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Implications of introgression for wildlife translocations: the case of North American martens

机译:渗入对野生动物易位的影响:以北美貂为例

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The evolutionary consequences of natural introgression provide a rare opportunity to retrospectively evaluate how the introduction of exotics or genetic rescue efforts may impact endemic faunas. Phylogeographic structure among mainland, endemic insular, and introduced North American marten (Martes americana and M. caurina) populations have been shaped by a complex history of natural, post-glacial population expansion followed by a series of anthropogenic introductions. In some cases, both natural colonization and translocations facilitated secondary contact, offering a series of replicated experiments that demonstrate how introgression, in these cases following isolation (insular and refugial), shapes genetic diversity. We test whether genetic exchange is occurring between North American marten species using mitochondrial genomes and ten nuclear loci. We present evidence of biased nuclear introgression from M. caurina into M. americana across two natural hybrid zones (insular and mainland) and found no remnant evidence of M. caurina on islands that received M. americana translocations, suggesting prior absence, potential extirpation, or genetic swamping of M. caurina from these islands. Our results highlight the importance of understanding phylogeographic variation prior to identifying source populations for wildlife translocations and caution the use of genetic rescue for North American marten populations. Although previously managed as a single species, these two species show substantial genetic divergence. When the two are placed into contact, they exhibit unidirectional, asymmetric introgression with potentially negative consequences for M. caurina, underscoring the value of mindful consideration of introgression in wildlife management.
机译:自然渗入的进化后果提供了一个难得的机会,可以回顾性地评估引入外来物种或基因拯救工作如何影响特有动物群。大陆、地方性岛屿和引进的北美貂(Martes americana 和 M. caurina)种群的系统地理结构是由自然的、后冰期的种群扩张的复杂历史以及随后的一系列人为引入所塑造的。在某些情况下,自然定植和易位都促进了二次接触,提供了一系列重复的实验,展示了在这些情况下,在隔离(孤立和避难所)之后,渗入如何塑造遗传多样性。我们使用线粒体基因组和十个核位点测试北美貂物种之间是否发生遗传交换。我们提出了从考里纳分枝杆菌到美洲分枝杆菌跨越两个自然杂交带(岛屿和大陆)的有偏见的核渗入的证据,并且在接受美洲分枝杆菌易位的岛屿上没有发现分枝杆菌的残余证据,这表明这些岛屿上存在过 M. caurina 的缺失、潜在灭绝或遗传淹没。我们的研究结果强调了在确定野生动物易位的来源种群之前了解系统地理变异的重要性,并警告对北美貂种群使用遗传救援。虽然以前作为单一物种进行管理,但这两个物种显示出巨大的遗传差异。当两者接触时,它们表现出单向、不对称的渗入,对 M. caurina 有潜在的负面影响,强调了在野生动物管理中谨慎考虑渗入的价值。

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