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Landscape relatedness : detecting contemporary fine-scale spatial structure in wild populations

机译:景观相关性:检测野生种群中当代精细尺度的空间结构

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摘要

Methods for detecting contemporary, fine-scale population genetic structure in continuous populations are scarce. Yet such methods are vital for ecological and conservation studies, particularly under a changing landscape. Here we present a novel, spatially explicit method that we call landscape relatedness (LandRel). With this method, we aim to detect contemporary, fine-scale population structure that is sensitive to spatial and temporal changes in the landscape. We interpolate spatially determined relatedness values based on SNP genotypes across the landscape. Interpolations are calculated using the Bayesian inference approach integrated nested Laplace approximation. We empirically tested this method on a continuous population of brown bears (Ursus arctos) spanning two counties in Sweden. Two areas were identified as differentiated from the remaining population. Further analysis suggests that inbreeding has occurred in at least one of these areas. LandRel enabled us to identify previously unknown fine-scale structuring in the population. These results will help direct future research efforts, conservation action and aid in the management of the Scandinavian brown bear population. LandRel thus offers an approach for detecting subtle population structure with a focus on contemporary, fine-scale analysis of continuous populations.
机译:缺乏检测连续种群中当代精细规模种群遗传结构的方法。然而,这些方法对于生态和保护研究至关重要,尤其是在不断变化的环境下。在这里,我们提出了一种新颖的空间显式方法,称为景观相关性(LandRel)。通过这种方法,我们旨在检测对景观的时空变化敏感的当代精细规模的人口结构。我们根据整个景观的SNP基因型对空间确定的相关性值进行插值。插值是使用贝叶斯推断方法集成的嵌套拉普拉斯近似值计算的。我们对横跨瑞典两个县的连续棕熊(Ursus arctos)种群进行了实证测试。确定了与其余人口不同的两个地区。进一步的分析表明,近亲繁殖至少发生在这些地区之一。 LandRel使我们能够识别人口中以前未知的精细结构。这些结果将有助于指导未来的研究工作,保护行动并帮助管理斯堪的纳维亚棕熊种群。因此,LandRel提供了一种检测细微人口结构的方法,重点是对连续人口进行当代,精细的分析。

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