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Theoretical Foundation of the RelTime Method for Estimating Divergence Times from Variable Evolutionary Rates

机译:从可变进化速率估计发散时间的RelTime方法的理论基础

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摘要

RelTime estimates divergence times by relaxing the assumption of a strict molecular clock in a phylogeny. It shows excellent performance in estimating divergence times for both simulated and empirical molecular sequence data sets in which evolutionary rates varied extensively throughout the tree. RelTime is computationally efficient and scales well with increasing size of data sets. Until now, however, RelTime has not had a formal mathematical foundation. Here, we show that the basis of the RelTime approach is a relative rate framework (RRF) that combines comparisons of evolutionary rates in sister lineages with the principle of minimum rate change between evolutionary lineages and their respective descendants. We present analytical solutions for estimating relative lineage rates and divergence times under RRF. We also discuss the relationship of RRF with other approaches, including the Bayesian framework. We conclude that RelTime will be useful for phylogenies with branch lengths derived not only from molecular data, but also morphological and biochemical traits.
机译:RelTime通过放松系统发育中严格的分子钟的假设来估计发散时间。它在评估模拟和经验分子序列数据集的发散时间方面表现出出色的性能,在这些数据集中,进化速率在整个树中变化很大。 RelTime计算效率高,并且可以随着数据集大小的增加而很好地扩展。但是,到目前为止,RelTime还没有正式的数学基础。在这里,我们证明了RelTime方法的基础是相对速率框架(RRF),该框架结合了姐妹谱系中进化速率的比较与进化谱系及其各自后代之间最小速率变化的原理。我们提出了分析解决方案,用于估计RRF下的相对血统率和发散时间。我们还将讨论RRF与其他方法(包括贝叶斯框架)的关系。我们得出的结论是,RelTime对于分支长度不仅来自分子数据,而且还包括形态和生化特征的系统发育将很有用。

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