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SNP marker diversity in common bean (Phaseolus vulgaris L.)

机译:普通豆(菜豆)的SNP标记多样性

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摘要

Single nucleotide polymorphism (SNP) markers have become a genetic technology of choice because of their automation and high precision of allele calls. In this study, our goal was to develop 94 SNPs and test them across well-chosen common bean (Phaseolus vulgaris L.) germplasm. We validated and accessed SNP diversity at 84 gene-based and 10 non-genic loci using KASPar technology in a panel of 70 genotypes that have been used as parents of mapping populations and have been previously evaluated for SSRs. SNPs exhibited high levels of genetic diversity, an excess of middle frequency polymorphism, and a within-genepool mismatch distribution as expected for populations affected by sudden demographic expansions after domestication bottlenecks. This set of markers was useful for distinguishing Andean and Mesoamerican genotypes but less useful for distinguishing within each gene pool. In summary, slightly greater polymorphism and race structure was found within the Andean gene pool than within the Mesoamerican gene pool but polymorphism rate between genotypes was consistent with genepool and race identity. Our survey results represent a baseline for the choice of SNP markers for future applications because gene-associated SNPs could themselves be causative SNPs for traits. Finally, we discuss that the ideal genetic marker combination with which to carry out diversity, mapping and association studies in common bean should consider a mix of both SNP and SSR markers.
机译:单核苷酸多态性(SNP)标记由于其自动化和等位基因调用的高精度而成为一种遗传技术。在这项研究中,我们的目标是开发94个SNP,并在选择良好的普通豆(Phaseolus vulgaris L.)种质中对其进行测试。我们在70个基因型的面板中使用KASPar技术在84个基于基因的基因位点和10个非基因位点验证并访问了SNP多样性,这些基因型已用作作图群体的亲本,并且先前已对其SSR进行了评估。 SNPs表现出高水平的遗传多样性,过量的中频多态性和基因内不匹配分布,正如归因于驯养瓶颈后突然的人口膨胀的人群所期望的那样。这组标记可用于区分安第斯和中美洲的基因型,但对区分每个基因库内的有用性较小。总之,在安第斯基因库中发现的多态性和种族结构比中美洲基因库中的略多,但基因型之间的多态性率与基因库和种族身份一致。我们的调查结果代表了将来选择SNP标记的基准,因为与基因相关的SNP本身可能是性状的致病性SNP。最后,我们讨论了在普通豆中进行多样性,作图和关联研究的理想遗传标记组合应考虑SNP和SSR标记的混合。

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