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جستجوی مقالات مرتبط با کلیدواژه « molecular variance » در نشریات گروه « گیاهپزشکی »

تکرار جستجوی کلیدواژه «molecular variance» در نشریات گروه «کشاورزی»
  • M Sheikh Kalukhi, D Ramezan, A Rahimian Boogar, M Pirnia *, M Aran

    Due to the variety of vegetation and high humidity, the Northern provinces of Iran are the habitat of many medicinal mushrooms. Genetic variation of medicinal mushrooms in Iran is poorly studied. 30 isolates of Trametes versicolor were collected from different localities in Guilan, Golestan, and Mazandaran provinces (North of Iran). The genetic diversity was evaluated by ISSR marker. 86 bands were observed using eight polymorphic primers. Cluster analysis showed that the isolates divided into 18 groups at a level of 0.22 similarity coefficient. SI indices were 0.335, 0.305 and 0.217 in Guilan, Golestan, and Mazandaran populations respectively. 96% genetic variation was observed within populations. The diverse geographic origin of the isolates is an influential factor in the high intra-population genetic diversity of the fungus.

    Keywords: DNA fingerprinting, Genetics, medicinal mushrooms, Molecular variance}
  • خشنود نوراللهی، محسن حسنی
    بیماری لکه موجی با عامل Alternaria alternata یکی از بیماری های مهم گوجه فرنگی در استان خوزستان می باشد. به منظور ارزیابی تنوع ژنتیکی جدایه های A. alternata نمونه برداری از مزارع گوجه فرنگی در مناطق مختلف انجام گرفت. تعداد 64 جدایه جداسازی گردید. پس از جداسازی، خالص سازی و شناسایی جدایه ها، آزمون مولکولی با استفاده از پنج جفت آغازگر ریزماهواره انجام گردید. در نهایت 21 آلل در همه جمعیت ها شناسایی شد. میانگین تعداد آلل در هر لوکوس برابر با 2/4 بود. بیشترین و کمترین تعداد آلل به ترتیب مربوط به لوکوس AEM13 با هشت آلل و لوکوس های AEM6 وAEM9 با دو آلل بود. نتایج تجزیه واریانس مولکولی نشان داد که 85 درصد از تنوع ژنتیکی در بین کلیه جدایه ها و 14 درصد، به مناطق مختلف جغرافیایی اختصاص دارد. بین جدایه ها از مناطق مختلف شباهت ژنتیکی بالایی وجود داشت. شباهت ژنتیکی بالا را می توان به مهاجرت ژن یا ژنوتیپ در اثر عوامل مختلف نسبت داد. بیشترین و کمترین تنوع درون جمعیت به ترتیب مربوط به جمعیت شوشتر و جمعیت امیدیه بود. پس از تجزیه دندروگرام داده ها بر اساس UPGMA و ضریب تشابه دایس در سطح 62 درصد، جدایه ها در هشت گروه قرار گرفتند. وجود تنوع بالا به علت جهش، نوترکیبی و تولید مثل جنسی می باشد. نتایج حاصل از این مطالعه برای اصلاح ارقام مقاوم و گسترش روش های کنترل بیماری لکه موجی مفید خواهد بود.
    کلید واژگان: شباهت ژنتیکی, لکه موجی, واریانس مولکولی, SSR}
    Khoshnood Nourollahi, Mohsen Hasani
    Introduction
    The early blight of tomato caused by Alternaria alternata is one of the most important and destructive diseases in Khuzestan province. Study genetic structure of A. alternata populations provides different levels of information in the management of early blight disease in tomato farms. Short sequence repeat (SSR) markers were used to determine the genetic structure and estimate genetic diversity in A. alternata isolates in Khuzestan province.
