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The feedback between selection and demography shapes genomic diversity during coevolution

机译:选择和人口统计学之间的反馈影响了协同进化过程中的基因组多样性

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摘要

Species interactions and coevolution are integral to ecological communities, but we lack empirical information on when and how these interactions generate and purge genetic diversity. Using genomic time series data from host-virus experiments, we found that coevolution occurs through consecutive selective sweeps in both species, with temporal consistency across replicates. Sweeps were accompanied by phenotypic change (resistance or infectivity increases) and expansions in population size. In the host, population expansion enabled rapid generation of genetic diversity in accordance with neutral processes. Viral molecular evolution was, in contrast, confined to few genes, all putative targets of selection. This study demonstrates that molecular evolution during species interactions is shaped by both eco-evolutionary feedback dynamics and interspecific differences in how genetic diversity is generated and maintained.
机译:物种相互作用和协同进化是生态群落不可或缺的组成部分,但是我们缺乏有关这些相互作用何时以及如何产生和清除遗传多样性的经验信息。使用来自宿主病毒实验的基因组时间序列数据,我们发现共进化通过两个物种的连续选择性扫描发生,并且跨重复序列具有时间一致性。扫描伴随着表型的变化(耐药性或传染性增加)和种群规模的扩大。在东道国,人口膨胀使中性进程能够迅速产生遗传多样性。相比之下,病毒分子进化仅限于少数基因,所有假定的选择目标。这项研究表明,物种相互作用过程中的分子进化受到生态进化反馈动力学和遗传多样性产生和维持方式之间种间差异的影响。

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