered a good option as a cover for fruits after harvest and due to its elasticity and strength solution in water, as a suitable layer on the product. Located and protects the fruit from mechanical damage and moisture loss.
     

    Material and Methods

     In this study, 12-year-old mature grape trees of ‘Asgari’ cultivar in the scaffolding garden of Abestan region of Khorramabad city in 1398 were studied. In the pre-harvest stage, chitosan was sprayed on the tree and in the post-harvest stage, Aloe vera gel was applied by dipping the fruit in Aloe vera gel in the laboratory. After treatment, the fruits were stored in the refrigerator at a temperature of 4 ± 0.5 ° C and were examined at different time stages for quantitative and qualitative characteristics of the fruit. 20 identical grape trees (in terms of fruit size and load, with 50 to 70 annual branches in 8-14 buds) selected and grape clusters with different concentrations of chitosan (control (distilled water), 2 and 3 Percentage of chitosan) at different stages of growth (fruit set), 35 and 50 days later) were sprayed directly with 4 liters per vine, by hand sprayer (2 ml Tween 80% was added as the active surfactant). For this stage, immediately after harvesting the grapes, take them to the laboratory and immerse them in concentrations (zero, 25 and 33%) of Aloe vera gel for 10 to 20 seconds and then in the air. They dried. Then, grape fruits weighing about 360-300 g in each experimental unit were stored for 28 days at 4 ° C and examined. This study was performed as a factorial experiment (2 factors) in a completely randomized design with three replications. The first factor is the effect of the treatments studied in seven levels including: control, 2% chitosan (CTS 2%), 3% chitosan (CTS 3%), chitosan 2% + Aloe vera gel 25% (AVG 25% + CTS 2%), chitosan 3% + Aloe vera gel 25% (AVG 25% + CTS 3%), 2% chitosan + 33% Aloe vera gel (AVG 33% + CTS 2%), chitosan 3% + Aloe vera gel 33% (AVG 33% + CTS 3%) and the second factor was storage time at five levels (zero, 7, 14, 21 and 28 days after harvest). Data analysis was performed using SAS software and a significant difference between treatments for each trait with a minimum significant difference at the probability level = 0.05 α was determined.
     

    Results and Discussion

     The results of analysis of variance showed that the effect of treatment and storage time on the desired traits was significant at the level of one percent. Fruits treated with chitosan and Aloe vera gel had higher texture firmness, taste index, phenolic content, antioxidant activity and titratable acids and caries index and pH were lower than the control. The highest content of phenol, antioxidant, flavor index and titratable acidity in all five measurement times belonged to 2% chitosan treatments with both concentrations of Aloe vera gel (25 and 33%) and the lowest amount belonged to the control treatment. In control treatment, the percentage of caries index increased during storage and in grapes treated with chitosan and Aloe vera gel, the caries process was slower and the lowest rate of caries was observed in 2% chitosan treatment with aloe vera gel on the 14th day. In general, it was observed that pre-harvest application of chitosan and post-harvest Aloe vera gel increase the post-harvest life of ‘Asgari’ grapes and improve its quality traits. Chitosan creates a barrier with selective permeability to oxygen and carbon dioxide gases, and by placing carbon dioxide at a higher level and reducing oxygen, it creates a modified atmosphere around the fruit, which reduces respiration and ethylene production. As a result, it reduces the aging process and reduces the consumption of organic acids and sugars and prevents the increase of pH. Low pH prevents browning of the fruit due to the activity of catechins and chlorogenic acid enzymes. Aloe vera gel coating maintains and increases the antioxidant capacity of the whole fruit by reducing fruit juice loss, reducing respiration, reducing ethylene production and delaying aging.
     

    Conclusion

     The combined treatment of chitosan 2% and Aloe vera gel (25 and 33%) increased fruit firmness, titratable acidity, taste index, total phenol content and antioxidant activity of grapes and reduced pH and caries index. Application of these treatments increased the post-harvest life of ‘Asgari’ grapes by 14 days, so it can be stated that the use of chitosan in the pre-harvest stage and the use of Aloe vera gel in the post-harvest stage as biodegradable and natural compounds to increase Shelf life of ‘Asgari’ grape fruit is recommended.

    Keywords: Antioxidant, Decay index, Natural coating, Total phenol content
  • P. Karimi Tazeiji, S. Rastegar *, H. Hasanzadeh Khankahdani Pages 669-683
    Introduction
    Date fruit (Phoenix dactylifera L.) is one of the oldest known fruit crops and is considered as an important component of the diet in many Middle Eastern and North African countries. The fruit of date is nutritious, which is incredibly rich in carbohydrates, minerals, dietary fibers and amino acids. Dates are one of the most important tropical fruits that play an important role in the country's economy. Among the date palm cultivars in Hormozgan province, Piyarom is one of the most commercial cultivars.
    Recent studies by scientists have shown that the use of chemical compounds, in addition to environmental hazards, will cause various diseases in consumers due to the residual transfer of toxins to their bodies. Therefore, the management orientation of food preservation methods has moved towards reducing and eliminating chemicals and determining suitable alternatives, so that a certain time frame was set for the removal of some of the most important tobacco toxins.
    In recent years, attention has been paid to aloe vera gel as a coating layer for fruits and vegetables to maintain their storage quality, and because it has no smell or taste, eating it does not pose a problem for humans and it is even good for health. L-arginine is one of the 20 major amino acids of living cells, which is a semi-essential amino acid in the human body. L-arginine and D-arginine are natural forms of common isomers of this type of amino acid.
    The aim of the present investigation was the assess the effect of L-Arginine and Aloe vera gel edible coating on maintaining the external properties and the quality of semi-dried date fruit cultivars including Piyarom during storage.
     
    Material and Method
     The experiment was conducted as a factorial arrangement in a completely randomized design. The first factor was including seven treatments consisting of control, L-Arginine (1, 2, and 8 mM) and Aloe vera gel (25, 50, and 75%) and the second factor included storing (sampling) time for 9 months. In every measurement, the different attributes were evaluated such as weight loss percent; TSS; total acid; total phenol; flavonoid; color indexes including L*, a*, and b*; and antioxidant capacity. The level of antioxidant activity was evaluated by antioxidant agents by the method described by based on the trapping of free radicals of 2, 2-diphenyl 1-picryl hydrazyl (DPPH). DPPH solution was well combined with the methanol extract by means of a vortex and was incubated in the dark for 30 min. Then the absorption rate was read at 517 nm using a spectrophotometer. The color was determined using a colorimeter (Minolta, CR-400, Japan) after different months of storage. All measurements were done in triplicates. L* (100=white, 0=black), a* (–green, +red) and b* (–blue, +yellow) values were obtained at 400-700 nm range. The assay of the total phenol content was performed by applying the Folin–Ciocalteu colorimetric procedure. The total soluble solid (TSS) content of the fruit juice obtained for each replicate was determined using a hand-held refractometer Atago (Atago Co. Japan) at 25 °C; the results are expressed as % (°Brix). Titratable acidity (TA) was measured by titrating diluted juice with 0.1 N NaOH to a phenolphthalein end-point (pH 8.1-8.3). The results are expressed as citric acid %.
     
    Results and Discussion
     Based on the results, the treatments of Aloe vera gel and L-Arginine had significant effect on the quantitative and qualitative traits of Piyarom date fruits during storage. Storing time had significant influence (p<0.01) on the all parameters so that by passing storage time, the parameters including L*, a*, b*, a weight loss percent significantly increased and the parameters such as phenol, flavonoid and antioxidant significantly decreased. In the Piyarom cultivar, the treatments had significant effects on a*, b*, weight loss percent, phenol, flavonoid, and antioxidant, but it had no significant influence on TSS and total acid, so that the highest a* and b* color indexes was observed in the use of L-Arginine 1 mM, the greatest phenol and flavonoid in the application of L-Arginine 2 mM, the lowest weight loss percent in the use of Aloe vera gel 25 and 75%, respectively.
     
