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Population structure and genetic diversity characterization of a sunflower association mapping population using SSR and SNP markers

机译:利用SSR和SNP标记对向日葵关联作图群体的种群结构和遗传多样性特征

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Background Argentina has a long tradition of sunflower breeding, and its germplasm is a valuable genetic resource worldwide. However, knowledge of the genetic constitution and variability levels of the Argentinean germplasm is still scarce, rendering the global map of cultivated sunflower diversity incomplete. In this study, 42 microsatellite loci and 384 single nucleotide polymorphisms (SNPs) were used to characterize the first association mapping population used for quantitative trait loci mapping in sunflower, along with a selection of allied open-pollinated and composite populations from the germplasm bank of the National Institute of Agricultural Technology of Argentina. The ability of different kinds of markers to assess genetic diversity and population structure was also evaluated. Results The analysis of polymorphism in the set of sunflower accessions studied here showed that both the microsatellites and SNP markers were informative for germplasm characterization, although to different extents. In general, the estimates of genetic variability were moderate. The average genetic diversity, as quantified by the expected heterozygosity, was 0.52 for SSR loci and 0.29 for SNPs. Within SSR markers, those derived from non-coding regions were able to capture higher levels of diversity than EST-SSR. A significant correlation was found between SSR and SNP- based genetic distances among accessions. Bayesian and multivariate methods were used to infer population structure. Evidence for the existence of three different genetic groups was found consistently across data sets ( i.e ., SSR, SNP and SSR?+?SNP), with the maintainer/restorer status being the most prevalent characteristic associated with group delimitation. Conclusion The present study constitutes the first report comparing the performance of SSR and SNP markers for population genetics analysis in cultivated sunflower. We show that the SSR and SNP panels examined here, either used separately or in conjunction, allowed consistent estimations of genetic diversity and population structure in sunflower breeding materials. The generated knowledge about the levels of diversity and population structure of sunflower germplasm is an important contribution to this crop breeding and conservation.
机译:背景技术阿根廷具有悠久的向日葵育种传统,其种质资源是全世界宝贵的遗传资源。但是,对阿根廷种质的遗传组成和变异水平的了解仍然很匮乏,这使得栽培向日葵多样性的全球图景不完整。在这项研究中,使用42个微卫星基因座和384个单核苷酸多态性(SNP)表征了向日葵中用于数量性状基因座作图的第一个关联作图种群,并从中国种质库中选择了相关的开放授粉和复合种群。阿根廷国家农业技术研究所。还评估了各种标记物评估遗传多样性和种群结构的能力。结果此处研究的向日葵种质组的多态性分析表明,尽管程度不同,微卫星和SNP标记物都有助于种质鉴定。通常,遗传变异性的估计是中等的。通过预期的杂合性量化的平均遗传多样性,SSR位点为0.52,SNP位点为0.29。在SSR标记内,那些来自非编码区的标记比EST-SSR能够捕获更高水平的多样性。在种质之间SSR和基于SNP的遗传距离之间发现显着相关性。贝叶斯和多元方法被用来推断人口结构。跨数据集(即SSR,SNP和SSRα+ΔSNP)一致发现存在三个不同遗传群体的证据,其中维持者/恢复者状态是与群体划界有关的最普遍特征。结论本研究构成了比较SSR和SNP标记在栽培向日葵群体遗传学分析中的性能的第一份报告。我们显示,此处检查的SSR和SNP面板(单独使用或结合使用)可以对向日葵育种材料的遗传多样性和种群结构进行一致的估计。向日葵种质多样性和种群结构水平的知识积累,对这种作物的育种和保护具有重要意义。

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