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冬小麦历史选择分析。

Analysis of historical selection in winter wheat.

机构信息

Scotland's Rural College (SRUC), Kings Buildings, West Mains Road, Edinburgh, EH9 3JG, UK.

Department of Genetics, Evolution and Environment, University College London, London, WC1E 6BT, UK.

出版信息

Theor Appl Genet. 2022 Sep;135(9):3005-3023. doi: 10.1007/s00122-022-04163-3. Epub 2022 Jul 21.

Abstract

Modeling of the distribution of allele frequency over year of variety release identifies major loci involved in historical breeding of winter wheat. Winter wheat is a major crop with a rich selection history in the modern era of crop breeding. Genetic gains across economically important traits like yield have been well characterized and are the major force driving its production. Winter wheat is also an excellent model for analyzing historical genetic selection. As a proof of concept, we analyze two major collections of winter wheat varieties that were bred in Western Europe from 1916 to 2010, namely the Triticeae Genome (TG) and WAGTAIL panels, which include 333 and 403 varieties, respectively. We develop and apply a selection mapping approach, Regression of Alleles on Years (RALLY), in these panels, as well as in simulated populations. RALLY maps loci under sustained historical selection by using a simple logistic model to regress allele counts on years of variety release. To control for drift-induced allele frequency change, we develop a hybrid approach of genomic control and delta control. Within the TG panel, we identify 22 significant RALLY quantitative selection loci (QSLs) and estimate the local heritabilities for 12 traits across these QSLs. By correlating predicted marker effects with RALLY regression estimates, we show that alleles whose frequencies have increased over time are heavily biased toward conferring positive yield effect, but negative effects in flowering time, lodging, plant height and grain protein content. Altogether, our results (1) demonstrate the use of RALLY to identify selected genomic regions while controlling for drift, and (2) reveal key patterns in the historical selection in winter wheat and guide its future breeding.

摘要

对品种释放年份的等位基因频率分布进行建模,可识别与冬小麦历史选育相关的主要基因座。冬小麦是一种主要作物,在现代作物选育中具有丰富的选择历史。产量等经济重要性状的遗传增益得到了很好的描述,是推动其生产的主要力量。冬小麦也是分析历史遗传选择的优秀模型。作为概念验证,我们分析了 1916 年至 2010 年在西欧选育的两个主要冬小麦品种群体,即 Triticeae Genome (TG) 和 WAGTAIL 群体,分别包含 333 和 403 个品种。我们在这些群体以及模拟群体中开发并应用了一种选择作图方法,即回归年的等位基因(Regression of Alleles on Years,RALLY)。RALLY 利用简单的逻辑回归模型,根据品种释放年份回归等位基因计数,从而定位持续历史选择下的基因座。为了控制由漂变引起的等位基因频率变化,我们开发了一种基因组控制和 delta 控制的混合方法。在 TG 群体中,我们确定了 22 个显著的 RALLY 数量性状选择基因座(QSL),并估计了这些 QSL 上 12 个性状的局部遗传力。通过将预测的标记效应与 RALLY 回归估计值相关联,我们表明,随着时间的推移频率增加的等位基因主要偏向于赋予正的产量效应,但在开花时间、倒伏、株高和籽粒蛋白质含量方面则呈负效应。总的来说,我们的研究结果:(1)证明了使用 RALLY 来识别选择的基因组区域,同时控制漂变;(2)揭示了冬小麦历史选择中的关键模式,并指导其未来的选育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/557b/9482581/63bc12ea3862/122_2022_4163_Fig1_HTML.jpg

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