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Spatial patterns and conservation of genetic and phylogenetic diversity of wildlife in China

机译:中国野生动物遗传和系统发育多样性的空间模式与保护

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摘要

Genetic diversity and phylogenetic diversity reflect the evolutionary potential and history of species, respectively. However, the levels and spatial patterns of genetic and phylogenetic diversity of wildlife at the regional scale have largely remained unclear. Here, we performed meta-analyses of genetic diversity in Chinese terrestrial vertebrates based on three genetic markers and investigated their phylogenetic diversity based on a dated phylogenetic tree of 2461 species. We detected strong positive spatial correlations among mitochondrial DNA-based genetic diversity, phylogenetic diversity, and species richness. Moreover, the terrestrial vertebrates harbored higher genetic and phylogenetic diversity in South China and Southwest China than in other regions. Last, climatic factors (precipitation and temperature) had significant positive effects while altitude and human population density had significant negative impacts on levels of mitochondrial DNA-based genetic diversity in most cases. Our findings will help guide national-level genetic diversity conservation plans and a post-2020 biodiversity conservation framework.
机译:遗传多样性和系统发育多样性分别反映了物种的进化潜力和历史。然而,区域规模野生动物遗传和系统发育多样性的水平和空间模式在很大程度上尚不清楚。在这里,基于三种遗传标记的三种遗传标记,对中国陆地脊椎动物的遗传多样性进行了荟萃分析,并基于2461种的日期系统发育树研究了它们的系统发育多样性。我们检测了线粒体DNA的遗传多样性,系统发育多样性和物种丰富度强的正空间相关性。此外,陆地脊椎动物在中国和西南部的遗传和系统发育多样性而不是其他地区。最后,气候因子(沉淀和温度)具有显着的积极作用,而大多数情况下,高度和人口密度对线粒体DNA的遗传多样性的水平具有显着的负面影响。我们的调查结果将帮助指导国家级遗传多样性保护计划和2020年后生物多样性保护框架。

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