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首页> 外文期刊>Molecular phylogenetics and evolution >Free from mitochondrial DNA: Nuclear genes and the inference of species trees among closely related darter lineages (Teleostei: Percidae: Etheostomatinae)
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Free from mitochondrial DNA: Nuclear genes and the inference of species trees among closely related darter lineages (Teleostei: Percidae: Etheostomatinae)

机译:不受线粒体DNA的影响:核基因和亲缘关系较近的镖族之间的树种推断(Teleostei:Percidae:Etheostomatinae)

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Investigations into the phylogenetics of closely related animal species are dominated by the use of mitochondrial DNA (mtDNA) sequence data. However, the near-ubiquitous use of mtDNA to infer phylogeny among closely related animal lineages is tempered by an increasing number of studies that document high rates of transfer of mtDNA genomes among closely related species through hybridization, leading to substantial discordance between phylogenies inferred from mtDNA and nuclear gene sequences. In addition, the recent development of methods that simultaneously infer a species phylogeny and estimate divergence times, while accounting for incongruence among individual gene trees, has ushered in a new era in the investigation of phylogeny among closely related species. In this study we assess if DNA sequence data sampled from a modest number of nuclear genes can resolve relationships of a species-rich clade of North American freshwater teleost fishes, the darters. We articulate and expand on a recently introduced method to infer a time-calibrated multi-species coalescent phylogeny using the computer program ~*BEAST. Our analyses result in well-resolved and strongly supported time-calibrated darter species tree. Contrary to the expectation that mtDNA will provide greater phylogenetic resolution than nuclear gene data; the darter species tree inferred exclusively from nuclear genes exhibits a higher frequency of strongly supported nodes than the mtDNA time-calibrated gene tree.
机译:通过使用线粒体DNA(mtDNA)序列数据,可以对密切相关的动物物种进行系统发育研究。然而,越来越多的研究表明,通过杂交,近乎普遍使用mtDNA来推断密切相关动物谱系中的系统发育,这些研究表明,通过杂交,密切相关物种之间的mtDNA基因组转移率很高,从而导致从mtDNA推断出的系统发育之间存在实质性的不一致。和核基因序列。此外,最近发展的方法可以同时推断出一个物种的系统发育和估计差异时间,同时考虑到各个基因树之间的不一致,已经为研究紧密相关物种之间的系统发育开辟了一个新时代。在这项研究中,我们评估了从少量核基因中采样的DNA序列数据是否可以解决北美淡水硬骨鱼(飞镖)物种丰富的进化枝的关系。我们使用计算机程序〜* BEAST阐明并扩展了一种最新推出的方法,该方法可以推断出经过时间校准的多物种聚类系统发育。我们的分析结果得到了很好的解决,并且得到了强有力的时间校准的飞镖物种树。与mtDNA提供比核基因数据更大的系统发育分辨率的预期相反;与mtDNA时间校准的基因树相比,仅从核基因推断出的突进种树显示出更高频率的强支持节点。

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