首页> 美国卫生研究院文献>PLoS Clinical Trials >Evolution of SSR diversity from wild types to U.S. advanced cultivars in the Andean and Mesoamerican domestications of common bean (Phaseolus vulgaris)
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Evolution of SSR diversity from wild types to U.S. advanced cultivars in the Andean and Mesoamerican domestications of common bean (Phaseolus vulgaris)

机译:安第斯山脉和中美洲美洲菜豆(菜豆)中从野生型到美国高级品种的SSR多样性演变

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摘要

Progress in common bean breeding requires the exploitation of genetic variation among market classes, races and gene pools. The present study was conducted to determine the amount of genetic variation and the degree of relatedness among 192 selected common bean advanced cultivars using 58 simple-sequence-repeat markers (SSR) evenly distributed along the 11 linkage groups of the Phaseolus reference map. All the lines belonged to commercial seed type classes that are widely grown in the USA and include both dry bean and snap beans for the fresh and processing markets. Through population structure, principal components analyses, cluster analysis, and discriminant analysis of principal components (DAPC), Andean and Mesoamerican genotypes as well as most American commercial type classes could be distinguished. The genetic relationship among the commercial cultivars revealed by the SSR markers was generally in agreement with known pedigree data. The Mesoamerican cultivars were separated into three major groups—black, small white, and navy accessions clustered together in a distinct group, while great northern and pinto clustered in another group, showing mixed origin. The Andean cultivars were distributed in two different groups. The kidney market classes formed a single group, while the green bean accessions were distributed between the Andean and Mesoamerican groups, showing inter-gene pool genetic admixture. For a subset of 24 SSR markers, we compared and contrasted the genetic diversity of the commercial cultivars with those of wild and domesticated landrace accessions of common bean. An overall reduction in genetic diversity was observed in both gene pools, Andean and Mesoamerican, from wild to landraces to advanced cultivars. The limited diversity in the commercial cultivars suggests that an important goal of bean breeding programs should be to broaden the cultivated gene pool, particularly the genetic diversity of specific commercial classes, using the genetic variability present in common bean landraces.
机译:普通豆育种的进步要求利用市场类别,种族和基因库之间的遗传变异。本研究旨在利用沿菜豆参考图谱的11个连锁组平均分布的58个简单序列重复标记(SSR)确定192个所选普通豆高级品种之间的遗传变异量和相关程度。所有品系均属于在美国广泛种植的商业种子类型类别,包括用于新鲜和加工市场的干豆和四季豆。通过人口结构,可以区分主成分分析,聚类分析和主成分判别分析(DAPC),从而区分安第斯和中美洲基因型以及大多数美国商业类型类别。通过SSR标记揭示的商业品种之间的遗传关系通常与已知的系谱数据一致。中美洲品种分为三个主要组别:黑色,白色和海军种聚在一起,形成一个独特的群体,而北方和品脱的大群则聚在一起,显示出不同的起源。安第斯山脉的品种分为两个不同的组。肾脏市场类别组成一个单一的群体,而绿豆种质则分布在安第斯山脉和中美洲群体之间,显示出基因间库的遗传混合物。对于24个SSR标记的子集,我们比较和比较了商业品种与野生和驯养的普通豆品种的遗传多样性。从野生到地方品种再到高级品种,在安第斯山脉和中美洲山脉的两个基因库中都观察到了遗传多样性的总体下降。商业品种的有限多样性表明,豆类育种计划的重要目标应该是利用普通豆类地方品种中存在的遗传变异性来拓宽栽培基因库,特别是特定商业类别的遗传多样性。

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