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Partitioning drivers of spatial genetic variation for a continuously distributed population of boreal caribou: Implications for management unit delineation

机译:连续分布的北驯鹿种群空间遗传变异的驱动因素:对管理单位划分的启示

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摘要

Isolation by distance (IBD) is a natural pattern not readily incorporated into theoretical models nor traditional metrics for differentiating populations, although clinal genetic differentiation can be characteristic of many wildlife species. Landscape features can also drive population structure additive to baseline IBD resulting in differentiation through isolation‐by‐resistance (IBR). We assessed the population genetic structure of boreal caribou across western Canada using nonspatial (STRUCTURE) and spatial (MEMGENE) clustering methods and investigated the relative contribution of IBD and IBR on genetic variation of 1,221 boreal caribou multilocus genotypes across western Canada. We further introduced a novel approach to compare the partitioning of individuals into management units (MU) and assessed levels of genetic connectivity under different MU scenarios. STRUCTURE delineated five genetic clusters while MEMGENE identified finer‐scale differentiation across the study area. IBD was significant and did not differ for males and females both across and among detected genetic clusters. MEMGENE landscape analysis further quantified the proportion of genetic variation contributed by IBD and IBR patterns, allowing for the relative importance of spatial drivers, including roads, water bodies, and wildfires, to be assessed and incorporated into the characterization of population structure for the delineation of MUs. Local population units, as currently delineated in the boreal caribou recovery strategy, do not capture the genetic variation and connectivity of the ecotype across the study area. Here, we provide the tools to assess fine‐scale spatial patterns of genetic variation, partition drivers of genetic variation, and evaluate the best management options for maintaining genetic connectivity. Our approach is highly relevant to vagile wildlife species that are of management and conservation concern and demonstrate varying degrees of IBD and IBR with clinal spatial genetic structure that challenges the delineation of discrete population boundaries.
机译:尽管近缘遗传分化可能是许多野生物种的特征,但按距离隔离(IBD)是一种自然模式,不易纳入理论模型或传统指标来区分种群。景观特征还可以将种群结构添加到基线IBD,从而通过抗隔离(IBR)进行区分。我们使用非空间(STRUCTURE)和空间(MEMGENE)聚类方法评估了加拿大西部北方驯鹿的种群遗传结构,并研究了IBD和IBR对加拿大西部1,221个北方驯鹿多基因座基因型遗传变异的相对贡献。我们进一步引入了一种新颖的方法来比较将个人划分为管理单位(MU)的情况,并评估了不同MU情况下的遗传连通性水平。结构描绘了五个遗传簇,而MEMGENE在整个研究区域发现了更细微的分化。在检测到的基因簇之间以及在检测到的遗传簇之间,男性和女性的IBD均显着且无差异。 MEMGENE景观分析进一步量化了由IBD和IBR模式贡献的遗传变异的比例,从而可以评估包括道路,水体和野火在内的空间驱动因素的相对重要性,并将其纳入描述种群结构的特征中MU。当前在北方驯鹿恢复策略中所描述的当地人口单位并未捕获整个研究区域内生态型的遗传变异和连通性。在这里,我们提供了工具来评估遗传变异的精细空间格局,遗传变异的分区驱动程序,并评估维持遗传连通性的最佳管理方案。我们的方法与易变的野生动植物物种密切相关,这些物种具有管理和保护意义,并证明不同程度的IBD和IBR的临床空间遗传结构挑战了离散种群边界的划分。

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