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首页> 外文期刊>Journal of evolutionary biology >Sex-biased genetic component distribution among populations: Additive genetic and maternal contributions to phenotypic differences among populations of Chinook salmon
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Sex-biased genetic component distribution among populations: Additive genetic and maternal contributions to phenotypic differences among populations of Chinook salmon

机译:种群之间性别偏向的遗传成分分布:奇努克鲑鱼种群表型差异的遗传和母性贡献

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摘要

An approach frequently used to demonstrate a genetic basis for population-level phenotypic differences is to employ common garden rearing designs, where observed differences are assumed to be attributable to primarily additive genetic effects. Here, in two common garden experiments, we employed factorial breeding designs between wild and domestic, and among wild populations of Chinook salmon (Oncorhynchus tshawytscha). We measured the contribution of additive (V _A) and maternal (V _M) effects to the observed population differences for 17 life history and fitness-related traits. Our results show that, in general, maternal effects contribute more to phenotypic differences among populations than additive genetic effects. These results suggest that maternal effects are important in population phenotypic differentiation and also signify that the inclusion of the maternal source of variation is critical when employing models to test population differences in salmon, such as in local adaptation studies.
机译:经常用来证明人群水平表型差异的遗传基础的方法是采用常见的花园饲养设计,其中观察到的差异被认为主要归因于加性遗传效应。在这里,在两个常见的花园实验中,我们在野生和家养之间以及奇努克鲑(Oncorhynchus tshawytscha)的野生种群之间进行了因子繁殖设计。我们测量了累加(V _A)和母亲(V _M)效应对观察到的17种生活史和与健身相关的性状的差异的影响。我们的研究结果表明,总体而言,母体效应比群体遗传效应对人口表型差异的贡献更大。这些结果表明,母体效应在种群表型分化中很重要,也表明在采用模型测试鲑鱼种群差异时,例如在局部适应研究中,母体变异源的纳入至关重要。

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