首页> 外文期刊>Genetic Resources and Crop Evolution >Assessment of molecular diversity and population structure of the Ethiopian sorghum [Sorghum bicolor (L.) Moench] germplasm collection maintained by the USDA-ARS National Plant Germplasm System using SSR markers
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Assessment of molecular diversity and population structure of the Ethiopian sorghum [Sorghum bicolor (L.) Moench] germplasm collection maintained by the USDA-ARS National Plant Germplasm System using SSR markers

机译:利用SSR标记评估USDA-ARS国家植物种质系统维持的埃塞俄比亚高粱[Sorghum bicolor(L.)Moench]种质的分子多样性和种群结构

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摘要

The molecular diversity and population structure present in the Ethiopian sorghum collection maintained at the USDA-ARS National Plant Germplasm System (NPGS) has not been studied. In addition, 83 % of the accessions in the Ethiopian collection lack passport information which has constrained their evaluation and utility. Therefore, 137 Ethiopian accessions from NPGS were randomly selected and characterized with 20 strategically selected simple sequence repeat markers. These markers indentified 289 alleles with average polymorphic information content of 0.78. The allele frequency distribution reflects that 62 % of the alleles were rare (< 0.05), 17 % range from 0.05 to 0.10, and 22 % were higher than 0.10. Expected and observed heterozygosity were estimated at 0.78 and 0.23, respectively, demonstrating Ethiopia has high sorghum genetic diversity germplasm. Population structure analysis indentified two subpopulations of 77 and 41 accessions, respectively, while a third group was constituted by 19 accessions whose classifications were not defined (i.e. hybrids). Analysis of molecular variances determined variation within subpopulations as the major source of variation. Likewise, genetic differentiation between subpopulations was moderate (F-st = 0.10). These results indicated that a continuous exchange of genes between subpopulations of sorghum exists in Ethiopia. The absence of a well defined population structure positioned this germplasm as an important resource for the study and dissection of agricultural traits by association mapping. However, genetic redundancy analysis indicated the presence of highly related accessions, therefore, strategic selected accessions must be consider prior to phenotype evaluation of larger number of accessions. The Ethiopian collection is composed of highly genetically diverse germplasm, and the genetic information presented herein is valuable to ex situ and in situ conservation programs to promote the use of this germplasm for breeding programs.
机译:尚未对USDA-ARS国家植物种质系统(NPGS)维持的埃塞俄比亚高粱集合中存在的分子多样性和种群结构进行研究。此外,埃塞俄比亚收藏品中83%的材料缺乏护照信息,这限制了它们的评估和实用性。因此,从NPGS中随机选择了137个埃塞俄比亚种质,并用20个策略性选择的简单序列重复标记进行了表征。这些标记鉴定出289个等位基因,平均多态信息含量为0.78。等位基因频率分布反映出62%的等位基因是稀有(<0.05),17%的范围是0.05至0.10,22%的等位基因高于0.10。预期和观察到的杂合度分别为0.78和0.23,表明埃塞俄比亚具有高粱遗传多样性种质。人口结构分析分别确定了77个和41个种质的两个亚群,而第三组由19个未定义分类的种质(即杂种)组成。分子变异分析确定亚群内的变异为变异的主要来源。同样,亚群之间的遗传分化也中等(F-st = 0.10)。这些结果表明在埃塞俄比亚存在高粱亚群之间的基因连续交换。由于缺乏明确的种群结构,该种质成为通过关联作图研究和分析农业性状的重要资源。但是,遗传冗余分析表明存在高度相关的种质,因此,在对大量种质进行表型评估之前,必须考虑战略性选择的种质。埃塞俄比亚的收藏品由遗传上高度多样的种质组成,此处介绍的遗传信息对于非原生境和就地保护计划有价值,以促进将该种质用于育种计划。

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