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Unbiased Estimate of Synonymous and Nonsynonymous Substitution Rates with Nonstationary Base Composition

机译:非偏见与非间断基础组成的同义词和非同义词替代率的估计

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摘要

The measurement of synonymous and nonsynonymous substitution rates (dS and dN) is useful for assessing selection operating on protein sequences or for investigating mutational processes affecting genomes. In particular, the ratio dN/dS is expected to be a good proxy for omega, the ratio of fixation probabilities of nonsynonymous mutations relative to that of neutral mutations. Standard methods for estimating dN, dS, or omega rely on the assumption that the base composition of sequences is at the equilibrium of the evolutionary process. In many clades, this assumption of stationarity is in fact incorrect, and we show here through simulations and analyses of empirical data that nonstationarity biases the estimate of dN, dS, and omega. We show that the bias in the estimate of omega can be fixed by explicitly taking into consideration nonstationarity in the modeling of codon evolution, in a maximum likelihood framework. Moreover, we propose an exact method for estimating dN and dS on branches, based on stochastic mapping, that can take into account nonstationarity. This method can be directly applied to any kind of codon evolution model, as long as neutrality is clearly parameterized.
机译:同义和非纯类替代率(DS和DN)的测量对于评估蛋白质序列的选择或用于研究影响基因组的突变过程。特别地,预期DN / DS的比率是ω的良好代理,无非晶喻相对于中性突变的固定概率比率。估计DN,DS或OMEGA的标准方法依赖于假设序列的基础组成处于进化过程的平衡。在许多人的过程中,这种具有实质性的假设实际上是不正确的,我们通过模拟和分析非间抗性偏置DN,DS和Omega的估计的实证数据。我们表明,在最大似然框架中明确考虑在密码子演化的建模中,可以通过明确考虑ω的估计估计的偏差。此外,我们提出了一种基于随机映射的分支机构估计DN和DS的精确方法,这可以考虑非间抗性。该方法可以直接应用于任何类型的密码子演进模型,只要中立性清晰地参数化。

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