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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Genetic Paths to Evolutionary Rescue and the Distribution of Fitness Effects Along Them
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Genetic Paths to Evolutionary Rescue and the Distribution of Fitness Effects Along Them

机译:进化救援的遗传途径和沿着它们的健身效应分布

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摘要

The past century has seen substantial theoretical and empirical progress on the genetic basis of adaptation. Over this same period, a pressing need to prevent the evolution of drug resistance has uncovered much about the potential genetic basis of persistence in declining populations. However, we have little theory to predict and generalize how persistence-by sufficiently rapid adaptation-might be realized in this explicitly demographic scenario. Here, we use Fisher's geometric model with absolute fitness to begin a line of theoretical inquiry into the genetic basis of evolutionary rescue, focusing here on asexual populations that adapt through de novo mutations. We show how the dominant genetic path to rescue switches from a single mutation to multiple as mutation rates and the severity of the environmental change increase. In multi-step rescue, intermediate genotypes that themselves go extinct provide a "springboard" to rescue genotypes. Comparing to a scenario where persistence is assured, our approach allows us to quantify how a race between evolution and extinction leads to a genetic basis of adaptation that is composed of fewer loci of larger effect. We hope this work brings awareness to the impact of demography on the genetic basis of adaptation.
机译:过去的世纪已经看到了适应遗传基础的实质性理论和实证进展。在同一时期,压迫需要防止耐药性的进化已经揭开了持续性持续下降的潜在遗传基础。然而,我们有很少的理论来预测和推广如何通过足够快速的适应 - 在这一明确的人口方案中可以实现。在这里,我们使用Fisher的几何模型具有绝对的健身,从进化救援的遗传基础开始一个理论询问,重点是通过De Novo突变调整的无性群体。我们展示了如何从单一突变开始从单一突变到多个突变率和环境变化的严重程度的转换。在多步骤救援中,他们自己灭绝的中间基因型提供了“跳板”来拯救基因型。与持久性保证的情景相比,我们的方法使我们能够量化进化和灭绝之间的种族如何导致适应的遗传基础,这些基因由较小效果的基因率较少。我们希望这项工作提请对人口统计对适应遗传基础的影响。

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