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Adaptation varies through space and time in a coevolving host-parasitoid interaction

机译:适应在空间和时间中在共同进化的宿主-寄生虫相互作用中变化

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One of the central challenges of evolutionary biology is to understand how coevolution organizes biodiversity over complex geographic landscapes. Most species are collections of genetically differentiated populations, and these populations have the potential to become adapted to their local environments in different ways. The geographic mosaic theory of coevolution incorporates this idea by proposing that spatial variation in natural selection and gene flow across a landscape can shape local coevolutionary dynamics(1-7). These effects may be particularly strong when populations differ across productivity gradients, where gene flow will often be asymmetric among populations(8). Conclusive empirical tests of this theory have been particularly difficult to perform because they require knowledge of patterns of gene flow, historical population relationships and local selection pressures(2). We have tested these predictions empirically using a model community of bacteria and bacteriophage ( viral parasitoids of bacteria). We show that gene flow across a spatially structured landscape alters coevolution of parasitoids and their hosts and that the resulting patterns of adaptation can fluctuate in both space and time.
机译:进化生物学的主要挑战之一是要了解协同进化如何在复杂的地理景观上组织生物多样性。大多数物种是遗传分化种群的集合,这些种群具有以不同方式适应当地环境的潜力。协同进化的地理镶嵌理论通过提出自然选择中的空间变化和跨景观的基因流可以塑造局部协同进化动力学(1-7),从而融入了这一思想。当种群之间的生产率梯度不同时,这些效应可能会特别强烈,因为种群之间的基因流通常是不对称的(8)。该理论的结论性实证检验尤其困难,因为它们需要了解基因流的模式,历史种群关系和局部选择压力(2)。我们已经使用细菌和噬菌体(细菌的病毒寄生虫)的模型群落以经验方式测试了这些预测。我们表明,基因流跨空间结构化景观改变了寄生虫及其宿主的协同进化,并且所产生的适应性模式可以在空间和时间中波动。

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