    Conclusion
     According to the results, 1 mM L-arginine treatment and 75% Aloe vera gel had a more effective role in maintaining the storage quality of Piyarom dates. The use of these treatments requires more extensive research on soft and dry dates.
    Keywords: Edible Coating, quantitative attributes, semi-dried date fruit, storage
  • P. Molaei, T. Barzegar *, M. Babaakbari Sari, F. Nekounam, Z. Ghahremani Pages 685-697
    Introduction
    Excessive use of chemical fertilizers threatens the environment and leads to production of unsafe food products. Currently, the market share of organic vegetables is constantly increasing due to customer demand for safer and healthier food. Therefore, it is necessary to find alternatives instead of using chemical fertilizers in plant production.
    Lettuce (Lactuca sativa L.), belongs to Asteraceae family is considered as one of the most popular salad vegetables as a cool season crop. It is also one of the most important vegetables due to its rapid growth and commercial value. Plant growth promoting bacteria promote plant growth directly by facilitating nutrient uptake through fixing nitrogen, solubiliszation of phosphorus, production of hormones and iron uptake. Arbuscular mycorrhizal fungi establish symbioses with plant roots which help to improve nutrient uptake by the host plant and alter its physiology to withstand external abiotic factors and pathogens. Arbuscular mycorrhizal fungi interactions with bacteria have been reported to enhance plant growth through phosphate solubilization, nitrogen fixation, increased AMF spore germination and colonization of plant roots. The potential of co-inoculation of these two organisms in promoting the growth of horticultural crops like tomato, strawberry, lettuce and spinach have also been reported.
     
    Materials and Methods
    In order to compare the effect of growth-promoting bacteria, mycorrhiza fungi and chemical fertilizers on morphological and physiological properties of lettuce (Lactuca sativa cv. New Red Fire), the experiment was carried out in a completely randomized design with three replications. Experiment treatments consisted of 14 treatments including three levels of potassium solubilizing bacteria (Pseudomonas vancouverensis, Pseudomonas koreensis, Pseudomonas vancouverensis + Pseudomonas koreensis) + 100% N and P, three levels of phosphorus solubilizing bacteria (Pantoea agglomerans, Pseudomonas putida and Pseudomonas putida + Pantoea agglomerans) + 100% N and K, and one level of potassium and phosphorus solubilizing combined bacteria (Pantoea agglomerans+ Pseudomonas koreensis+ Pseudomonas putida+ Pseudomonas vancouverensis) + 100% N, mycorrhiza fungi combination of three Glomus species (G. mosseae, G. etunicatum and G. intraradices) + 100% N and K and five chemical fertilizer levels (N100P100K100, N100P100K0, N100P0K100, N100P25K100 and N100P100K25) according to soil test results, and control treatment without bio-mineral fertilizers.
    The “New Red Fire” lettuce seeds were surface sterilized with 0.5% (v/v) sodium hypochlorite for 10 min, and germinated at 20ºC. After germination, seedlings of similar size were transplanted singly into pots containing agricultural soil. Plants were grown under greenhouse condition of 60/70% (day/night) relative humidity, 15/18 °C (day/night) temperature. After a growth period of 75 days, plants were removed from the pots. The root system was separated from the shoot and washed to remove adhered soil. Root and shoot fresh weight, chlorophyll, vitamin C, anthocyanin, TA, TSS and nitrate contents were measured.
     
    Results
    The results showed that application of potassium and phosphorus solubilizing bacteria and mycorrhiza fungi significantly increased plant growth compared to control plant. The highest fresh shoot weight (increase of 42.3%) and crown diameter (increase of 14.4%) was obtained with application of combined potassium and phosphorus solubilizing bacteria treatment + 100% N fertilizer compared to control plants. Application of Pseudomonas koreensis + 100% N and P resulted in the maximum content of anthocyanin (increase of 62.2%) and total soluble solids (increase of 82.5%) compared to control plants. Ascorbic acid, a well-known antioxidant and organic compound, is an essential vitamin can be obtained from fruits and vegetables. The highest vitamin C content (32.3 mg 100 mL-1) was observed at plant treated with N100P100K100 fertilizer. The maximum titratable acidity content was obtained with application of Pseudomonas vancouverensis + 100% N and P, and combined potassium and phosphorus solubilizing bacteria treatment +100% N fertilizer. The nitrate content is an important quality index of leafy vegetables; low nitrate content is associated with enhanced quality. Application of chemical fertilizers significantly increased nitrate accumulation compared to biofertilizers and control plants, so that the minimum nitrate accumulation content was observed in control plant and combined potassium and phosphorus solubilizing bacteria treatment + 100% N fertilizer (21.14 µg g-1FW), respectively.
     
    Conclusion
    With continuous development of economy and society, people pay an increasing attention to the quality of fruits and vegetables. Improving the crop yield means that attention must also be given to improving vegetables quality, resulting in chemical fertilizer nutrition problem. To conclude, our study suggested that after the control treatment (without using any chemical fertilizers), which had the lowest accumulation of nitrate, application of growth-promoting bacteria and mycorrhizal fungi in combination with nitrogen fertilizer caused lower nitrate accumulation than chemical fertilizers treatments. So, the use of combined and pure bacteria treatments and mycorrhizal fungus treatment can be used to improve the growth, quality and antioxidant properties and increase the concentration of nutrients and also reducing nitrate accumulation in lettuce.
    Keywords: Anthocyanin, Nitrate accumulation, Plant growth promoting bacteria, Vegetable growth
  • Z. Roudbari *, M.R. Imani, J. Sarhadi, S. Khoshkam, R. Yoneszadeh Pages 699-709

    Introduction: 

    To specify the diversity of pepper plant (Capsicum ssp.) population and the inheritance of fruit characteristics for use in seed production breeding programs, there is a need for a diverse population in terms of the characteristics affecting fruit yield. By a large variety of options available for each product, there is a greater probability of selecting the best decision. A population's genetic variety may be used in several ways, including selection and hybridization. Pepper is a plant belonging to the genus Capsicum and the family Solanaceae. It is cultivated globally, particularly in tropical and subtropical regions. The genus Capsicum contains more than 30 wild and domestic species, which are classified according to flower structure, fruit, and the number of chromosomes (2n= 24, 26). 

    Materials and Methods:

     To compare different pepper species based on fruit morphology, a greenhouse experiment was conducted under hydroponic conditions in Zarandieh region, Markazi province, in a completely randomized design with three repetitions in 2021. The seeds of 42 pepper genotypes from 7 species were obtained from Gene Bank of Leibniz Institute of Plant Genetics and Crop Plant Research (IPK). Initially, the seeds were sown in dedicated planting trays. Once the seedlings had grown six leaves, they were transplanted to the main greenhouse. Within the greenhouse, the rows of cultivation were spaced 160 cm apart, with a 25 cm gap between individual plants. Each genotype was represented by ten plants. Throughout the growing season, the plants were managed by maintaining two branches and removing any surplus ones. In this research, the following characteristics were evaluated: fruit production across three harvests, fruit weight, fruit length and diameter, fruit flesh thickness, fruit flavor (spicy or sweet), unripe fruit color, and ripe fruit color. Descriptive statistics of evaluated trait, including mean, minimum and maximum traits and the percentage of phenotypic and genotypic diversity coefficients, heritability, and the analysis of variance and comparison of means, were used to analyze the data.  

    Results and Discussion:

