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Analysis of genetic structure in a panel of elite wheat varieties and relevance for association mapping

机译:一组优质小麦品种的遗传结构分析及关联作图的相关性

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During the last decades, with the intensification of selection and breeding using crosses between varieties, a very complex genetic structure was shaped in the elite wheat germplasm. However, precise description of this structure with panels and collections is becoming more and more crucial with the development of resource management and new statistical tools for mapping genetic determinants (e.g. association studies). In this study, we investigated the genetic structure of 195 Western European elite wheat varieties using the recent development of high throughput screening methods for molecular markers. After observing that both microsatellites and Diversity Array Technology markers are efficient to estimate the structure of the panel, we used different complementary approaches (Genetic distances, principal component analysis) that showed that the varieties are separated by geographical origin (France, Germany and UK) and also by breeding history, confirming the impact of plant breeding on the wheat germplasm structure. Moreover, by analysing three phenotypic traits presenting significant average differences across groups (plant height, heading date and awnedness), and by using markers linked to major genes for these traits (Ppd-D1, Rht-B1, Rht-D1 and B1), we showed that for each trait, there is a specific optimal Q matrix to use as a covariate in association tests.
机译:在过去的几十年中,随着品种间杂交的选择和育种的加强,优质小麦种质形成了非常复杂的遗传结构。但是,随着资源管理的发展和用于绘制遗传决定因素图谱的新统计工具(例如关联研究)的发展,利用专家小组和馆藏对该结构进行精确描述变得越来越重要。在这项研究中,我们使用分子标记的高通量筛选方法的最新进展,研究了195个西欧优良小麦品种的遗传结构。在观察到微卫星和多样性阵列技术标记都可以有效地估计面板结构后,我们使用了不同的互补方法(遗传距离,主成分分析),表明该品种按地理来源(法国,德国和英国)分开并通过育种历史,证实了植物育种对小麦种质结构的影响。此外,通过分析在各组之间表现出显着平均差异的三个表型性状(植株高度,抽穗期和遮篷),并使用与这些性状的主要基因相关的标记(Ppd-D1,Rht-B1,Rht-D1和B1),我们证明,对于每个特征,都有一个特定的最佳Q矩阵用作关联测试中的协变量。

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