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Information-theoretic indices and an approximate significance test for testing the molecular clock hypothesis with genetic distances

机译:用遗传距离检验分子钟假设的信息理论指标和近似显着性检验

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Distance-based phylogenetic methods are widely used in biomedical research. However, distance-based dating of speciation events and the test of the molecular clock hypothesis are relatively underdeveloped. Here I develop an approximate test of the molecular clock hypothesis for distance-based trees, as well as information-theoretic indices that have been used frequently in model selection, for use with distance matrices. The results are in good agreement with the conventional sequence-based likelihood ratio test. Among the information-theoretic indices, AICu is the most consistent with the sequence-based likelihood ratio test. The confidence in model selection by the indices can be evaluated by bootstrapping. I illustrate the usage of the indices and the approximate significance test with both empirical and simulated sequences. The tests show that distance matrices from protein gel electrophoresis and from genome rearrangement events do not violate the molecular clock hypothesis, and that the evolution of the third codon position conforms to the molecular clock hypothesis better than the second codon position in vertebrate mitochondrial genes. I outlined evolutionary distances that are appropriate for phylogenetic reconstruction and dating.
机译:基于距离的系统发育方法已广泛用于生物医学研究。但是,基于距离的物种形成事件测年和分子钟假设的检验相对欠发达。在这里,我对基于距离的树的分子时钟假设以及距离模型中经常使用的信息理论指标进行了近似检验。结果与常规的基于序列的似然比检验非常吻合。在信息理论指标中,AICu与基于序列的似然比检验最一致。可以通过引导评估通过索引选择模型的置信度。我用经验和模拟序列说明了指数的用法和近似显着性检验。测试表明,距蛋白质凝胶电泳和基因组重排事件的距离矩阵不违反分子时钟假设,并且在脊椎动物线粒体基因中,第三个密码子位置的进化比第二个密码子位置更好地符合了分子时钟假设。我概述了适合系统发育重建和测年的进化距离。

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