     A diverse collection of pepper was evaluated due to the fruit morphological traits and significant differences among different genotypes in terms of these traits. The average fruit weight of the assessed population was 26.54 g. The minimum and maximum fruit weights of 152.70 and 0.13 g were related to genotypes 409 and 276, respectively. Genotype 318, with an average weight of 144.20 g, was not significantly different from genotype 409. Both genotypes were of the species annuum, but were in two separate groups regarding fruit morphology. The heritability rate of fruit weight was 93%, which is consistent with the results of Usman et al. (2014). Length, diameter and length to diameter ratio (fruit morphology index) are the most important factors in marketing pepper fruit. The mean fruit length, diameter and morphology index were 6.35, 2.57 cm and 3.04, respectively. The highest fruit length was related to genotypes 296 and 318 at 26.33, 20.20 and 19 cm, while the lowest fruit length was 0.70, related to genotype 277. The genotypes with the highest lengths were long pepper and Kapia sweet pepper, respectively, and the genotypes with the shortest lengths tasted spicy. Genotypes 409, 200, 318, 326, 272 and 348 had the largest diameter with 6.50, 6.23, 5.80, 5.67, 5.60 and 5.30 cm, respectively. These genotypes are bell, round, Kapia, triangular, triangular, round and sweet in terms of morphology. The smallest fruit diameter belonged to genotype 293 (0.30 cm), and the nineteen genotypes with a diameter of less than 2 cm did not differ significantly from 293. Twenty genotypes with the smallest fruit diameter have a pungent flavor (Table 1). The range of the fruit morphology index was from 0.56 to 8.99. The lowest and highest values were associated with genotypes 342 and 296, respectively (Table 3). The fruit of genotype 296 was sweet, whereas the fruit of genotype 342 was spicy. The heritability of length, diameter and fruit morphology index were 0.97, 0.97 and 0.98%, respectively. The lowest and highest numbers of fruits per plant in each hand-harvest were 1 and 67 fruits, respectively, belonging to genotypes 342 and 326. However, regarding shallow length, diameter, pulp thickness and, consequently, the low weight of the fruit in genotype 342, an almost low yield of this genotype was obtained in three harvests (2742.67 kg/ha). In contrast, genotype 318, despite its small number of fruits per hand-harvest (3 fruits per hand-harvest), had the highest fruit yield of 25379.20 kg Per hectare due to having fruits with large size and pulp thickness and as a result of high fruit weight. The lowest yields related to genotypes 276 and 293 belonged to C. frutescens L., with fruit yields of 17.60 and 44.00 kg/ha in three harvests. However, there was no statistically significant difference among the performance of these genotypes and the genotypes 277, 210, 282, 358, 261, 332, 394, 304, 311, 407, 321, 215, 427, 203, 342 and 200. The percentage of phenotypic and genetic variations in fruit yield was 61, 55% and the heritability of fruit yield was 81%.

    Conclusion

    This study evaluated a diverse collection of different species of pepper with a wide range of appearance traits. However, the most desirable and marketable characteristics of the fruit were obtained from genotypes belonging to C. annuum. However, genotypes belonging to other species, which were not addressed due to the high number of fruits per plant and resistance to pests and diseases, can play a complementary role in hybrid seed production breeding programs. Based on the results, genotypes 318 (Kapia, yellow and sweet), 287 (long, red and spicy), 348 (round, red and sweet), 272 (triangular, red and sweet), 309 (black, red and sweet) and 296 (long, red and sweet) could be introduced as cultivars after evaluating their compatibility, in terms of their high yield, suitable size fruits and marketability. In addition, because to the substantial variety of the examined population, breeding efforts might develop hybrid cultivars with unique traits.

    Keywords: Broadscence heritability, Fruit yield, Morphological diversity, Pepper germplasm
  • Gh. Kiani *, S. Golcheshmeh Pages 711-722
    Introduction
    Tomato is a self-pollinated crop and has a high potential for heterosis production. Tomato has a wide range of diversity in terms of vegetative and fruit traits. Therefore, learning information about the genetics of the tomato plant and the inheritance of its various traits to the next generation will help plant breeders to use appropriate breeding methods to improve them. One of the methods that is used to know the genetic structure of plants, identify parental lines and determine their combining ability is line × tester analysis. Line × tester analysis provides information about general and specific combining of parents and can be useful in estimating different types of gene effects such as additive and non-additive effects. In most of the developed countries, many researches have been done in relation to hybrid production and combining ability among tomato lines, and sometimes the inferred results are different from each other. In Iran, few studies have been done about crossing cultivars and their hybrids, and most of the seeds used by farmers are imported from other countries. Therefore, this study intends to evaluate genetic variance components, general and specific combining ability of some quantitative traits in a number of tomato lines and testers and their hybrids by using line × tester analysis.
     
    Materials and Methods
    This research was conducted in Sari Agricultural Sciences and Natural Resources University, Mazandaran Province, Iran in 2022. Two modified cultivars SC and V as lines and three modified cultivars L, R and MZ as testers were crossed with each other to create F1 hybrids. Six F1 genotypes and their parents (11 treatments in total) were cultivated in the farm in a randomized complete block design with three replications. The evaluated traits included the number of days to the first flowering, earliness, number of fruits per plant, fruit weight per plant (g), fruit yield (g), fruit length and width (cm). In order to analyze the variance of the experimental design to search for diversity between treatments, to separate the effects of treatments into their components based on line × tester analysis, to mean comparison with Duncan's test, and also to calculate the general and specific combining ability, R statistical software was used. Also, in order to calculate additive and non-additive variances, Singh and Chaudhary's method was used.
     
    Results and Discussion
    The results of line × tester variance analysis showed that the mean squares of parents and testers were significant for all traits except fruit length and width, and the mean squares of crosses and lines were significant for all traits except fruit length. The effect of line × tester was significant for all traits except the number of fruits per plant and fruit length. The line of SC to improve the number of days to first flowering, earliness, plant height, fruit weight per plant, and fruit width, and the line of V to improve the number of fruit per plant were the best general combiners with testers. The tester of L for improve all traits except yield, and the tester of MZ for improve plant height were the best general combiners with the maternal lines. Among the crosses, the SC×L cross for improve earliness and fruit width, and the SC×R and V×MZ crosses for improve plant height and fruit weight per plant, respectively, were favorable specific combiners. The mean comparison of the genotypes for some important traits showed that among the parental cultivars, the line of SC and among the crosses, the SC×L genotype had the lowest means for the number of days to first flowering and earliness. Also, the line of SC for the number of fruits per plant and the SC×L genotype for fruit weight per plant, yield and fruit width had the highest means. Also, the estimation of additive and non-additive variances indicated that in plant height and fruit weight per plant traits, additive variance plays the main role. While for the traits of the number of days to first flowering, earliness and yield, the contribution of non-additive variance was more than the additive variance.
     
    Conclusion
    According to the results obtained from this study, in future projects it is recommended to use parents that have significant general combining ability (GCA) for traits. Because such parents easily transfer the trait to their next generation. In this way, the line of SC was a good general combiner for the number of days to first flowering, earliness, plant height, fruit weight per plant and fruit width, and the line of V was a good general combiner for the number of fruits per plant. Among the testers, the tester of L was a good general combiner for improve the number of days to first flowering, earliness, number of fruits per plant, fruit weight per plant, and fruit width, and the tester of MZ recorded a high GCA for the plant height. Also, for the improvement of earliness and fruit width, the SC×L cross and for plant height and fruit weight per plant, SC×R and V×MZ crosses were favorable specific combiner. Mean comparison of genotypes showed that the SC×L cross is superior to its parents for the number of days to first flowering, earliness, fruit weight per plant, fruit yield, and fruit length and width. The traits of plant height and fruit weight per plant are more affected by additive variance, so the best breeding method to improve plant height and fruit weight per plant is selection from among the segregating population. The traits of number of days to first flowering, earliness and yield were affected by non-additive variance, so hybrid production is recommended to improve the mentioned traits.
    Keywords: Additive variance, Line, Non-additive variance, Tester, Tomato
  • S. Shiukhy Soqanloo *, M.A. Gholami, Y. Ghasemi Pages 723-739
    Introduction
    Confronting the crisis of water scarcity and the looming challenge of dwindling water resources is undeniably a grave concern. Consequently, the focus of agricultural science researchers has shifted towards the utilization of wastewater. One of the notable advantages of incorporating wastewater in agriculture is the potential to curtail the expenses associated with procuring irrigation water and employing chemical fertilizers.
     
    Materials and Methods
    Sari has a longitude and latitude of 53°01′ E and 36°33′ N, respectively, and its weather conditions are humid according to De-marten's climate classification. Its elevation is 21 above sea level and average annual temperature and precipitation, are17.9 ºC and 650 mm, respectively). In order to evaluate the effect of water stress and urban wastewater on the concentration of heavy metals, yield and some characteristics of basil, an experiment in a factorial format based on a completely randomized design with experimental treatments including; The first factor is the source of irrigation (I): [treated wastewater (TWW) and well water (WW)], and the second factor is water stress (S): [the lowest stress (S1, S2), medium stress (S3, S4) and severe stress (S5, S6)] were performed in three replications at the research farm of Sari University of Agricultural Sciences and Natural Resources (SANRU), Iran. Finally, the obtained data were analyzed using ANOVA of SAS9.2, and the SNK post hoc test was employed to compare treatment means.
     