    Materials And Methods
    In this study to evaluate the genetic diversity and genetic populations of A. alternata pathogen, sampling was randomly carried out on aerial parts of tomato plants with leaf brown lesions in farms and glasshouses from five different regions in Khuzestan province such as: Shoshtar, Omidiyeh, Dashte azadagan, Ahvaz, and Dezful. Each sample was cut into 2–5-mm long pieces, were surface-sterilized with 1% sodium hypochlorite for 3 min and rinsed three times with sterile distilled water and air-dried with sterile filter paper. The sterilized samples were placed onto a general medium potato dextrose agar (PDA). A total of 64 A. alternata isolates were obtained from infected samples. Pathogenicity test was carried out on local susceptible cultivar under an artificial condition in the greenhouse. For obtaining the mycelia mass, liquid cultures were initiated by adding 2–4 mm 2 pieces of filter paper to 250-mL Erlenmeyer flasks containing 100 mL PDB medium (potato dextrose broth). Mycelium was collected by filtration through sterile filter paper with a vacuum funnel. Mycelia were harvested, frozen and stored at -20°C. DNA was extracted using a modified hexadecyl trimethyl-ammonium bromide (CTAB) procedure. A set of five paired sequence repeat primers (SSR) were used to determine the genetic diversity of A. alternata isolates. PCR amplification was performed in a 25 μl reaction volume. The bands generated by SSR primers that were repeatable and clearly visible with a high intensity were scored manually for the presence (1) or absence (0) of bands in each isolate. Data analyses for evaluating of genetic diversity of isolates were calculations using molecular software such as: NTysis, Gene Alex, and POP GENE.
    Results And Discussion
    A total of 21 alleles were produced by SSR primers with an average of 4.2 alleles in all populations. The highest and lowest amounts of alleles were related to locus AEM13 with eight alleles and loci of AEM6 and AEM9 with two alleles respectively. The average of allelic variability per locus was the highest in Shoshtar population and the lowest in Dezful population. Observed allele number and effective numbers of alleles were higher in Shoshtar in comparison of other populations. A Comparison of genetic diversity parameters in five population showed that Shoshtar population has the highest genetic diversity but lower values were estimated for Dashte azadagan. The highest and lowest genetic distance was detected between Ahvaz-Dezfol (0.066) and Shoshtar-Omidieh (0.005), respectively. Based on dendrogram of populations revealed two distinct groups, one group contained Dezful and the other Shoshtar, Omidiyeh, Dashte azadagan and Ahvaz. Analysis of molecular variance showed that 85 percent of the genetic diversity of all the isolates and 14% is allocated to different geographical areas. There was the high genetic similarity between isolates from different regions. High genetic similarity can be attributed to the migration of genes or genotypes of different factors. With according to of Cluster analysis based on UPGMA and Dice similarity coefficient at 62% level, eight groups were revealed. On the basis of microsatellite data indicated high genetic diversity within the isolates; this number of alleles could not lead in separation, on the basis of geographical locations between samples. In this study, the relationship detected between isolates within the six populations were probably due to exchange of tomato seeds between sampled regions and geographical closeness as well.
    Conclusion
    This study have been carried out for the first time in Iran, and in comparison of international populations, a different level of diversity was detected within and between populations of worldwide A. alternata isolates. In this study, the high genetic diversity of A. alternata detected in five populations exposed a potential risk to tomato farms. Genetic diversity of A. alternata in Khuzestan province as an air born pathogen is a warning for a breeder to apply the successful use of resistance genes in local disease management. This gene diversity helps breeders for screening potential resistant cultivars according to gene diversity of A. alternata population in order to develop of durable resistant. Quarantine regulations will need to prevent the introduction of more diverse isolates into these populations and prevent transmission any isolates from this area to other regions of the country. Understanding the genetic structure of pathogen populations in the present study may provide insights into the epidemiology and evolutionary potential of pathogens and could lead to improved strategies for managing the disease. The obtained results indicating the high genetic diversity due to mutation, recombinant and a sexual mating ability of the pathogen in the Khuzestan province. Results in this study will be useful in breeding for tomato early blight resistant cultivars and developing necessary control measures.
