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Linking phylogenetics with population genetics to reconstruct the geographic origin of a species

机译:将系统遗传学与种群遗传学联系起来,以重建物种的地理起源

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Reconstructing ancestral geographic origins is critical for understanding the long-term evolution of a species. Bayesian methods have been proposed to test biogeographic hypotheses while accommodating uncertainty in phylogenetic reconstruction. However, the problem that certain taxa may have a disproportionate influence on conclusions has not been addressed. Here, we infer the geographic origin of Drosophila simulans using 2014 bp of the period locus from 63 lines collected from 18 countries. We also analyze two previously published datasets, alcohol dehydrogenase related and NADH:ubiquinone reductase 75 kDa subunit precursor. Phylogenetic inferences of all three loci support Madagascar as the geographic origin of D. simulans. Our phylogenetic conclusions are robust to taxon resampling and to the potentially confounding effects of recombination. To test our phylogenetically derived hypothesis we develop a randomization test of the population genetics prediction that sequences from the geographic origin should contain more genetic polymorphism than those from derived populations. We find that the Madagascar population has elevated genetic polymorphism relative to non-Madagascar sequences. These data are corroborated by mitochondrial DNA sequence data.
机译:重建祖先的地理起源对于理解物种的长期进化至关重要。已经提出了贝叶斯方法来测试生物地理学假设,同时适应系统发育重建中的不确定性。但是,尚未解决某些分类单元可能对结论产生不成比例的影响的问题。在这里,我们使用2014 bp的来自18个国家/地区的63条品系的时期位点推断果蝇的地理起源。我们还分析了两个以前发布的数据集,与酒精脱氢酶相关和NADH:泛醌还原酶75 kDa亚基前体。这三个基因座的系统发生论证都支持马达加斯加为拟南芥的地理起源。我们的系统进化论结论对于分类群重采样以及重组的潜在混杂影响是有力的。为了检验我们的系统发生学假设,我们对种群遗传学预测进行了一项随机化测试,该预测表明来自地理起源的序列应包含比来自起源种群的序列更多的遗传多态性。我们发现,相对于非马达加斯加序列,马达加斯加人口具有更高的遗传多态性。线粒体DNA序列数据证实了这些数据。

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