    Results and Discussion
    Based on the findings, Irrigation with wastewater increased plant height, stem diameter, fresh and dry weight compared to irrigation with well water. So that the highest plant height, stem diameter, wet and dry weight were related to irrigation with wastewater with 44.3 cm, 3.1 mm, 8.5 and 3.3 g, respectively. Also, the effect of using treated wastewater on chlorophyll a, chlorophyll b, total chlorophyll and carotenoids was significant (P ≤ 0.01). while it did not have significant effect on flavonoid, phenol and antioxidant activity. In the lowest stress, especially the S1 level, the amount of chlorophyll a, chlorophyll b, total chlorophyll, carotenoid, flavonoid, phenol and antioxidant activity compared to the S6 level decreased by 63.3, 32.8, 40.7, 45.8, 46.3, 55.5, and 9.8%, respectively. while the highest amount of plant height, fresh weight, dry weight and stem diameter at the S1 level was observed with 48.6 cm, 11.5 g, 3.51 g and 3.4 mm, respectively. The result shown that the Pb and Cd concentration in basil under irrigation with wastewater was 3.4 and 2.5 mg.kg-1, respectively, which increased by 13 and 9% compared to well water. Water stress affected the Pb and Cd concentration, but the Cr and Ni concentration did not change significantly. The highest Pb and Cd concentration was related to high stress level S5 and medium stress level S4 and the lowest level was observed in the lowest stress levels (S1 and S2). Also, the results showed that the Pb and Cd concentration was affected by the interaction effect of irrigation source and water stress. Thus, the highest Pb concentration was observed in irrigation with wastewater and water stress levels S4 and S5 with 3.41 and 3.40 mg.kg-1, respectively, and the lowest was related to irrigation with well water and water stress level S1 with 2.2 mg.kg-1. The highest Cd concentration was related to irrigation with wastewater and stress levels S4 and S5 with 2.6 and 2.5 mg/kg, respectively, and the lowest amount were observed in well water irrigation and stress levels S1 and S2, with 1.51 and 1.50 mg.kg-1, respectively. while the Cr and Ni concentrations did not significant.
     
    Conclusion
    Based on the findings of this research, irrigation with treated wastewater and application of water stress had significant effect on the morphological and phytochemical characteristics of basil. while the use of treated wastewater was ineffective on the biochemical characteristics of basil and only water stress conditions affected their levels. The Pb and Cd concentration in basil increased under the influence of irrigation with wastewater and water stress levels. But this increase was lower than the standards authorized reported by the researchers and did not cause much concern. the results shown that the water stress levels S4 and S5 can be considered appropriate in water efficiency and recommend the use of treated wastewater in basil irrigation considering the authorized standards.
    Keywords: Antioxidant activity, Cadmium, Plant height, Sever stress, total chlorophyll
  • M. Jabbari *, R. Darvishzadeh Pages 741-753
    Introduction
    Pepper is a rich source of essential vitamins and minerals. Like tomatoes, pepper plays an important role in preventing heart diseases due to its high amount of antioxidants. Fruit yield is a complex trait that is not only controlled by several genes, but also greatly influenced by the environment. On the other hand, fruit yield is affected by a large number of other traits and their interaction. Therefore, it is very important for plant breeders to know the relationships between these traits and their interaction effects. The path coefficient analysis is a method that clarifies the relationships between traits and their direct and indirect effects on fruit yield. In this method, the correlation coefficient between two attributes is divided into components that measure direct and indirect effects. Considering the limited studies regarding the evaluation of relationships between fruit yield and other traits affecting fruit yield in pepper, this research was conducted with the aim of identifying these important relationships and evaluating their direct and indirect effects in Iranian pepper populations.
     
    Materials and Methods
    In order to carry out this research, the seeds of 30 Iranian pepper accessions were collected directly from the farmers. The experiment was conducted in the form of pot cultivation in the research greenhouse of the Faculty of Agriculture of Urmia University in a completely randomized design with five replications during 2015-2016. After the flowering stage, the desired traits were estimated. Variance analysis was estimated, after examining the basic hypotheses of variance analysis by SAS9.4, as well as the genotypic and phenotypic correlation between traits based on the restricted maximum likelihood (REML) procedure in the SAS9.4 software. Step-by-step regression analysis was used to determine the traits with the most variation justified the fruit yield. The Durbin-Watson test was performed to investigate the independence of experimental errors. Analysis of path coefficients was performed based on the results of stepwise regression and genotypic correlation of traits in the R V.4.0.5.
     
    Results and Discussion
    In order to understand the relationships between traits and use them in breeding programs, the phenotypic correlation was estimated.  In this study based on the results of phenotypic correlation, leaf width and leaf length (0.651), single fruit weight and fruit circumference (0.784), fruit circumference and fruit diameter (0.625) and pulp weight and fruit diameter (0.610), showed positive and significant correlation. The purpose of estimating genotypic correlation coefficient is to determine relationships in conditions which in environmental factors are not involved. In the investigation of genotypic correlation, a positive, strong and significant relationship between fruit yield and pulp weight (0.907), fruit circumference (0.891), fruit diameter (0.697), single fruit weight (0.646) and around the plant (0.381) were observed. Given that most of these traits are factors contributing to fruit yield, the presence of such positive and significant genotypic correlation coefficients is reasonable. It can be inferred that pepper accessions with higher fruit characteristics, encompassing factors such as plant density and branching, are likely to exhibit higher fruit yields as well. It's important to note that correlation coefficients are mathematical tools used to measure the linear relationship between two variables. Their significance lies in their mathematical interpretation, and as such, they alone do not provide sufficient proof of a cause-and-effect relationship. Utilizing the results of stepwise regression, less impactful traits or those with minimal effects were eliminated from the model. As a result, seven key traits were identified as the most influential factors affecting fruit yield: pulp weight, plant density, fruit diameter, fruit count, plant height, total seed weight, and branch count.The first characteristic was pulp weight, which was included in the model and explained 78.8% of the fruit yield changes between genotypes. The second characteristic (around the plant) along with pulp weight explained 80.9% of the fruit yield variations. Fruit diameter, together with the previous two characteristics, explained 81.5% of fruit yield variations. In total, the traits included in the model for fruit yield justified 84.6% of the total changes in fruit yield in 30 pepper accessions. In order to better understanding and more accurately interpret of the results, as well as to know the direct and indirect effects and the effect of the traits that were entered into the model through stepwise regression, the path coefficient analysis method was used in this research. Fruit diameter (0.709) and pulp weight (0.289) respectively showed the most positive and direct effect on fruit yield. Fruit pulp weight through fruit diameter had the most positive indirect effect (0.595) on fruit yield. Around the plant showed an indirect positive effect on fruit yield through pulp weight (0.157), fruit diameter (0.392) and number of branches (0.080).
     
    Conclusion
    In the present study, the trait of fruit diameter had a positive, strong and significant genotypic correlation (0.697) with fruit yield, and it also showed a positive direct effect (0.709) on fruit yield, these two coefficients can be considered equal, Approximately. Therefore, direct selection based on fruit diameter proves to be a valuable strategy for enhancing fruit yield. The magnitude of residual effects serves as an indicator of the model's accuracy in path analysis. When this value is substantial, it may be advisable to incorporate additional causal variables into the model. In the current study, the residual effects value (0.213) affirms the model's optimal accuracy.This research highlights the effectiveness of employing stepwise multivariate regression and path coefficient analysis to gain a deeper understanding of the fundamental relationships between traits. It underscores that relying solely on correlation relationships is insufficient for comprehensively justifying the associations between these traits.
    Keywords: Fruit yield, Path coefficient analysis, Pepper, Stepwise regression
  • E. Ganji Moghaddam *, A. Mostafapoor, M. Zamanipour Pages 755-768
    Introduction

    Iran is undoubtedly one of the most important and potential areas of fruit production in the world due to having diverse climatic zones and also the existence of different cultivars and rich germplasm for many horticultural products. Meanwhile, cherries are very important because of their good taste, high nutritional value and short ripening period. Despite the relatively high production, Iran ranks 46th among cherry exporting countries, which can be attributed to the non-uniformity of cultivars in orchards and mixed cultivation of several cultivars, lack of attention to the incompatibility of cherries and the lack of suitable pollinizer, the drought, the lack of availability of cultivars and rootstocks suitable for climate and soil changes, pest damage, etc. At present, in Khorasan-Razavi province, Takdane cherry trees have not yield well, which experts have sometimes attributed to self-incompatibility or lack of proper pollinizer. The gardener spends a lot of money to build a orchard that is not profitable; Therefore, instead of cutting down the trees, it is suggested to do grafting and in one turn, to replace the cultivars of your orchards with cultivars suitable for the region, which have good yield, quantitative and qualitative characteristics, and are self-fertile. Top-working is a new approach to increasing the productivity of old orchards, rejuvenating and changing their varieties. With this aim, a research was conducted in Razavi Khorasan province over three years.
     

