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A comparison of bivariate and univariate QTL mapping in livestock populations

机译:牲畜种群中双变量和单变量QTL作图的比较

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摘要

This study presents a multivariate, variance component-based QTL mapping model implemented via restricted maximum likelihood (REML). The method was applied to investigate bivariate and univariate QTL mapping analyses, using simulated data. Specifically, we report results on the statistical power to detect a QTL and on the precision of parameter estimates using univariate and bivariate approaches. The model and methodology were also applied to study the effectiveness of partitioning the overall genetic correlation between two traits into a component due to many genes of small effect, and one due to the QTL. It is shown that when the QTL has a pleiotropic effect on two traits, a bivariate analysis leads to a higher statistical power of detecting the QTL and to a more precise estimate of the QTL's map position, in particular in the case when the QTL has a small effect on the trait. The increase in power is most marked in cases where the contributions of the QTL and of the polygenic components to the genetic correlation have opposite signs. The bivariate REML analysis can successfully partition the two components contributing to the genetic correlation between traits.
机译:这项研究提出了通过受限最大似然(REML)实现的基于变量的基于变量的多变量QTL映射模型。该方法用于使用模拟数据研究双变量和单变量QTL映射分析。具体来说,我们报告使用单变量和双变量方法检测QTL的统计能力以及参数估计精度的结果。该模型和方法还用于研究将两个性状之间的整体遗传相关性划分为一个成分的有效性,这归因于许多影响较小的基因,而一个归因于QTL。结果表明,当QTL对两个性状具有多效性时,双变量分析可以提高检测QTL的统计能力,并可以更精确地估算QTL的图谱位置,特别是当QTL具有对特质的影响很小。当QTL和多基因成分对遗传相关性的贡献具有相反的迹象时,功率的增加最为明显。双变量REML分析可以成功地划分有助于性状之间遗传相关的两个成分。

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