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Bayesian Multiple Quantitative Trait Loci Mapping for Recombinant Inbred Intercrosses

机译:重组自交系的贝叶斯多重定量性状位点定位

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摘要

The Collaborative Cross (CC) is a renewable mouse resource that mimics the genetic diversity in humans. The recombinant inbred intercrosses (RIX) generated from CC recombinant inbred (RI) lines share similar genetic structures to those of F2 individuals. In contrast to F2 mice, genotypes of RIX can be inferred from the genotypes of their RI parents and can be produced repeatedly. Also, RIX mice do not typically share the same degree of relatedness. This unbalanced genetic relatedness requires careful statistical modeling to avoid a large number of false positive findings. For complex traits, mapping multiple genes simultaneously is arguably more powerful than mapping one gene at a time. In this article, we describe how we have developed a Bayesian quantitative trait locus (QTL) mapping method that simultaneously deals with the special genetic architecture of RIX and maps multiple genes. The performance of the proposed method is evaluated by extensive simulations. In addition, for a given set of RI lines, there are numerous ways to generate RIX samples. To provide a general guideline on future RIX studies, we compare several RIX designs through simulations.
机译:合作十字架(CC)是模仿人类遗传多样性的可再生鼠标资源。由CC重组自交系(RI)产生的重组自交系(RIX)与F2个体具有相似的遗传结构。与F2小鼠相反,RIX的基因型可以从其RI亲本的基因型中推断出来,并且可以重复产生。同样,RIX小鼠通常不具有相同程度的相关性。这种不平衡的遗传相关性需要仔细的统计模型,以避免大量的假阳性结果。对于复杂的性状,可以说同时定位多个基因比同时定位一个基因更有效。在本文中,我们描述了如何开发贝叶斯定量性状基因座(QTL)定位方法,该方法同时处理RIX的特殊遗传结构并绘制多个基因。通过广泛的仿真评估了所提出方法的性能。此外,对于一组给定的RI线,有多种生成RIX样本的方法。为了提供有关将来RIX研究的一般指南,我们通过仿真比较了几种RIX设计。

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