    Matherial and Methods

     This project was carried out in three regions of Chenaran, Neishabur and Torghabeh Shandiz and included three independent experiments. After the growth of scion, the degree of adaptation and percentage of grafting success, vegetative growth of scion, beginning of fruiting, yield, and economic evaluation were investigated. In the first experiment, in order to determine the type of grafting and the cultivar on the success and percentage of grafting, a factorial experiment was used in the form of a randomized complete block design in three replications and each replication included 3 transplants. The first factor was grafting type in two levels (bark grafting and cleft grafing) and the second factor was cultivar in three levels (Stella, Sweetheart and Sunburst). In the second experiment, the evaluation of the effect of tree age and type of grafting on success percentage of grafting was carried out. In order to carry out this stage of the factorial experiment, two factors were used. The first factor was tree age at two levels (10 and 20 years) and the second factor was the type of graft (bark grafting and cleft grafing) used. In the third experiment, the effect of nurse branch and cultivar on the percentage of grafting success was investigated. This stage was a two factorial experiment where the first factor was the presence or absence of the nurse branch and the second factor was the cultivar in three levels (Stella, Sunburst, Sweetheart), used.
     

    Result and Discussion

     The results of first experiment showed that the Sunburst cultivar with the highest percentage (86.8%) and the Stella cultivar had the lowest percentage (64.3%) of grafting success. This result is consistent with the reports of Soleimani et al. (2008) who found that the success percentage of different cultivars were significantly different from each other. Also, cleft grafting had a higher percentage than bark grafting. Therefore, cleft grafting was more successful at 65% than bark grafting at 13%. These results are consistent with the findings of Mahmouzadeh (2012), who reported that the cleft graft had a higher percentage of success  other than bark grafting.
    The results of second experiment showed that as the age of the tree increased, the percentage of grafting decreased greatly. The grafting percentage was about 68% in young trees and 8% in trees over 25 years old. Based on this, it is not recommended to perform branch grafting in old trees. The results of third experiment showed that the maintenance of the nurse branch in the cherry tree does not have a significant effect on grafting. The grafting percentage was about 78% in trees without nurse branches and about 63% in trees with nurse branches. Based on this, it is not recommended to keep the nurse branch in the cherry branch.
    Analysis of variance of the simple and mutual effects of year and branching location on grafting percentage of cherry trees was significant at 1% level and it was found that the percentage of grafting was higher in the second year than the first year due to the skills of transplanters. Also, the percentage of graftng success in Torghabeh and Shandiz, was higher than Chenaran and Neishabur. These results are in agreement with the findings of Mng'omba et al. (2010) who reported that grafting success largely depends on the skill of the transplanters, is consistent.
     

    Conclusion

    In general, Top-working in sweet cherry trees is recommended in order to change the variety of the orchard and also, improve the productivity of the orchard.

    Keywords: Bark grafting, Cleft grafting, Compatibilty, Grafting success, Juveinility, Takdane cultivar
  • M.A. Ahmadi, S. Daghighi, F. Azarmi-Atajan *, H. Bayat Pages 769-786
    Introduction
    Jujube (Ziziphus jujuba Mill.) as one of the invaluable medicinal plants, is widely used in the pharmaceutical industry due to its vitamins, mucilage, antioxidants, alkaloids and phenolic compounds. South Khorasan province is the most important area of jujube fruit production in Iran. Optimum supply of nutrients in fruit trees can increase fruit quality. Calcium is one of the most important elements that can affect quantity, quality, storability and marketability of many horticultural crops. Due to the relatively high amount of lime in the agricultural soils of South Khorasan province, the amount of calcium in these soils is almost high. However, due to low mobility of calcium from soil to plant, calcium deficiency is common in horticultural plants. Also, potassium is required for cellular osmotic and ionic balances, electrochemical processes, neutralization of organic acids, regulation of stomatal function, cell division, enzyme activation, protein synthesis, as well as the synthesis and translocation of sugars. Foliar spraying is an effective way to supply nutrients needed by plants, especially in calcareous soils with high pH. In this method, nutrients are directly available to different parts of the plant in a short period of time. Studies have shown that leaf feeding with calcium and potassium can be useful for increasing the qualitative characteristics of fruit in most products, especially in arid and semi-arid regions. Nevertheless, little information is available regarding the foliar application of this element on jujube plant. Hence, the current research was aimed to investigate the effects of foliar application of calcium chloride and potassium sulfate on physicochemical properties and quality of fresh jujube fruit.
     
    Materials and Methods
    In order to investigate the effect of foliar application of calcium chloride and potassium sulfate on the physical and biochemical properties of the fruit of the jujube plant, two separate factorial experiment was conducted in the form of a randomized complete block design in three replications in two areas of Siojan and Mazhan, Khosef city in 2022. Experimental treatments included calcium chloride (0, 0.5 and 1%) and potassium sulfate (0, 0.1 and 0.3%). Fresh fruit was harvested at a crisp mature (white-red) stage mid in August. Data were analysed using SAS software (ver. 9.4) and comparison of means was made with LSD test at 1 and 5% probability.
     
    Results and Discussion
    The results of analysis of variance showed that calcium chloride foliar application in Siojan garden had significant effect on the physical and biochemical characteristics of jujube fruit. So that the highest fresh weight (4.07 gr), dry weight (1.89 gr), length (29.11 mm), diameter (21.52 mm) and texture firmness (18.81 N/cm2) of fruit were obtained from the level of 0.5% calcium chloride. Also, the foliar spraying treatment with 0.5% calcium chloride had the highest amount of carotenoid and total phenol in the fruit. The highest amount of calcium and potassium in the fruit was obtained from the level of 1% calcium chloride. The effect of foliar application of calcium chloride on physical and biochemical properties of jujube fruit in Mazhan garden was significant. In Mazhan garden, the highest fresh weight (3.9 gr), dry weight (1.37 gr), length (28.41 mm), diameter (20.91 mm) and texture firmness (18.61 N/cm2) of fruit were obtained from foliar application of 0.5% calcium chloride. The highest amount of carotenoids (0.443 mg/100 g of fresh weight) and phenol (9.53 mg of gallic acid per 100 g of fresh weight) in Mazhan garden was obtained from the level of 0.5% calcium chloride. The content of calcium and potassium of jujube fruit in Mazhan region was maximized with the application of 1% calcium chloride. The results showed that the application of potassium sulfate in Siojan garden had an significant effect on the physical and biochemical characteristics of the fruit. The highest fresh weight (3.63 gr) and dry fruit weight (1.89 gr), length and diameter and texture firmness  of fruit was obtained from the level of 0.3% potassium sulfate. Also, the highest amount of biochemical indices of jujube fruit in Siojan garden was obtained from the level of 0.3% potassium sulfate. The interaction effect of foliar application of calcium chloride and potassium sulfate on fresh and dry fruit weight, fruit length and carotenoids of fruit in Siojan garden was significant. In Mazhan garden, the fresh and dry weight of fruit, amount of carotenoids and total phenol of fruit were affected by the interaction effect of experimental treatments, and the highest level of these characteristics was obtained from the level of 0.5% calcium chloride and 0.3% potassium sulfate.
     
