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جستجوی مقالات مرتبط با کلیدواژه « salvia limbata » در نشریات گروه « باغبانی »

تکرار جستجوی کلیدواژه «salvia limbata» در نشریات گروه «کشاورزی»
  • Fatemeh Nejadhabibvash *, Esmaeil Rezaei Chiyaneh, Alireza Pirzad
    This study was conducted to investigate the effect of altitudinal gradients on the anatomy of Salvia limbata C.A.Mey. (Lamiaceae). . The S. limbata species were collected from their natural habitats from various regions of West Azerbaijan province in Iran. The thickness of cuticle, collenchymas, phloem, xylem and pith of stem and leaf thickness were measured. Moreover, width, length and number of stomata on both adaxial and abaxal epidermal surfaces were analyzed. Statistical analyses were done on a completely randomized design. The results indicated that by increasing altitude leaf thickness increased from 239.1 to 300.1 µm. Number of leaf epidermal cells was also increased in higher altitude on both upper (4.30 to 5.61) and lower (1.05 to 6.55) epidermal surfaces. The results confirmed that more stomata on both adaxial and abaxial epidermis in high altitude samples were associated with presence of narrower and longer stomata on their leaves. Significant differences in the cuticle, collenchyma, xylem, phloem and parenchymatous pith thickness in the stem were observed in all the six studied populations. At higher altitudes thicker cuticle, increased number of collenchyma and wider xylem, phloem and parenchymatous pith were detected. Plants in Mahlamlu region had the thickest studied parameters and Plants in Kabudan Island region had the thinnest tissues.
    Keywords: Anatomy, altitude, Lamiaceae, Salvia limbata}
  • صدرالله رمضانی، علیرضا عباسی، عبدالعلی شجاعیان، نورالله احمدی، رزاریا کوزولینو، سونیا پیاچنته
    تعداد 58 گونه از جنس مریم گلی به صورت گیاه علفی یکساله و چندساله در نقاط مختلف ایران وجود دارد که 17 گونه آن انحصاری ایران و دارای خواص دارویی متعدد مانند آنتی بیوتیک، آرام بخش، ضد نفخ، ضد اسپاسم است و به طور معمول در درمان بیماری های تنفسی مانند عفونت، سرفه، سرماخوردگی و گلو درد و صنایع آرایشی-بهداشتی کاربرد دارد. بخش های هوایی دو گونه مریم گلی لبه دار ( Salvia limbata) و ارغوانی (Salvia multicaulis) کشت شده در مرحله گلدهی در خرداد 1391 برداشت شدند. ترکیبات فرار این گیاهان با روش میکرواستخراج با فاز جامد برای اولین مرتبه در ایران استخراج شد و ترکیبات اسانس های استخراج شده آن توسط دستگاه های کروماتوگرافی گازی و کروماتوگرافی گازی متصل به طیف سنج جرمی تعیین شدند. تعداد 66 ترکیب فرار در گیاه مریم گلی لبه دار شناسایی شد. سابینن (16/19 درصد)، بتا-پینن (19 درصد)، آلفا-پینن (30/16درصد)، آلفا-ترپینولن (41/14 درصد)، 1،8-سینئول (86/10 درصد) و لیمونن (73/3 درصد) بالاترین مقدار ترکیبات فرار این گیاه را تشکیل دادند. 58 ترکیب فرار در گیاه مریم گلی ارغوانی شناسایی شد. بیشترین میزان ترکیبات فرار گیاه مریم گلی ارغوانی به ترتیب کامفن (85/28 درصد)، آلفا-پینن (33/12 درصد)، کامفور (73/10 درصد)، لیمونن (01/9 درصد)، 1،8-سینئول (47/5 درصد)، بتا-پینن (58/4 درصد) و بورنیل استات (75/3 درصد) بود. بخش اصلی ترکیبات فرار گیاهان مریم گلی لبه دار و ارغوانی از نوع مونوترپن ها (به ترتیب 57/91 و 28/84 درصد) و سزکوئی ترپن ها (به ترتیب 12/5 و 58/7 درصد) بودند. با توجه به نتایج بدست آمده در روش میکرواستخراج با فاز جامد که به ترکیبات در گیاه نزدیک تر است، استفاده از این روش توصیه می شود.
