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Starvation-Induced Reproductive Isolation in Yeast

机译:饥饿诱导的酵母生殖分离

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Speciation in eukaryotes is one of the central issues in evolutionary biology. Retrospective studies of existing species may not reveal the molecular events underlying speciation, as it is frequently impossible to distinguish changes which preceded speciation from those which happened after speciation has occurred. We propose a model for experimental speciation using a well-studied Eukaryotic organism, the yeast Saccharomyces cerevisiae, and starvation as an agent of speciation. Starvation can be viewed as a general and widespread consequence of catastrophic environmental change that leads to a decrease in survival or reproductive success. We find that yeast populations subjected to a month-long starvation exhibit a drastic increase in genomic rearrangements compared with a modest increase in point mutation. We subsequently find that starved yeast populations become reproductively isolated from their ancestor, which we attribute to chromosomal abnormalities in the starved clones' genomes. Our model provides direct molecular evidence - that speciation can rapidly occur without the precondition of geographic separation or divergent selection.
机译:真核生物的形态是进化生物学中的核心问题之一。对现有物种的回顾性研究可能没有揭示潜在的形态的分子事件,因为它通常不可能区分先前的改变的改变,这些改变是在发生了物种之后发生的那些。我们向使用良好的真核生物,酵母酿酒酵母酿酒酵母和饥饿作为物种代理商,提出了一种模型。饥饿可以被视为灾难性环境变化的一般和广泛的结果,导致生存或生殖成功的减少。我们发现,与点突变的适度增加,酵母群受到一个月长的饥饿表现出基因组重排的激烈增加。我们随后发现饥饿的酵母种群从他们的祖先孤立生殖,我们将饥饿克隆基因组的染色体异常归因于染色体异常。我们的模型提供了直接的分子证据 - 在没有地理分离或分歧的选择的情况下,可以迅速发生。

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