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The relative influence of habitat amount and configuration on genetic structure across multiple spatial scales

机译:生境数量和配置对多个空间尺度上遗传结构的相对影响

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AbstractDespite strong interest in understanding how habitat spatial structure shapes the genetics of populations, the relative importance of habitat amount and configuration for patterns of genetic differentiation remains largely unexplored in empirical systems. In this study, we evaluate the relative influence of, and interactions among, the amount of habitat and aspects of its spatial configuration on genetic differentiation in the pitcher plant midge, Metriocnemus knabi. Larvae of this species are found exclusively within the water-filled leaves of pitcher plants (Sarracenia purpurea) in a system that is naturally patchy at multiple spatial scales (i.e., leaf, plant, cluster, peatland). Using generalized linear mixed models and multimodel inference, we estimated effects of the amount of habitat, patch size, interpatch distance, and patch isolation, measured at different spatial scales, on genetic differentiation (FST) among larval samples from leaves within plants, plants within clusters, and clusters within peatlands. Among leaves and plants, genetic differentiation appears to be driven by female oviposition behaviors and is influenced by habitat isolation at a broad (peatland) scale. Among clusters, gene flow is spatially restricted and aspects of both the amount of habitat and configuration at the focal scale are important, as is their interaction. Our results suggest that both habitat amount and configuration can be important determinants of genetic structure and that their relative influence is scale dependent.
机译:摘要尽管对了解栖息地空间结构如何影响种群遗传学的兴趣浓厚,但在经验系统中仍未充分探索栖息地数量和配置对遗传分化模式的相对重要性。在这项研究中,我们评估了捕虫笼中的Metriocnemus knabi的生境及其空间配置方面对遗传分化的相对影响和相互作用。该物种的幼虫仅存在于捕虫草(Sarracenia purpurea)的充满水的叶子中,该系统在多个空间尺度上(例如,叶子,植物,簇,泥炭地)自然斑片。使用广义线性混合模型和多模型推断,我们估计了不同空间尺度下生境的数量,斑块大小,斑块间距离和斑块隔离对幼虫遗传分化(F ST )的影响来自植物内叶,簇内植物和泥炭地内簇的样品。在叶片和植物之间,遗传分化似乎是由女性的排卵行为驱动的,并且受到广泛(草原)规模上栖息地隔离的影响。在簇之间,基因流在空间上受到限制,并且在焦点规模上,栖息地数量和配置方面的方面都很重要,它们的相互作用也很重要。我们的结果表明,栖息地的数量和配置都可能是遗传结构的重要决定因素,并且它们的相对影响是与规模有关的。

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