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A mitochondrial phylogeographic scenario for the most widespread African rodent, Mastomys natalensis

机译:最普遍的非洲啮齿动物纳塔斯线虫的线粒体系统学情况

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摘要

In order to evaluate the contribution of geological, environmental, and climatic changes to the spatial distribution of genetic variation of Mastomys natalensis, we analysed cytochrome b sequences from the whole distribution area of the species to infer its phylogeographic structure and historical demography. Six well-supported phylogroups, differentiated during the Pleistocene, were evidenced. No significant correlation between genetic and geographic distances was found at the continental scale, and the geographic distributions of the observed phylogroups have resulted from extensive periods of isolation caused by the presence of putative geographic and ecological barriers. The diversification events were probably influenced by habitat contraction/expansion cycles that may have complemented topographic barriers to induce genetic drift and lineage sorting.According to our results, we propose a scenario where climate-driven processes may have played a primary role in the differentiation among phylogroups.
机译:为了评估地质,环境和气候变化对纳塔氏菌遗传变异空间分布的贡献,我们分析了该物种整个分布区域的细胞色素b序列,以推断其谱系结构和历史人口统计学。证实了在更新世期间分化的六个良好支持的系统群。在大陆范围内,没有发现遗传距离与地理距离之间的显着相关性,并且观察到的系统群的地理分布是由于存在假定的地理和生态障碍而导致的广泛隔离所致。多样性事件可能受到栖息地收缩/扩展周期的影响,而栖息地收缩/扩展周期可能补充了地形障碍,从而导致遗传漂移和谱系分类。根据我们的结果,我们提出了一种情景,其中气候驱动的过程可能在不同物种之间的分化中起主要作用系统群。

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