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Combining Data From Multiple Inbred Line Crosses Improves the Power and Resolution of Quantitative Trait Loci Mapping

机译:结合来自多个自交系杂交的数据提高了数量性状位点定位的能力和分辨率

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摘要

Rodent inbred line crosses are widely used to map genetic loci associated with complex traits. This approach has proven to be powerful for detecting quantitative trait loci (QTL); however, the resolution of QTL locations, typically ∼20 cM, means that hundreds of genes are implicated as potential candidates. We describe analytical methods based on linear models to combine information available in two or more inbred line crosses. Our strategy is motivated by the hypothesis that common inbred strains of the laboratory mouse are derived from a limited ancestral gene pool and thus QTL detected in multiple crosses are likely to represent shared ancestral polymorphisms. We demonstrate that the combined-cross analysis can improve the power to detect weak QTL, can narrow support intervals for QTL regions, and can be used to separate multiple QTL that colocalize by chance. Moreover, combined-cross analysis can establish the allelic states of a QTL among a set of parental lines, thus providing critical information for narrowing QTL regions by haplotype analysis.
机译:啮齿动物近交系杂交被广泛用于绘制与复杂性状相关的遗传基因座。事实证明,这种方法对于检测数量性状基因座(QTL)具有强大的功能。但是,QTL位置的解析(通常约为20 cM)意味着有数百个基因可能参与候选。我们描述基于线性模型的分析方法,以结合两个或多个自交系杂交中可用的信息。我们的策略是基于以下假设:实验室老鼠的常见近交系源自有限的祖先基因库,因此在多个杂交中检测到的QTL可能代表了共同的祖先多态性。我们证明了组合交叉分析可以提高检测弱QTL的能力,可以缩小QTL区域的支持间隔,并且可以用于分离偶然共定位的多个QTL。此外,组合杂交分析可以在一组亲本系中建立QTL的等位基因状态,从而为通过单倍型分析缩小QTL区域提供关键信息。

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