首页> 外文期刊>Evolution: International Journal of Organic Evolution >Genetic variation in pleiotropy: Differential epistasis as a source of variation in the allometric relationship between long bone lengths and body weight
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Genetic variation in pleiotropy: Differential epistasis as a source of variation in the allometric relationship between long bone lengths and body weight

机译:多效性的遗传变异:差异上位是长骨长度与体重之间异位关系变异的来源

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Pleiotropy is an aspect of genetic architecture underlying the phenotypic covariance structure. The presence of genetic variation in pleiotropy is necessary for natural selection to shape patterns of covariation between traits. We examined the contribution of differential epistasis to variation in the intertrait relationship and the nature of this variation. Genetic variation in pleiotropy was revealed by mapping quantitative trait loci (QTLs) affecting the allometry of mouse limb and tail length relative to body weight in the mouse-inbred strain LG/J by SM/J intercross. These relationship QTLs (rQTLs) modify relationships between the traits affected by a common pleiotropic locus. We detected 11 rQTLs, mostly affecting allometry of multiple bones. We further identified epistatic interactions responsible for the observed allometric variation. Forty loci that interact epistatically with the detected rQTLs were identified. We demonstrate how these epistatic interactions differentially affect the body size variance and the covariance of traits with body size. We conclude that epistasis, by differentially affecting both the canalization and mean values of the traits of a pleiotropic domain, causes variation in the covariance structure. Variation in pleiotropy maintains evolvability of the genetic architecture, in particular the evolvability of its modular organization.
机译:多效性是表型协方差结构基础的遗传结构的一个方面。多态性中遗传变异的存在对于自然选择以塑造性状之间的协变模式是必要的。我们研究了差异上位性对两性关系变化和变化本质的贡献。通过绘制定量性状位点(QTL),通过SM / J杂交对影响小鼠近交系LG / J的肢体和尾巴长度相对于体重的变长的定量特征位点揭示了多效性的遗传变异。这些关系QTL(rQTL)修改了受多效性基因座影响的性状之间的关系。我们检测到11个rQTL,主要影响多个骨骼的异形。我们进一步确定了上位相互作用对观察到的异位变异负责。鉴定了40个与检测到的rQTL发生上位相互作用的基因座。我们证明了这些上位性相互作用如何差异地影响体型变异和性状与体型的协方差。我们得出结论,通过差异影响多效域特征的渠化和平均值,上位性会导致协方差结构发生变化。多效性的变化保持了遗传结构的可进化性,特别是其模块化组织的可进化性。

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