    Keywords: Early blight, Genetic similarity, Molecular variance, SSR}
  • بهنام پوزشی میاب*، محمد رضوی، حمیدرضا زمانی زاده، رسول زارع، سعید رضایی
    قارچ Fusarium culmorum یکی از عوامل اصلی بیماری پوسیدگی طوقه و ریشه گندم می باشد. در این تحقیق تنوع ژنتیکی و اختلاف بیماریزایی 49 جدایه F. culmorum که از طوقه و ریشه گندم مزارع سه بخش ورامین جمع آوری شده بود، با استفاده از هشت جفت آغازگر ریزماهواره ای تک ژنگاه انجام و شاخص چند شکلی ژنگاهی با داده های SSR محاسبه شد. آزمون قدرت تهاجمی روی رقم حساس گندم بولانی در شرایط گلخانه ای مورد آزمون قرار گرفتند. نتایج آنالیز داده ها نشان داد که تمامی ژنگاه های ریز ماهواره ای دارای چند شکلی بوده و دارای 2 تا 6 آلل با میانگین 3/75 آلل برای هر ژنگاه بودند. تجزیه خوشه ایداده های SSR، 49 ژنوتیپ مختلف را در پنج گروه تقسیم بندی کرد و شاخص چند شکلی ژنگاهی 44 چندشکلی ژنگاه را در بین 49 جدایه مشخص کرد. در کل سطح بالای تنوع ژنتیکی (0/528) در تمام جدایه های F. culmorum مشاهده شد و جدایه های بخش ورامین تشابه ژنتیکی کمتری نسبت به جدایه های بخش های جوادآباد و پیشوا داشتند. تفاوت بیماریزایی بین جدایه ها معنی دار و جدایه های بخش ورامین از لحاظ بیماریزایی نسبت به جدایه های دو بخش دیگر از قدرت بیماریزایی بیشتری برخوردار بودند. ارتباط معنی داری بین تنوع ژنتیکی و شدت بیماریزایی جدایه ها مشاهده نگردید. تمایز تنوع ژنتیکی و بیماری زایی جدایه های بخش ورامین از دیگر بخش های شهرستان ورامین، احتمال وقوع ژنوتیپ های جدید با بیماریزایی بیشتر را در این بخش تقویت می کند
    کلید واژگان: ژنتیک جمعیت, واریانس مولکولی, هاپلوتیپ}
    B. Pouzeshimiab*, M. Razavi, H. R. Zamanizadeh, R. Zare, S. Rezaee
    Fusarium culmorum, is one of the most important causal agents of crown rot of wheat in Iran. Simple sequence repeats or microsatellite (SSR) and virulence assays were used to investigate genetic variability among 49 isolates of F. culmorum collected from wheat fields in three districts of Varamin. Eight pairs of single-locus microsatellite markers were used to analyze the genomic DNA of isolates. The result of analysis showed that all loci were polymorphic and the numbers of alleles ranged between two to six with an average of 3.75 per locus. Cluster analysis of SSR data revealed that 49 isolates clustered into five distinct groups. The index of multilocus association was calculated using SSR data and 44 multilocus haplotypes were detected among 49 isolates. The results of this study indicated that a there was a high level of genetic diversity (0.528) among the isolates examined, and genetic similarity among Varamin isolates was less than those obtained from Pishva and Javad-abad regions. In addition, pathogenicity of the isolates was tested on a bread wheat cv. Bolani under greenhouse conditions. A significant difference for pathogenicity was found among the isolates. Comparison of the means showed that the isolates of Varamin districts were more pathogenic than Javad-abad and Pishva districts. The significant difference in the genetic diversity and pathogenicity of the Varamin’s isolates in comparison to the other districts suggests that there is a potential for the occurrence of new genotypes with greater virulence in this district. The statistically no correlation was observed between molecular variation and pathogenicity.
    Keywords: Molecular variance, Haplotypes, Population genetics}
نکته
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