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The effect of collective dispersal on the genetic structure of a subdivided population

机译:集体分散对细分人群遗传结构的影响

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Correlated dispersal paths between two or more individuals are widespread across many taxa. The population genetic implications of this collective dispersal have received relatively little attention. Here we develop two-sample coalescent theory that incorporates collective dispersal in a finite island model to predict expected coalescence times, genetic diversities, and F-statistics. We show that collective dispersal reduces mixing in the system, which decreases expected coalescence times and increases F_(ST). The effects are strongest in systems with high migration rates. Collective dispersal breaks the invariance of within-deme coalescence times to migration rate, whatever the deme size. It can also cause F_(ST) to increase with migration rate because the ratio of within- to between-deme coalescence times can decrease as migration rate approaches unity. This effect is most biologically relevant when deme size is small. We find qualitatively similar results for diploid and gametic dispersal. We also demonstrate with simulations and analytical theory the strong similarity between the effects of collective dispersal and anisotropic dispersal. These findings have implications for our understanding of the balance between drift-migration-mutation in models of neutral evolution. This has applied consequences for the interpretation of genetic structure (e.g., chaotic genetic patchiness) and estimation of migration rates from genetic data.
机译:两个或多个个体之间的相关扩散路径在许多分类单元中均很普遍。这种集体传播的群体遗传学意义受到的关注相对较少。在这里,我们开发了两个样本的合并理论,该理论在有限的岛模型中结合了集体扩散,以预测预期的合并时间,遗传多样性和F统计量。我们表明,集体分散减少了系统中的混合,从而减少了预期的聚结时间并增加了F_(ST)。在迁移率高的系统中,效果最明显。不论色散大小如何,集体分散都可以打破色散内聚结时间对迁移速率的不变性。这也可能导致F_(ST)随着迁移率的增加而增加,因为随着迁移率趋于统一,内部与内部之间的聚结时间之比会降低。当行为规模较小时,此效应在生物学上最相关。我们发现二倍体和配子的扩散在质量上相似。我们还通过仿真和分析理论证明了集体扩散与各向异性扩散之间的强相似性。这些发现对我们理解中性进化模型中的漂移-迁移-突变之间的平衡具有启示意义。这对遗传结构的解释(例如混乱的遗传斑驳)和从遗传数据估计迁移率产生了后果。

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