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The Effects of Dominance Regular Inbreeding and Sampling Design on QST an Estimator of Population Differentiation for Quantitative Traits

机译:优势常规近交和抽样设计对QST的影响QST是数量性状种群差异的估计量

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摘要

To test whether quantitative traits are under directional or homogenizing selection, it is common practice to compare population differentiation estimates at molecular markers (FST) and quantitative traits (QST). If the trait is neutral and its determinism is additive, then theory predicts that QST = FST, while QST > FST is predicted under directional selection for different local optima, and QST < FST is predicted under homogenizing selection. However, nonadditive effects can alter these predictions. Here, we investigate the influence of dominance on the relation between QST and FST for neutral traits. Using analytical results and computer simulations, we show that dominance generally deflates QST relative to FST. Under inbreeding, the effect of dominance vanishes, and we show that for selfing species, a better estimate of QST is obtained from selfed families than from half-sib families. We also compare several sampling designs and find that it is always best to sample many populations (>20) with few families (five) rather than few populations with many families. Provided that estimates of QST are derived from individuals originating from many populations, we conclude that the pattern QST > FST, and hence the inference of directional selection for different local optima, is robust to the effect of nonadditive gene actions.
机译:为了测试定量性状是在定向选择下还是在均质选择下,通常的做法是比较分子标记(FST)和定量性状(QST)上的种群分化估计值。如果特征是中性且确定性是可加的,则理论预测QST = FST,而对于不同的局部最优,在方向选择下预测QST> FST,而在均质选择下预测QST 20),而不是抽样几个家庭的人口。假设QST的估计值来自于许多人群中的个体,我们得出的结论是,模式QST> FST,因此对不同局部最优值进行方向选择的推论,对非加性基因作用的效果很强。

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