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Relaxed Phylogenetics and Dating with Confidence

机译:轻松的系统发育学和充满信心的约会

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摘要

In phylogenetics, the unrooted model of phylogeny and the strict molecular clock model are two extremes of a continuum. Despite their dominance in phylogenetic inference, it is evident that both are biologically unrealistic and that the real evolutionary process lies between these two extremes. Fortunately, intermediate models employing relaxed molecular clocks have been described. These models open the gate to a new field of “relaxed phylogenetics.” Here we introduce a new approach to performing relaxed phylogenetic analysis. We describe how it can be used to estimate phylogenies and divergence times in the face of uncertainty in evolutionary rates and calibration times. Our approach also provides a means for measuring the clocklikeness of datasets and comparing this measure between different genes and phylogenies. We find no significant rate autocorrelation among branches in three large datasets, suggesting that autocorrelated models are not necessarily suitable for these data. In addition, we place these datasets on the continuum of clocklikeness between a strict molecular clock and the alternative unrooted extreme. Finally, we present analyses of 102 bacterial, 106 yeast, 61 plant, 99 metazoan, and 500 primate alignments. From these we conclude that our method is phylogenetically more accurate and precise than the traditional unrooted model while adding the ability to infer a timescale to evolution.
机译:在系统发育学中,系统进化的无根模型和严格的分子钟模型是连续体的两个极端。尽管它们在系统发育推断中占主导地位,但很明显,两者在生物学上都是不现实的,真正的进化过程介于这两个极端之间。幸运的是,已经描述了采用松弛分子钟的中间模型。这些模型为“松弛系统发育学”的新领域打开了大门。在这里,我们介绍了一种执行轻松的系统发育分析的新方法。我们描述了在不确定的进化速率和校准时间的情况下,如何将其用于估计系统发育和发散时间。我们的方法还提供了一种测量数据集的时脉相似性并在不同基因和系统发育之间进行比较的方法。我们发现三个大型数据集的分支之间没有显着的速率自相关,这表明自相关模型不一定适合于这些数据。此外,我们将这些数据集放置在严格的分子钟和替代的无根极端之间的钟状连续性上。最后,我们提出了对102个细菌,106个酵母,61个植物,99个后生动物和500个灵长类动物比对的分析。从这些结果可以得出结论,我们的方法在系统发育上比传统的无根模型更准确,更精确,同时增加了推断进化时间尺度的能力。

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