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Evolutionary rescue in randomly mating, selfing, and clonal populations

机译:随机交配,自我和克隆人群的进化救援

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Severe environmental change can drive a population extinct unless the population adapts in time to the new conditions (“evolutionary rescue”). How does biparental sexual reproduction influence the chances of population persistence compared to clonal reproduction or selfing? In this article, we set up a one-locus two-allele model for adaptation in diploid species, where rescue is contingent on the establishment of the mutant homozygote. Reproduction can occur by random mating, selfing, or clonally. Random mating generates and destroys the rescue mutant; selfing is efficient at generating it but at the same time depletes the heterozygote, which can lead to a low mutant frequency in the standing genetic variation. Due to these (and other) antagonistic effects, we find a nontrivial dependence of population survival on the rate of sex/selfing, which is strongly influenced by the dominance coefficient of the mutation before and after the environmental change. Importantly, since mating with the wild-type breaks the mutant homozygote up, a slow decay of the wild-type population size can impede rescue in randomly mating populations.
机译:严重的环境变化可以驱使人口灭绝,除非人口及时适应新条件(“进化救援”)。与克隆生殖或自行相比,婴儿进步如何影响人口持久性的机会?在本文中,我们建立了一个轨迹的两位等位基因模型,用于改编二倍体物种,其中救援在于建立突变纯粹的纯合理。通过随机交配,自行或克隆,可以发生再现。随机交配产生并摧毁救援突变体;自我在产生它时是有效的,但同时耗尽杂合子,这可以导致驻留遗传变异中的低突变频率。由于这些(和其他)拮抗作用,我们发现人口生存对性别/自行率的非依赖性,这受环境变化前后突变的优势系数强烈影响。重要的是,由于与野生型交配的突变型均匀,野生型群体的缓慢衰减可以阻碍随机交配群体中的拯救。

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