    Conclusion
    The results of foliar spraying of calcium chloride and potassium sulfate in both studied orchards showed that these treatments, both solely and in combination, had a positive and significant effect on various characteristics of jujube fruit. So the highest physical and biochemical characteristics of the fruit were obtained from the simultaneous application of 0.5% calcium chloride and 0.3% potassium sulfate. Therefore, Based on the results of this research, foliar spraying 0.5% calcium chloride and 0.3% potassium sulfate can have an effective role in increasing the quantity and quality of jujube fruit.
    Keywords: Foliar nutrition, Nutrients, Quality, yield
  • R. Shafiee, M.R. Abdollahi *, A. Mirzaei-Asl, S.S. Moosavi, H. Sarikhani Pages 787-799
    Introduction
    Given the economic importance of growing flowers and plants in the world, the use of new technologies and methods in the improvement of ornamental plants in order to market them can play a significant role in marketing of these products and their trade in the international markets. Marigold (Tagetes spp.), is an annual and essential plant that is cultivated as an ornamental plant in many parts of the world (Neher, 1968). But in recent years, marigolds have been used as a commercial source of essential oils, biological compounds, pigments and cosmetics (Anonymous, 1976), control of malaria mosquitoes (Wanzala and Ogoma, 2013), antihypertensive, anti-inflammatory, antidepressant, antimicrobial, antimicrobial (Senatore and Feo, 1999), and control of nematode (Prasad et al., 1992). Anther or microspore culture is known to be an effective method for producing haploid plants (Henry and De Baizer, 1980). Hybrid seed production requires pure line (as a parent), and the double haploid method can reduce the production period of pure lines to 5-6 years. Production of hybrid seeds in this valuable plant is of great importance, and the double haploid method can be important in this regard.
     
    Materials and Methods
    In the anther culture of marigold, a culture medium containing 0.2 mg/l of Naphthalene acetic acid and 1 mg /l of 6-Benzylaminopurine was used. In this study, the effect of genotype, bud size and mannitol on androgenesis induction of marigold anthers was evaluated during two separate experiments. A factorial experiment was conducted in a completely randomized design with two factors including genotype at 5 levels (T1, T2, T3, T4, T5) and bud size at three levels (3-5, 5-10 and 10-15 mm) for first experiment. The second experiment was also performed as a factorial in a completely randomized design with 3 replications. In the recent experiment, the first factor included the method of mannitol application and the second factor included the different concentrations of mannitol (0.1, 0.2, 0.3, 0.4 and 0.5 M). The factor of application method was in 2 levels: 1: adding different concentrations of mannitol to the solid culture medium and 2: pre-treating the anthers with the liquid culture medium containing different concentrations of mannitol for 24 hours. The T4 genotype was used in the second experiment.
     
    Results
    In the first experiment, the effect of different bud sizes and 5 different genotypes on callus formation, mean number of shoot per anther, mean number of shoot per callus and percentage of complete plant regeneration in anther culture of marigold were studied. The results of this experiment showed that buds with the length of 5-10 mm have anthers which their microspores are at the proper growth and development stage for callogenesis and shoot production. The T3 and T4 genotypes, (both of them belonging to French species, Tagetes patula), produced the highest percentage of plant regeneration among the various cultivars. In the second experiment, we explored the impact of mannitol treatment on androgenic traits in marigold anther culture. Specifically, we examined two concentrations: 0.1 M and 0.2 M mannitol, both applied in the form of solid culture medium. Additionally, we investigated two concentrations, 0.0 M and 0.2 M mannitol, when applied as a pre-treatment in a liquid medium containing mannitol. These treatments yielded the highest percentage of callus formation. While the pre-treatment of anthers with a liquid culture medium containing 0.5 M mannitol led to the highest mean number of shoot per anther and the mean number of shoots per callus. Also, the pre-treatment with liquid medium containing 0.2 M mannitol showed the highest percentage of complete plant regeneration.
     
    Conclusion
    Results showed that in marigold, buds with the size of 5-10 mm contained microspores with mid-uninucleate stage to early bi-nucleate stage showed the highest response to the induction of androgenesis. Also, T3 and T4 genotypes belong to the French species showed the highest response to the regeneration. In another experiment, the pre-treatment of anthers with 0.2 and 0.5 M mannitol by using mannitol in a liquid culture medium for 24 hours, respectively showed the highest percentage of complete plant regeneration and the highest mean number of shoot per callus and anther. Chromosome counting results showed that 3 out of 5 examined plants were dihaploid and had 24 chromosomes in their root tip cells, while examined mother plants were tetraploid and showed 48 chromosomes in their root tip cells.
    Keywords: Androgenesis, Anther culture, Haploid, Mannitol, Marigold
  • M. Rahemi *, M.H. Nazaran, S. Abolghasemi, S. Sedaghat, M. Zare Pages 801-819
    Introduction
    Low temperature storage is the most important method used to preserve harvested products. Keeping products at low temperatures, above the freezing point up to 10 degrees Celsius, can cause frost damage in fruits and vegetables, especially tropical and subtropical products. The use of heat treatments as safe, organic and alternative physical methods is increasing, these treatments are used to maintain the quality after harvesting and also to prevent frostbite of garden products. Also, one of the recommended methods to reduce fruit waste is to increase the calcium concentration of the fruit by using calcium solutions. Calcium is one of the most important mineral elements that is involved in determining the quality of the fruit and its shelf life. Studies conducted on the use of nano fertilizers in some species of fruit trees has shown their potential role in improving the yield of the product and the physical and chemical properties of the fruitThis study was conducted to investigate the effect of postharvest treatments of calcium chloride and nano chelated calcium fertilizers on chilling injury and physiological characteristics of local orange fruits stored at 2 ±0.5° C and 85% relative humidity for 60 to 120 days.
     
    Materials and Methods
    In this research, orange fruits of the local cultivar Citrus sinensis at the stage of commercial maturity based on the taste index (10TSS/TA⋍) were prepared from Darab city of Fars province and transferred to the Physiology Laboratory of Horticultural Sciences Department of Shiraz University. Then the fruits were disinfected with 2% sodium hypochlorite and washed with distilled water. Treatments included calcium chloride and nano chelated calcium fertilizers at different concentrations of zero, 3 and 6 dissolved in cold water (20°C) and hot water at 45 °C for 25 and 15 min, respectively. Sampling was done on days 60 and 120. To simulate shelf life conditions, before measuring the parameters, the fruits were kept at laboratory temperature for two days. In this research, the changes in fruit tissue firmness, freezing index, weight loss percentage, soluble solids, total acidity, ascorbic acid, ion leakage, potassium ion leakage, malondialdehyde, calcium content of fruit skin and flesh, fruit color, catalase enzymes and peroxidase were measured. Data analysis was done using SAS software version 4.9 and comparison of averages was done by LSD test at 5% probability level.
     
    Results and Discussion
    There was a significant difference between nano chelated calcium and calcium chloride in calcium enrichment in pulp and fruit skin Calcium chloride and nano chelated calcium treatments dissolved in hot water reduced weight loss, soluble solids content, acidity, ascorbic acid, ion leakage and malondialdehyde and the activity of the antioxidant enzymes catalase and peroxidase. Nano chelated calcium increased calcium content by 44% in fruit skin and up to 41% in fruit pulp compared to calcium chloride. Nano chelated calcium 3 and 6 % showed more stability in fruit weight (159 and 400%, respectively) compared to calcium chloride after two months of storage. After 60 and 120 days of storage, the content of ascorbic acid in fruits treated with 6 nano chelated calcium was 73% higher than calcium chloride. Nano chelated calcium 3 % compared to calcium chloride prevented 39.6 of potassium ion leakage during 60 days of storage. The amount of ascorbic acid in the 3% and 6% nano calcium treatment and the tissue hardness in the 3% nano calcium chelate treatment after two months of storage were estimated to be higher than the control and calcium chloride. Calcium nano chelate 6% improved the calcium content of fruit flesh and skin due to increased permeability. Warm water pretreatment with calcium compounds is an efficient and recommendable treatment for the preservation of orange fruits in cold storage conditions due to the improvement and reduction of the severity of the increase in indicators related to the occurrence of frost damage in the skin of fruits.
     
