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Testing for equality of molecular evolutionary rates: A comparison betweena relative-rate test and a likelihood ratio test

机译:检验分子进化速率的相等性:相对速率检验与似然比检验之间的比较

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In this study, we examined the following: (1) the power of a relative-rate test (RRT) and a Likelihood ratio test (LRT), (2) the effect of the number of ingroup taxa on the power of the RRT and the LRT, and (3) the use of the molecular-rate tests and divergence times in discerning variability in nucleotide substitution rates between two clades. The results indicate that the RRT was more powerful than the LRT at detecting differences in total branch lengths when one set of descendant lineages of the ingroup have evolved, on average, faster than the other set since they diverged from the common ancestor. The LRT was more powerful than the RRT when the total branch length was substantially longer (or shorter) in half of the lineages within one set of the descendants of the common ancestor. Only in this case was the power of the LRT improved as the number of terminals increased, whereas for the RRT, the power increased somewhat in all the simulations when taxa were added. It was also concluded that in studies in which interclade rate differences are of interest, the results of the RRT and the LRT are difficult to interpret without information from the fossil record.
机译:在这项研究中,我们检查了以下内容:(1)相对比率检验(RRT)和似然比检验(LRT)的功效,(2)团体分类单元数量对RRT功效的影响,以及(3)利用分子速率测试和发散时间来辨别两个进化枝之间核苷酸取代率的变异性。结果表明,当一组内聚体的一组后代世系进化出平均速度快于另一组后代系时,RRT在检测总分支长度差异方面比LRT更为强大。当一组共同祖先的后代中有一半的谱系的总分支长度明显更长(或更短)时,LRT比RRT更强大。仅在这种情况下,随着终端数量的增加,LRT的功率才会提高,而对于RRT,在添加分类群的所有模拟中,功率都会有所提高。还得出结论,在需要了解层间速率差异的研究中,如果没有化石记录中的信息,则难以解释RRT和LRT的结果。

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