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Assessment of the genetic diversity in cowpea ( Vigna unguiculata L. Walp.) germplasm from Ghana using simple sequence repeat markers

机译:使用简单的序列重复标记法评估加纳cow豆(Vigna unguiculata L. Walp。)种质的遗传多样性

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Genetic diversity and phylogenetic relationships among 141 cowpea (Vigna unguiculata L. Walp.) accessions collected throughout the nine geographical regions of Ghana were evaluated using simple sequence repeat (SSR) molecular markers. Twenty-five primer combinations pre-selected by their ability to polymerase chain reaction amplify SSRs from a set of test cowpea germplasm were evaluated. Of these, 20 primer combinations gave reproducible polymorphisms among 97.2% of the cowpea accessions tested, with the remaining accessions being found to be genetically identical. The informative primer combinations revealed a total of 74 alleles at 20 loci with an average of 3.8 alleles detected per locus. Variation in heterozygosity among cowpea SSRs ranged from 0.01 to 0.84 with an average occurrence of 0.19. The polymorphism information content varied from 0.07 to 0.66 with an average of 0.38. The Ghanaian cowpea accessions clustered into five main branches, each of which was loosely associated with the geographical regions from which samples were obtained. Accession GH2288 was found to be the most divergent cowpea accession compared with all others including the outgroup IT84S-2049, a breeding line from Nigeria. Our results provide a framework for future studies aimed at the conservation and management of cultivated cowpea germplasm in Ghana, and a good starting point for the selection of parental lines for genetic improvement programmes.
机译:使用简单序列重复(SSR)分子标记评估了在加纳九个地理区域内收集的141个cow豆(Vigna unguiculata L. Walp。)种的遗传多样性和系统发育关系。评估了25种通过聚合酶链反应扩增来自一组测试cow豆种质的SSR的能力预先选择的引物组合。其中20种引物组合在97.2%的cow豆种质中产生了可重复的多态性,而其余的种质在基因上是相同的。信息丰富的引物组合显示,在20个基因座上共有74个等位基因,每个基因座平均检测到3.8个等位基因。 cow豆SSR之间的杂合度变化范围为0.01至0.84,平均发生率为0.19。多态信息含量从0.07变化到0.66,平均为0.38。加纳cow豆种质聚集成五个主要分支,每个分支与从中获取样品的地理区域相关联。与其他所有品种(包括来自尼日利亚的育种系IT84S-2049)相比,种质GH2288被认为是差异最大的cow豆种质。我们的研究结果为旨在保护和管理加纳栽培的pea豆种质的未来研究提供了框架,也是为遗传改良计划选择亲本系的良好起点。

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