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A Dirichlet Process Prior for Estimating Lineage-Specific Substitution Rates

机译:估计谱系特定替代率的Dirichlet过程先验

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摘要

We introduce a new model for relaxing the assumption of a strict molecular clock for use as a prior in Bayesian methods for divergence time estimation. Lineage-specific rates of substitution are modeled using a Dirichlet process prior (DPP), a type of stochastic process that assumes lineages of a phylogenetic tree are distributed into distinct rate classes. Under the Dirichlet process, the number of rate classes, assignment of branches to rate classes, and the rate value associated with each class are treated as random variables. The performance of this model was evaluated by conducting analyses on data sets simulated under a range of different models. We compared the Dirichlet process model with two alternative models for rate variation: the strict molecular clock and the independent rates model. Our results show that divergence time estimation under the DPP provides robust estimates of node ages and branch rates without significantly reducing power. Further analyses were conducted on a biological data set, and we provide examples of ways to summarize Markov chain Monte Carlo samples under this model.
机译:我们引入了一种新模型,可以放宽对严格分子钟的假设,以作为贝叶斯方法中用于发散时间估计的先验方法。使用Dirichlet先验过程(DPP)建模特定于世系的替代率,这是一种随机过程,它假定系统树的世系被分配到不同的速率类别中。在Dirichlet过程中,费率类别的数量,对费率类别的分支分配以及与每个类别关联的费率值被视为随机变量。通过对在一系列不同模型下模拟的数据集进行分析来评估该模型的性能。我们将Dirichlet过程模型与两种其他的速率变化模型进行了比较:严格的分子钟和独立的速率模型。我们的结果表明,在DPP下的发散时间估计可以在不显着降低功率的情况下提供对节点寿命和分支速率的可靠估计。在生物学数据集上进行了进一步的分析,我们提供了在此模型下总结马尔可夫链蒙特卡洛样本的方法示例。

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