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Integrating Phylogenetic and Population Genetic Analyses of Multiple Loci to Test Species Divergence Hypotheses in Passerina Buntings

机译:整合多个种群的系统发育和种群遗传分析,以测试百灵Bun中的物种发散假设

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摘要

Phylogenetic and population genetic analyses of DNA sequence data from 10 nuclear loci were used to test species divergence hypotheses within Passerina buntings, with special focus on a strongly supported, but controversial, sister relationship between Passerina amoena and P. caerulea inferred from a previous mitochondrial study. Here, a maximum-likelihood analysis of a concatenated 10-locus data set, as well as minimize-deep-coalescences and maximum-likelihood analyses of the locus-specific gene trees, recovered the traditional sister relationship between P. amoena and P. cyanea. In addition, a more recent divergence time estimate between P. amoena and P. cyanea than between P. amoena and P. caerulea provided evidence for the traditional sister relationship. These results provide a compelling example of how lineage sorting stochasticity can lead to incongruence between gene trees and species trees, and illustrate how phylogenetic and population genetic analyses can be integrated to investigate evolutionary relationships between recently diverged taxa.
机译:对来自10个核基因座的DNA序列数据进行系统发育和种群遗传学分析,以检验Passerina旗布内的物种差异假设,并特别关注由先前的线粒体研究推断出的Passerina amoena和Caerulea之间强烈支持但存在争议的姐妹关系。 。在这里,对一个连锁的10位基因组数据集的最大似然分析,以及对基因座特定基因树的最小深度合并和最大似然分析,恢复了传统的桃金娘和青霉之间的姐妹关系。 。此外,相比于P. amoena和P. caerulea,Amoena和P. cyanea之间最近的发散时间估计为传统的姐妹关系提供了证据。这些结果提供了一个令人信服的例子,说明谱系排序的随机性如何导致基因树和物种树之间的不一致,并说明了如何将系统发育和种群遗传学分析相结合,以研究最近不同分类群之间的进化关系。

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