    Conclusion
    One of the primary concerns during storage is the loss of fruit weight. Calcium nano chelate, in comparison to the control and calcium chloride treatments, exhibited the least weight loss over the two months of storage. This is attributed to the critical role of calcium in influencing the shelf life of fruits. It was observed that immersing fruits in calcium compounds dissolved in hot water and utilizing 6% nano chelated calcium had a significant positive impact on enhancing and preserving the quality of orange fruits during cold storage.
    Keywords: Antioxidant enzymes, Chilling indices, Electrolyte leakage, Weight loss
  • M. Moradi, B. Abedi *, H. Arouiee, S. Aliniaeifard, K. Ghasemi Bezdi Pages 821-841
    Background and objectives
     Light is the main environmental factor for plant growth and development. Different attributes of light such as intensity, quality and duration affect plant growth and productivity. Light spectrum of growing environment is a determinant factor for plant growth and photosynthesis. The photosynthetic reactions are directly affected by various light parameters including its spectrum and intensity. Photosystem I and II (PSI and PSII) in the electron transport chain of photosynthetic apparatus are involved in converting solar energy to chemical compounds in plants. It has been found that the PSII is sensitive to light quality. Using The OJIP test, we can investigate the efficiency of various biological phases of the electron transport system. Light sources such as metal-halide, fluorescent, high-pressure sodium, neon lamps and light-emitting diode (LED) can be used for production of plants in closed environments instead of sunlight. Manipulation of the light spectrum of the lamps could trigger potential benefits by enhancing plant growth. Nowadays, by using the LED technology, it is possible to study the physiological effect of different light spectra for optimization of growth conditions and for increase the production of plants in controlled environments. This research was conducted to investigate photosynthetic apparatus, growth parameters, stomatal characteristics, transpiration rate and essential oil content of Salvia officinalis under different light spectra.
     
    Materials and Methods
     In this study, the effects of different light spectra were implemented and performed as a pot experiment using soilless media in the plant growth chamber based on a completely randomized design with 6 lighting spectra including White, Blue, Red and three combinations of R and B lights (R30:B70, R50:B50 and R70:B30) with three replications. The light intensity in all growth chambers was adjusted to photosynthetic photon flux density (PPFD) of 250 ±10 μmol m-2s-1 and light spectrum were monitored using a sekonic light meter (Sekonic C-7000, Japan). Growth condition was set at 14/10 h day/night cycles, 25/22oC day/night temperatures and 40% relative humidity. Three month following plant growth under different light spectra, the plants were evaluated for their growth parameters, stomatal characteristics (stomatal length, stomatal width, pore length or aperture) transpiration rate (E), relative water content (RWC), photosynthetic apparatus (evaluation of OJIP) and essential oil content. Data analysis of variance (ANOVA) was performed using IBM SAS software (Version 9.1) and the differences between means were assessed using Duncan’s multiple range tests at p≤ 0.05.
     
    Results
     The results showed that the stomata characteristics, photosynthetic performance, growth characteristics and essential oil content of Salvia officinalis were affected by different light spectra. Increasing the ratio of red light especially combined Red and Blue lights (R70:B30) led to the improvement of growth characteristics. Transient induction of chlorophyll fluorescence showed that the highest fluorescence intensities at all OJIP steps were detected in Red light. The lowest Fv/F0 and Fv/Fm were obtained in plants grown under Red light. Occurrence of leaf epinasty and decrease in Fv/Fm indicative of phenomenon of red light syndrome in the plants under Red treatment. Red light caused a reduction in performance index per absorbed light efficiency of (PIABS) and increase in quantum energy dissipation (ΦD0), light absorption (ABS/RC) and electron trapping (TR0/RC) per reaction center. The highest Fv/F0, Fv/Fm and PIABS were obtained under combination of Red and Rlue light. The highest ΦE0 was also detected in combination of Red and Blue light. The narrow and large stomatal apertures were detected under Red and Blue light, respectively. The highest transpiration rate was achieved in plants grown under Blue light LED. Increasing the ratio of Red light resulted in reduction in transpiration rate and improvement of leaf capacity to control water loss via reducing the opening of stomata. The highest amount of essential oil (1/75% v/w) was achieved in plants exposed to combination of Red:Blue light spectra (R70:B30).
    Conclusion
     light spectrum during plant growth can change plant metabolism, LED can be used in favor of producing good-quality food in controlled environment agriculture due to their ease of application, waveband manipulation and limited heat production. Our result showed that photosynthetic apparatus, growth parameters, stomatal characteristics, transpiration rate, relative water content and essential oil content of plants were considerably influenced by light spectra. Using OJIP test confirmed that plants grown under monochromatic Red and Blue lights were less efficient to successfully transfer the excitons and most of the absorbed energy by the photosystems was dissipated as heat. In conclusion, combined Red and Blue lights (especially R70:B30) caused favorable growth, photosynthetic functionality and maximum essential oil content of Salvia officinalis. Therefore, combination of R and B lights (R70:B30) should be considered for production of Salvia officinalis under artificial light systems during commercial controlled environment production of plants.
    Keywords: Essential oil, growth, light quality, OJIP, Photosynthesis, Sage plant
  • A. Moshtzan, A. Yavari *, M. Soleimanizadeh Pages 843-856
    Introduction
    The diverse and magnificent plant kingdom of the world is widely known for its medicinal importance. Natural substances obtained from medicinal plants and their plant extracts are used for the treatment of a lot of diseases in human pathology as well as plant pathology. Therefore, it is important to understand the relationship between medicinal plant species and their environment in terms of producing optimal secondary metabolites. Salvia officinalis L., which belongs to Lamiaceae family, as the main herb in the world is cultivated in many countries. Essential oil from S. officinalis aerial parts is used as raw material in pharmaceutical and cosmetics industries. It has been known that different harvest times have a great effect on both quality and quantity of essential metabolites. Furthermore, the drying process, which is one of the post-harvest processes, is very expensive, but if it is done correctly, it significantly increases the efficiency and components of the essential oil after harvesting. In large-scale agriculture, S. officinalis raw materials needs a lot of space and high cost for drying process due to the large volume of material at harvest time. In this case, if it is possible to directly extract the essential oil with the desired quantity and quality from the fresh plant, the production cost will be significantly reduced from the economic point of view. For these reasons, it is necessary to determine optimum harvesting time(s) and plant material kinds affecting essential oil quantity and quality. The purpose of this study was to evaluate the yield and quality of valuable medicinal plant essential oil of S. officinalis in different harvesting times of fresh and dried plants throughout the year in Fars province to determine the yield and quality of essential oil.
     
    Materials and Methods
    For these purposes, aerial parts of S. officinalis in full flowering stage were collected from selected plants from a 3-year farm located in Saadatshahr city of Fars province. A factorial experiment based on a completely randomized blocks design with three replications and two factors include three different harvesting times (5th of May, 26th of July and 5th of November, 2020) and two types of plant materials (fresh and dry) was performed in the farm. The essential oils of different S. officinalis samples were extracted by hydro-distillation using Clevenger apparatus and with three replications. The yields were calculated based on dry weight and the oils were analyzed by a combination of GC-FID and GC-MS techniques, to check for chemical variability based on British Pharmacopoeia. At the end of the experiment, data analysis was performed using SAS software (version: 9.4). The means were compared by Duncan's multi-range test at a statistical level of 1%.
     
    Results and Discussion
    The results of the current study revealed that the essential oil content of S. officinalis aerial parts harvested at different times and plant materials ranged from 0.19% to 1.18% (w/w). It was found that the interaction effects of harvesting times and plant materials on the essential oil yield was significant at the 1% probability level, and the comparison of the average interaction effects of harvesting times and plant materials showed that the highest essential oil yield of S. officinalis was related to the second harvesting time (26th of July, 2020) and the dry plant material (1.18 % w/w). Meanwhile, the lowest yield of essential oil (0.19% w/w) was obtained in the first harvesting time (5th of May, 2020) and in fresh plant material. 34 different constituents have been identified in which 22 compounds were common. Monoterpene hydrocarbons were the main group of compounds in all studied plant samples. The key compounds of essential oil were 1,8-cineol, α-thujone, β-pinene and camphor. The comparison of the average interaction effects of harvesting times and plant materials on the main compounds of the essential oil demonstrated that the interaction effects on α-thujone and camphor constituents were significant at the 1% probability level and for β-pinene were were significant at the 5% probability level. The results of this research showed that the yield of essential oil in dry plant materials was higher than in fresh plant materials and different harvesting times had a significant effect on the quantitative and qualitative performance of essential oil.
     
