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Assessment of genetic diversity in Ethiopian cowpea [Vigna unguiculata (L.) Walp.] germplasm using simple sequence repeat markers

机译:使用简单的序列重复标记评估埃塞俄比亚cow豆[Vigna unguiculata(L.)Walp。]种质的遗传多样性

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The genetic diversity of cowpea (Vigna unguiculata L. Walp.) in Ethiopia was analyzed using 19 uniform accessions, 62 variable accessions (yielding 185 sub-types), and two mungbean (Vigna radiata) accessions (four subtypes) as outgroup. A set of 23 polymorphic simple sequence repeat (SSR) markers was identified, and polymorphism in the various accessions was scored by determining amplicon variability. Allele frequency, genetic diversity, and polymorphism information content (PIC) were determined for each SSR marker, and a neighbor joining dendrogram was generated to show the genetic relationship among the individual accessions. A total of 75 allelic variants was defined, with the average number of alleles per locus calculated to be three. The average genetic diversity (D) was 0.47, and PIC was 0.4. Three main clusters were identified by phylogenetic analysis, and the clusters and sub-grouping were supported by STRUCTURE and principal component analysis. This grouping had a moderate fixation index value of 0.075 and gene flow (Nm) of 3.176, indicating that the accessions possess wide diversity within individuals and populations. The accessions showed no clustering by geographical origins. Three well-characterized molecular markers (SSR1, C42-2B, and 61RM2) for race specific resistance to Striga gesnerioides in the cowpea cultivar B301 were used to evaluate the accessions for their potential for use in genetic improvement against this pest. Based on this analysis, only two accessions, 222890-2 from Gambela and 286-2 from the Southern Nations, Nationalities, and Peoples (SNNP) region, were found to cluster with B301 and contain the SSR1 resistance allele. These findings will assist in germplasm conservation efforts by the Institute of Biodiversity and Conservation of Ethiopia, and contribute to future studies aimed at the genetic improvement of local germplasm for improved overall agronomic performance as well as Striga resistance in particular.
机译:埃塞俄比亚of豆(Vigna unguiculata L.Walp。)的遗传多样性使用19个均一种,62个可变种(产量185个亚型)和两个绿豆(Vigna radiata)种(四个亚型)进行了分析。鉴定出一组23个多态性简单序列重复(SSR)标记,并通过确定扩增子变异性对各种种质中的多态性进行评分。确定每个SSR标记的等位基因频率,遗传多样性和多态性信息含量(PIC),并生成邻居连接树状图以显示各个种质之间的遗传关系。总共定义了75个等位基因变体,每个基因座的平均等位基因数量计算为3。平均遗传多样性(D)为0.47,PIC为0.4。通过系统发育分析确定了三个主要的聚类,并且通过结构和主成分分析支持了聚类和亚组。该分组的中等固定指数值为0.075,基因流(Nm)为3.176,表明这些种在个体和种群中具有广泛的多样性。这些种质没有显示出地理起源的聚类。 the豆品种B301中三个针对种族特有抗性的特异抗性的良好表征的分子标记(SSR1,C42-2B和61RM2)用于评估这些材料在遗传改良中针对该害虫的潜力。基于此分析,仅发现两个种,Gambela的222890-2和南部民族,民族和人民(SNNP)区域的286-2,与B301聚在一起并包含SSR1抗性等位基因。这些发现将有助于埃塞俄比亚生物多样性和自然保护研究所的种质资源保护工作,并有助于未来旨在改良当地种质资源以改善总体农艺性能,尤其是抗Striga的遗传资源的研究。

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