    کلید واژگان: سزکوئی ترپن ها, متابولیت های ثانویه, مریم گلی ارغوانی, مریم گلی لبه دار, مونوترپن ها}
    S. Ramezani, A. Abbasi, A. Shojaeiyan, N. Ahmadi, R. Cozzolino, S. Piacente
    Introduction
    There are 58 species belonging to sage genus as annual and perennial plant in different regions of Iran that 18 species of them are endemic to Iran and they have different medicinal properties such as antibiotic, sedative, carminative, antispasmodic and commonly used in treatment of respiratory problems: infections, cough, cold and sore throat and cosmetics industries. The present study has aimed to evaluate the composition of essential oils achieved by Solid Phase Micro-Extraction method from aerial parts of two Salvia species native to Iran: Salvia limbata and Salvia multicaulis.
    Materials And Methods
    The experiments were carried out at the Research Station of Agriculture College, TarbiatModares University in Tehran, Iran during the years 2011-2013. The seeds of Salvialimbata and Salvia multicauliswere collected in Ardabil and Isfahan provinces in 2009. The seeds were sown in planting trays(filled with soil and cocopeat 1:1) under controlled greenhouse condition (temperature: 26±1°C, light: 3000 lux, relative humidity: 65%) in the last week of February 2011. The soil of experimental pots (soil and coco peat 2:1) was a clay silt loam with pH of 7.4. After two months,seedlings with uniform height and stem diameter with two true leaves were transferred to a growth chamber adjusted to 30/20 °C, 50% relative humidity, light intensity of approximately 3000 Lux and 16 h photoperiod.Aerial parts of two cultivated plantsincludingSalvia limbata and Salvia multicaulisat flowering stage were harvested in June 2012 and kept at 80°C until further experiments. Volatile compounds were extracted by solid phase micro-extraction (SPME) method for the first time in Iran for these species. Before the SPME, the leaves lyophilized and then were used. The optimization of SPME extraction and desorption conditions were performed by analyzing dried leaves of Salvia officinalis L., used as the matrix. The sample preparation procedure was as: 15 mg of dried sage leaves mixed into a 20 ml screw-on cap HS vial to 5 ml of 5% Ethanol and 0.5 mg of Na2SO4. The vials were sealed after stirringwith a Teflon (PTFE) septum and an aluminum cap (Chromacol, Hertfordshire, UK) for the production of headspace and the successive analysis. The sample vial was put in the instrument dry block-heater and held at 40°C for 20 min to come into equilibrium. The extraction and injection processes were automatically performed using an auto sampler MPS 2 (Gerstel, Mülheim, Germany). The fiber was, then, automatically inserted into the vial’s septum for 10 min, to allow the volatile compounds absorption onto the SPME fiber surface. Each SPME fiber was conditioned before its first use, as recommended by the manufacturer. In order to desorb the volatile metabolites, the SPME fiber was introduced into the injector port of the gas chromatograph device, model GC 7890A, Agilent (Agilent Technologies, Santa Clara, USA) coupled with a mass spectrometer 5975 C (Agilent) wherein the metabolites were thermally desorbed and transferred directly to a capillary column HP-Innowax (30m×0.25 mm×0.5µm Agilent J&W) and analyzed. The identification of VOMs was accomplished by comparing the retention times of the chromatographic peaks with those, when available, of authentic standards run under the same conditions. For volatiles for which reference substances were not available, the identification was performed by matching their retention indices (RI) determined relative to the retention time of a series of n-alkanes (C8–C20) with linear interpolation, with those of authentic compounds or literature data (Van Den Dool&Kratz, 1963). Confirmation of metabolites identification was also conducted by searching mass spectra in the available database (NIST, version 2005; Wiley, version 2007).
    Results And Discussion
    66 volatile components were identified in Salvia limbata, which Sabinene (19.16%), β-Pinene (19%), α-Pinene (16.3%), α-Terpinolene (14.41%), 1,8-Cineole (10.86%) and Limonene (3.73%) were highest amounts. 58 volatile compounds were identified inSalvia multicaulis thatCamphene (28.85%), α-Pinene (12.33%), Camphor (10.73%), Limonene (9.01%), 1,8-Cineole (5.47%), β-Pinene (4.58%) and Bornyl Acetate (3.75%) had the maximum amounts, respectively. The main part of volatile constituents of Salvia limbata and Salvia multicaulisplantsbelonged to monoterpenes (91.57 and 84.28% respectively) and sesquiterpenes (5.12 % and 7.58 %, respectively).
    Conclusion
    The results obtained in Salvia limbataand Salvia multicaulisin respect to main components are similar to previous papers (3, 16). However, there is some compound such as α-Terpineol in Salvia limbatawhich has not been reported. According to the obtained results by solid phase micro-extraction is closer to plant compounds.
    Keywords: Monoterpenes, Salvia limbata, Salvia multicaulis, Secondary metabolites, sesquiterpenes}
نکته
  • نتایج بر اساس تاریخ انتشار مرتب شده‌اند.
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