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首页> 外文期刊>PLoS Genetics >Disentangling group specific QTL allele effects from genetic background epistasis using admixed individuals in GWAS: An application to maize flowering
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Disentangling group specific QTL allele effects from genetic background epistasis using admixed individuals in GWAS: An application to maize flowering

机译:解开群体特异性QTL等位基因从GWAS中使用混合的个体的遗传背景Epistasis的影响:玉米开花的应用

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When handling a structured population in association mapping, group-specific allele effects may be observed at quantitative trait loci (QTLs) for several reasons: (i) a different linkage disequilibrium (LD) between SNPs and QTLs across groups, (ii) group-specific genetic mutations in QTL regions, and/or (iii) epistatic interactions between QTLs and other loci that have differentiated allele frequencies between groups. We present here a new genome-wide association (GWAS) approach to identify QTLs exhibiting such group-specific allele effects. We developed genetic materials including admixed progeny from different genetic groups with known genome-wide ancestries (local admixture). A dedicated statistical methodology was developed to analyze pure and admixed individuals jointly, allowing one to disentangle the factors causing the heterogeneity of allele effects across groups. This approach was applied to maize by developing an inbred “Flint-Dent” panel including admixed individuals that was evaluated for flowering time. Several associations were detected revealing a wide range of configurations of allele effects, both at known flowering QTLs ( Vgt1 , Vgt2 and Vgt3 ) and new loci. We found several QTLs whose effect depended on the group ancestry of alleles while others interacted with the genetic background. Our GWAS approach provides useful information on the stability of QTL effects across genetic groups and can be applied to a wide range of species.
机译:当处理结合映射中的结构化人群时,可以在定量特性基因座(QTLS)以几种原因观察特异性等位基因效应:(i)跨组的SNP和QTL之间的不同联动不平衡(LD),(ii)组 - QTL区域的特异性遗传突变,和/或(III)QTL和其他基因座之间的顾问相互作用,其在组之间具有差异化等位基因频率。我们在这里介绍一种新的基因组关联(GWAS)方法来鉴定表现出特异性等位基因效应的QTL。我们开发了遗传物质,包括来自不同遗传基团的混合后代,具有已知的基因组型祖先(局部混合物)。开发了一种专用的统计方法,共同分析纯粹和混合的个体,允许一个人解开导致跨群体的等位基因效应异质性的因素。通过开发近交“浮肿”小组,将这种方法应用于玉米,包括对开花时间评估的混合个体。检测若干关联,揭示了众所周知的开花QTL(VGT1,VGT2和VGT3)和新基因座的各种等位基因效果的各种配置。我们发现了几种QTL,其效果取决于群体的血统等位基因,而其他QTL则与遗传背景相互作用。我们的GWA方法提供有关遗传群QTL效应稳定性的有用信息,并且可以应用于各种物种。

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