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酵母无性繁殖种群的种群划分和适应性。

Population subdivision and adaptation in asexual populations of Saccharomyces cerevisiae.

机构信息

Department of Organismic and Evolutionary Biology, Harvard University, Cambridge, MA 02138, USA.

出版信息

Evolution. 2012 Jun;66(6):1931-41. doi: 10.1111/j.1558-5646.2011.01569.x. Epub 2012 Feb 17.

Abstract

Population subdivision limits competition between individuals, which can have a profound effect on adaptation. Subdivided populations maintain more genetic diversity at any given time compared to well-mixed populations, and thus "explore" larger parts of the genotype space. At the same time, beneficial mutations take longer to spread in such populations, and thus subdivided populations do not "exploit" discovered mutations as efficiently as well-mixed populations. Whether subdivision inhibits or promotes adaptation in a given environment depends on the relative importance of exploration versus exploitation, which in turn depends on the structure of epistasis among beneficial mutations. Here we investigate the relative importance of exploration versus exploitation for adaptation by evolving 976 independent asexual populations of budding yeast with several degrees of geographic subdivision. We find that subdivision systematically inhibits adaptation: even the luckiest demes in subdivided populations on average fail to discover genotypes that are fitter than those discovered by well-mixed populations. Thus, exploitation of discovered mutations is more important for adaptation in our system than a thorough exploration of the mutational neighborhood, and increasing subdivision slows adaptation.

摘要

种群分化限制了个体间的竞争,这对适应有深远的影响。与充分混合的种群相比,分化的种群在任何给定的时间内都能保持更多的遗传多样性,因此“探索”更大的基因型空间。同时,有益突变在这样的种群中传播需要更长的时间,因此分化的种群不像充分混合的种群那样有效地“利用”已发现的突变。在特定环境中,种群分化是抑制还是促进适应取决于探索与利用的相对重要性,而这又取决于有益突变之间的表型关联结构。在这里,我们通过进化具有不同程度地理分化的 976 个独立的出芽酵母无性繁殖种群,研究了探索与利用对适应的相对重要性。我们发现,种群分化系统地抑制了适应:即使是在分化种群中最幸运的小种群,它们平均也无法发现比充分混合种群中发现的更适应的基因型。因此,在我们的系统中,利用已发现的突变对适应比彻底探索突变邻域更为重要,而增加种群分化会减缓适应。

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