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Estimating Diversifying Selection and Functional Constraint in the Presence of Recombination

机译:估计存在重组时的多样化选择和功能约束

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摘要

Models of molecular evolution that incorporate the ratio of nonsynonymous to synonymous polymorphism (dN/dS ratio) as a parameter can be used to identify sites that are under diversifying selection or functional constraint in a sample of gene sequences. However, when there has been recombination in the evolutionary history of the sequences, reconstructing a single phylogenetic tree is not appropriate, and inference based on a single tree can give misleading results. In the presence of high levels of recombination, the identification of sites experiencing diversifying selection can suffer from a false-positive rate as high as 90%. We present a model that uses a population genetics approximation to the coalescent with recombination and use reversible-jump MCMC to perform Bayesian inference on both the dN/dS ratio and the recombination rate, allowing each to vary along the sequence. We demonstrate that the method has the power to detect variation in the dN/dS ratio and the recombination rate and does not suffer from a high false-positive rate. We use the method to analyze the porB gene of Neisseria meningitidis and verify the inferences using prior sensitivity analysis and model criticism techniques.
机译:结合了非同义与同义多态性之比(dN / dS比)作为参数的分子进化模型可用于识别基因序列样本中处于多样化选择或功能约束下的位点。但是,当序列的进化历史中存在重组时,重建单个系统发育树是不合适的,并且基于单个树的推断可能会产生误导性的结果。在高水平重组的情况下,鉴定经历多样化选择的位点的假阳性率可能高达90%。我们提出了一个模型,该模型使用结合重组的群体遗传学近似值,并使用可逆跳跃MCMC对dN / dS比率和重组率进行贝叶斯推断,从而允许每个序列沿序列变化。我们证明了该方法具有检测dN / dS比和重组率变化的能力,并且没有高假阳性率。我们使用该方法分析脑膜炎奈瑟氏菌的porB基因,并使用先前的敏感性分析和模型批评技术验证了推论。

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