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Molecular Phylogenetics and Temporal Diversification in the Genus Aeromonas Based on the Sequences of Five Housekeeping Genes

机译:基于五个管家基因序列的气单胞菌属的分子系统发育和时间多样性

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摘要

Several approaches have been developed to estimate both the relative and absolute rates of speciation and extinction within clades based on molecular phylogenetic reconstructions of evolutionary relationships, according to an underlying model of diversification. However, the macroevolutionary models established for eukaryotes have scarcely been used with prokaryotes. We have investigated the rate and pattern of cladogenesis in the genus Aeromonas (γ-Proteobacteria, Proteobacteria, Bacteria) using the sequences of five housekeeping genes and an uncorrelated relaxed-clock approach. To our knowledge, until now this analysis has never been applied to all the species described in a bacterial genus and thus opens up the possibility of establishing models of speciation from sequence data commonly used in phylogenetic studies of prokaryotes. Our results suggest that the genus Aeromonas began to diverge between 248 and 266 million years ago, exhibiting a constant divergence rate through the Phanerozoic, which could be described as a pure birth process.
机译:根据基本的多样化模型,已经开发了几种方法来估计进化枝中物种形成和灭绝的相对速率和绝对速率,这是基于进化关系的分子系统发育重建而得出的。但是,为真核生物建立的宏观进化模型很少与原核生物一起使用。我们已经使用五个管家基因的序列和不相关的宽松时钟方法研究了气单胞菌属(γ-变形杆菌,变形杆菌,细菌)的cladogenesis的速率和模式。就我们所知,迄今为止,这种分析从未应用于细菌属中描述的所有物种,因此开辟了从原核生物系统发育研究中常用的序列数据建立物种形成模型的可能性。我们的研究结果表明,气单胞菌属在248至2.66亿年前就开始发散,在古生代中表现出恒定的发散率,这可以说是纯粹的出生过程。

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