Evaluation of the Genetic Structure of Some Accessions Belonging to Onobrychis spp. Using Microsatellite DNA Markers

Elbi Cansu Yilmaz, Behiye Banu Bilgen, M. Tuna
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Abstract

Turkey is in a very convenient position for animal husbandry in terms of both natural resources and ecological conditions. Forage crops, which has a very important place in agricultural activities, is the insurance of plant and animal production. Sainfoin is a perennial forage legume species that grown in the northern temperate regions of the world from the Mediterranean region and the Caucasus, and to Central Asia. In this study the genetic diversity of 100 genotypes representing 44 accessions from 18 different Onobrychis species (O. arenaria subsp. arenaria, O. inermis, O. petraea, O. cyri, O. iberica, O. altissima, O. vassilczenkoi, O. conferta subsp. argentea, O. alba subsp. laconica, O. biebersteinii, O. grandis, O. kachetica, O. kemulariae, O. oxyodonta, O. megataphros, O. pallasii, Onobrychis spp., and O. viciifolia) were evaluated using 8 simple sequence repeat (microsatellite) markers. Based on the results, OVK036, OVK094, OVK125, OVM033, OVK161, OVK046, OVM061, and OVK174 loci were polymorphic. The observed number of alleles per SSR locus ranged from 6 to 21 alleles (mean of 11.625). Maximum allele frequency ranged from 0.51 to 0.93 with a mean value of 0.73. The PIC value ranged from 0.124 to 0.244. The mean polymorphism information content of loci was 0.188. Genetic diversity coefficients according to the UPGMA ranged from 0.000 to 0.9375. Cluster analysis divided the 100 sainfoin genotypes into two main groups (Cluster-I and Cluster-II). All diploid genotypes (except for 1 diploid genotype) used in the study formed a separate group within Cluster-I. The results revealed that SSR markers used in this study are useful for molecular characterization and assessing genetic diversity of sainfoin accessions. The obtained SSR alleles and genetic variability in a studied certain loci provided significant information about the genetic structure of sainfoin accessions that could be used as parental lines in sainfoin breeding programs.
用微卫星DNA标记评价石藓属部分材料的遗传结构
土耳其在自然资源和生态条件方面都处于非常便利的畜牧业发展位置。饲料作物是动植物生产的保障,在农业生产中占有十分重要的地位。红豆属植物是一种多年生饲草豆科植物,生长在从地中海地区和高加索地区到中亚的世界北温带地区。本研究对18种褐藓属44个种质的100个基因型的遗传多样性进行了研究。沙棘球绦虫、黄花球绦虫、黄花球绦虫、黄花球绦虫、黄花球绦虫、黄花球绦虫、黄花球绦虫、黄花球绦虫。阿根廷,O. alba亚种。采用8个简单序列重复(微卫星)标记对不同品种(laconica、O. biebersteinii、O. grandis、O. kachetica、O. kemulariae、O. oxyodonta、O. megataphros、O. pallasii、Onobrychis spp和O. viciifolia)进行了鉴定。结果表明,OVK036、OVK094、OVK125、OVM033、OVK161、OVK046、OVM061和OVK174位点存在多态性。每个SSR位点的等位基因数为6 ~ 21个,平均为11.625个。最大等位基因频率范围为0.51 ~ 0.93,平均值为0.73。PIC值为0.124 ~ 0.244。位点的平均多态性信息含量为0.188。UPGMA遗传多样性系数范围为0.000 ~ 0.9375。聚类分析将100个红豆素基因型分为两大类(Cluster- i和Cluster- ii)。研究中使用的所有二倍体基因型(除1个二倍体基因型外)在Cluster-I中形成一个单独的组。结果表明,SSR标记可用于红豆素种质资源的分子鉴定和遗传多样性评估。所获得的SSR等位基因和特定位点的遗传变异为红豆种质的遗传结构提供了重要信息,可作为红豆育种的亲本。
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