【2h】

Soft Sweeps

机译:轻扫

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摘要

A population can adapt to a rapid environmental change or habitat expansion in two ways. It may adapt either through new beneficial mutations that subsequently sweep through the population or by using alleles from the standing genetic variation. We use diffusion theory to calculate the probabilities for selective adaptations and find a large increase in the fixation probability for weak substitutions, if alleles originate from the standing genetic variation. We then determine the parameter regions where each scenario—standing variation vs. new mutations—is more likely. Adaptations from the standing genetic variation are favored if either the selective advantage is weak or the selection coefficient and the mutation rate are both high. Finally, we analyze the probability of “soft sweeps,” where multiple copies of the selected allele contribute to a substitution, and discuss the consequences for the footprint of selection on linked neutral variation. We find that soft sweeps with weaker selective footprints are likely under both scenarios if the mutation rate and/or the selection coefficient is high.
机译:人口可以通过两种方式适应快速的环境变化或栖息地扩展。它可以通过随后遍及种群的新的有益突变或通过使用来自常规遗传变异的等位基因来适应。我们使用扩散理论来计算选择性适应的概率,如果等位基因源自站立的遗传变异,则弱替代的固定概率会大大提高。然后,我们确定每个场景(包括变异与新突变)更有可能出现的参数区域。如果选择优势较弱或选择系数和突变率均较高,则倾向于从常规遗传变异中进行适应。最后,我们分析了“软扫描”的可能性,其中选定等位基因的多个拷贝有助于替代,并讨论了连锁中性变异对选择足迹的影响。我们发现,如果突变率和/或选择系数很高,则在两种情况下都有可能具有较弱的选择足迹的软扫描。

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