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The Effect of Nonreversibility on Inferring Rooted Phylogenies

机译:非耐受性对推断生根文学的影响

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Most phylogenetic models assume that the evolutionary process is stationary and reversible. In addition to being biologically improbable, these assumptions also impair inference by generating models under which the likelihood does not depend on the position of the root. Consequently, the root of the tree cannot be inferred as part of the analysis. Yet identifying the root position is a key component of phylogenetic inference because it provides a point of reference for polarizing ancestor-descendant relationships and therefore interpreting the tree. In this paper, we investigate the effect of relaxing the unrealistic reversibility assumption and allowing the position of the root to be another unknown. We propose two hierarchical models that are centered on a reversible model but perturbed to allow non-reversibility. The models differ in the degree of structure imposed on the perturbations. The analysis is performed in the Bayesian framework using Markov chain Monte Carlo methods for which software is provided. We illustrate the performance of the two nonreversible models in analyses of simulated data using two types of topological priors. We then apply the models to a real biological data set, the radiation of polyploid yeasts, for which there is robust biological opinion about the root position. Finally, we apply the models to a second biological alignment for which the rooted tree is controversial: the ribosomal tree of life. We compare the two nonreversible models and conclude that both are useful in inferring the position of the root from real biological data.
机译:大多数系统发育模型假设进化过程是静止和可逆的。除了生物学上不可能的外,这些假设还通过产生可能性不依赖于根的位置的模型来损害推理。因此,树的根源不能被推断为分析的一部分。然而,识别根位置是系统发育推论的关键组分,因为它提供了偏振祖先 - 后代关系的参考点,因此可以解释树。在本文中,我们研究了松弛不切实际的可逆性假设并允许根部的位置成为另一个未知的影响。我们提出了两个以可逆模型为中心的分层模型,但扰乱了以允许不可逆转。该模型在扰动施加的结构程度的不同之处。该分析在贝叶斯框架中使用Markov链蒙特卡罗方法进行,用于提供软件。我们说明了使用两种类型的拓扑前沿的模拟数据分析中的两个不可脱模模型的性能。然后,我们将模型应用于真实的生物数据集,多倍体酵母的辐射,对根部位置有鲁棒的生物意见。最后,我们将模型应用于第二种生物对齐,因为生根树是争议的:核糖体生命之树。我们比较两个不可覆盖的模型和结论,这两者都很有用,在从真实的生物数据中推断出根部的位置。

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