    Conclusion
    Eventually, the results obtained from this study showed that the quantity and quality of essential oil in S. officinalis were influenced by the different harvesting times and plant materials. In order to achieve the maximum quantity and quality of essential oil in this species, the best type of plant materials was dry plant material and the best harvesting times was the summer harvesting in the full flowering stage. Due to the fact that the performance of essential oil at different harvesting times fluctuates in terms of quantity and quality during the growing season, it is necessary to have the essential oil certificated from each harvest in order to successfully enter the market.
    Keywords: Drying, Essential oil, Monoterpene hydrocarbons, yield
  • H. Soleymani, M. Aelaei *, M. Arghavani Pages 857-871
    Introduction
     Rose is one of the important cut flowers, which has different types. Extending the vase life of rose-cut flowers is very important in the floriculture industry. Every year, due to the lack of proper storage conditions after harvesting, the efficiency of rose production decreases. Therefore, always using materials that help increase the shelf life of cut flowers is valuable. Today, substances that improve the quality of cut flowers are very important. They include materials such as calcium and silver. Nanoparticles are materials with sizes smaller than 100 nanometers. On the other hand, the important role of calcium and silver in improving quality of the cut flowers is interesting for scientists. In this research, the effect of pre-harvest application of calcium nanoparticles along with the post-harvest application of silver nanoparticles on the morpho-physiological characteristics of rose cut flowers (CV: Classic Cezanne) was investigated.
     
    Material and Methods
     The current research was carried out during the year 2021 in a commercial rose production greenhouse in Nazarabad city. calcium nanoparticles with different concentrations (0, 5 and 10 mg.L-1) were sprayed on rose bushes every ten days (two months before harvest). After harvesting the flowers and transferring them to the laboratory, silver nanoparticles were added to the flower preservation solution at different concentrations (0, 5 and 10 mg.L-1). After harvesting, the traits (vase life, flower diameter, fresh weight, vase solution uptake, total protein, malondialdehyde and superoxide dismutase) were evaluated on the treated flowers (on days 0, 4, 8 and 12). Experiment was performed as factorial based on completely randomized design, included 9 treatments with 3 replications.
     
    Results and Discussion
     Based on the results of analysis of variance of treatment with calcium nanoparticles and silver nanoparticles for the quality of shelf life at the 1% level of Duncan's test, it showed a significant difference. Also, based on the results, the highest amount of vase life is related to the treatment of calcium nanoparticles with a concentration of 10 mg.L-1 with the silver nanoparticle treatment in the time after harvesting was at concentrations of 5 and 10 mg (11 days) and the lowest amount was related to the control treatment (7 days).Vase life increased under the effect of treatment with calcium nanoparticles and silver nanoparticles (10 mg.L-1) and caused an increase of 4 days compared to the control (0 mg.L-1) The treatments decreased the amount of malondialdehyde and also increased the relative amount of absorbed solution, total protein and superoxide dismutase enzyme. Based on the results of this study, calcium and silver nanoparticles improved qualitative traits. The simultaneous treatment of calcium and silver nanoparticles (concentration 10 mg.L-1) compared to the control (0 mg.L-1) caused an increase (14%) in flower diameter, fresh weight (12%), vase solution uptake (46%), superoxide dismutase (21%) and malondialdehyde reduction (37%). Two other important findings emerged from this work: (1) The nanoparticles used in this experiment caused the activation of the enzyme antioxidant system in the treatments (2) The simultaneous treatment of nanoparticles calcium before harvesting and silver nanoparticles treatment after harvesting by activating the antioxidant enzyme system and maintaining the ability to absorb the solution increased the vase life of rose cut flowers. In general, the treatment with calcium nanoparticles at a concentration of 10 mg. L-1 before harvesting and the treatment with silver nanoparticles at a concentration of 10 mg.L-1 after harvesting were the most effective treatments in most traits.
     
    Conclusion
     Calcium is one of the most effective factors in increasing the vase life of rose cut flowers. Treatments containing calcium increase absorption of vase solution uptake. The treatment of calcium nanoparticles increases the total protein and superoxide enzyme compared to the control, so that the simultaneous use of silver and calcium nanoparticles increases the vase life of rose-cut flowers compared to the control. Calcium probably activated a chain of reactions by activating the message transmission system and caused the expression of genes involved in the antioxidant system of the samples. silver nanoparticles by affecting the absorption of vase solution uptake and reducing the amount of malondialdehyde and increasing the total protein and superoxide dismutase enzyme compared to the control, increase the vase life of cut flowers. According to the results obtained from the present research, it can be concluded that use of calcium nanoparticles with silver nanoparticles had great effects on most of traits in compared to control treatment. The use of calcium nanoparticles with silver nanoparticles improves the vase life conditions by increasing water uptake and consequently increasing the relative fresh weight.
    Keywords: Antioxidant enzymes, Postharvest, Vase life
  • A. Najarzadeh, H. Farahbakhsh *, M. Naser Alavi, R Moradi, M. Naghizadeh Pages 873-886
    Introduction
    Borage (Borago officinalis L.) is a valuable annual medicinal herb suitable for cultivation in many countries, including Iran. Borage is considered as a native of both Europe and Asia. Several species around the world fall under the denomination of “borage”. The presence of the γ-linolenic acid in the seeds of borage makes borage distinctively important mainly for the nutraceutical and pharmaceutical research. γ-Linolenic acid is an omega -6 polyunsaturated fatty acid which cannot be synthesized in the body and hence falls into the category of essential fatty acids (Evesh et al., 2019).
     Chemical fertilizer is an indispensable abiotic factor in agricultural production, especially nitrogen fertilizer. However, in order to improve the yield, people fertilize a lot, which not only wastes resources, but also brings a series of serious problems to the environment, such as greenhouse gas emissions, soil fertility degradation and water resources pollution. Therefore, developing new fertilizers, improving crop nutrient utilization efficiency, replacing chemical fertilizers and reducing environmental pollution is an important direction of agricultural sustainable developme (Zhang et al ., 2020).
    Biochar is a carbon rich product formed by pyrolysis of agricultural and forestry wastes under limited air availability. It is generally alkaline in nature, with the characteristics of rich carbon content, large specific surface area and strong adsorption. Biochar addition can reduce soil bulk density and increase porosity, pH, water holding capacity and nutrient content. Additionally, the unique physical properties of biochar can also promote the colonization and growth of some specific microorganisms, which may participate in the mineralization of biochar and promote nutrient cycling. Therefore, biochar has been widely used on improving soil quality and increasing crop productivity. Biochar has a positive effect on root structure and nutrient absorption of plant. Several studies have shown biochar can significantly increase the root length, root biomass, root surface area and specific root length. The study also found that biochar significantly increased the number of plant root tips, the most active part of root, and then increased the ability of plants to absorb nutrients from soil (Zhang et al, 2020).
     
    Materials and Methods
    In order to evaluate the effect of damask rose waste (DRW), walnut green skin waste (WGW) and cow manure biochars on biochemical, physiological and yield characteristics of European borage, an experiment was carried out based on a completely randomized design at the greenhouse conditions in Faculty of Agriculture, Shahid Bahonar University of Kerman. The experimental treatments contain: without of biochar (control), biochars of cow manure (0.75%, 1.25%, 2.5% and 5% w/w), walnut green skin biochar (WGW) (0.75%, 1.25%, 2.5% and 5% w/w) and damask rose waste biochar (DRW) (0.75, 1.25, 2.5 and 5% w/w). The physicochemical properties of the biochars and soil were analyzed. Five seeds were planted in three-kilogram pots at a depth of 1.5 to 2 cm. The greenhouse was maintained at an average temperature of 25 °C during the day and 20 °C at night, with a relative humidity level of 60%. Upon concluding the experiment, various biochemical, physiological, and functional characteristics of European borage were assessed and measured.
     
    Results and Discussion
    The results showed that DRW (60%) and WGW (13%) biochars had the highest and lowest amount of stable organic carbon, respectively. The investigated treatments significantly (p≤ 0.01) affected the biochemical, physiological and performance traits of European borage. Application of DRW and manure biochars caused a significant (p ≤ 0.01) increase in yield and photosynthetic pigments of European borage compared to the control. Applying WGW biochar at the level of 2.5% increased the shoot dry weight of the plant by 119% compared to the control treatment. Application of 1.25% of cow manure biochar also increased the shoot dry weight by 29.7%. WGW biochar applying not only had no positive effect on the growth and yield of the European borage, but also lead the decreasing growth and prevent flower production of borage. The highest CAT activity related to applying 2.5% of DRW biochar and 1.25% of manure biochar. Application of WGW in concentration of 0.75% significantly increased the proline contents. Using biochar improves soil fertility.
     
    Conclusion
    In general, applying DRW biochar in concentration of 2.5% and cow manure biochar in concentration of 1.25% were the most suitable treatments.
    Keywords: Catalase, Electrical conductivity, Medicinal plant, Proline, Pyrolysis