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首页> 外文期刊>Molecules >Development of 65 Novel Polymorphic cDNA-SSR Markers in Common Vetch (Vicia sativa subsp. sativa) Using Next Generation Sequencing
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Development of 65 Novel Polymorphic cDNA-SSR Markers in Common Vetch (Vicia sativa subsp. sativa) Using Next Generation Sequencing

机译:利用下一代测序技术在普通V子(Vicia sativa subsp。sativa)中开发65个新的多态性cDNA-SSR标记

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摘要

Vetch (Vicia sativa L.) is one of the most important annual forage legumes in the World due to its multiple uses (i.e., hay, grain, silage and green manure) and high nutritional value. However, detrimental cyanoalanine toxins in its plant parts including seeds and its vulnerability to hard winter conditions are currently reducing the agronomic values of vetch varieties. Moreover, the existence in the public domain of very few genomic resources, especially molecular markers, has further hampered breeding efforts. Polymorphic simple sequence repeat markers from transcript sequences (cDNA; simple sequence repeat [SSR]) were developed for Vicia sativa subsp. sativa. We found 3,811 SSR loci from 31,504 individual sequence reads, and 300 primer pairs were designed and synthesized. In total, 65 primer pairs were found to be consistently scorable when 32 accessions were tested. The numbers of alleles ranged from 2 to 19, frequency of major alleles per locus were 0.27–0.87, the genotype number was 2–19, the overall polymorphism information content (PIC) values were 0.20–0.86, and the observed and expected heterozygosity values were 0.00–0.41 and 0.264–0.852, respectively. These markers provide a useful tool for assessing genetic diversity, population structure, and positional cloning, facilitating vetch breeding programs.
机译:etch草(Vicia sativa L.)由于其多种用途(即干草,谷物,青贮饲料和绿肥)且营养价值高,是世界上最重要的年度饲草豆科植物之一。但是,其种子部分等植物部位的有害氰基丙氨酸毒素及其在严冬条件下的脆弱性目前正在降低v子品种的农艺价值。而且,在公共领域中,很少有基因组资源,特别是分子标记物的存在,进一步阻碍了育种工作。针对Vi蚕亚种开发了转录本序列(cDNA;简单序列重复[SSR])的多态性简单序列重复标记。苜蓿。我们从31,504个单独的序列读取中发现了3,811个SSR基因座,并设计和合成了300对引物。当测试32个种质时,总共发现65对引物是一致的。等位基因数量在2至19之间,每个位点的主要等位基因频率为0.27至0.87,基因型数量为2至19,总多态性信息含量(PIC)值为0.20至0.86,观察到的和期望的杂合度值分别为0.00–0.41和0.264–0.852。这些标记物为评估遗传多样性,种群结构和位置克隆提供了有用的工具,有助于v子育种计划。

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