Bromham L, Rambaut A, Harvey P H
Department of Zoology, University of Oxford, United Kingdom.
J Mol Evol. 1996 Dec;43(6):610-21. doi: 10.1007/BF02202109.
Attempts to analyze variation in the rates of molecular evolution among mammalian lineages have been hampered by paucity of data and by nonindependent comparisons. Using phylogenetically independent comparisons, we test three explanations for rate variation which predict correlations between rate variation and generation time, metabolic rate, and body size. Mitochondrial and nuclear genes, protein coding, rRNA, and nontranslated sequences from 61 mammal species representing 14 orders are used to compare the relative rates of sequence evolution. Correlation analyses performed on differences in genetic distance since common origin of each pair against differences in body mass, generation time, and metabolic rate reveal that substitution rate at fourfold degenerate sites in two out of three protein sequences is negatively correlated with generation time. In addition, there is a relationship between the rate of molecular evolution and body size for two nuclear-encoded sequences. No evidence is found for an effect of metabolic rate on rate of sequence evolution. Possible causes of variation in substitution rate between species are discussed.
分析哺乳动物谱系间分子进化速率差异的尝试,因数据匮乏和非独立比较而受阻。利用系统发育独立比较,我们检验了三种关于速率差异的解释,这些解释预测了速率差异与世代时间、代谢率和体型之间的相关性。我们使用了代表14个目的61种哺乳动物的线粒体和核基因、蛋白质编码序列、rRNA和非翻译序列,来比较序列进化的相对速率。对每对物种自共同起源以来的遗传距离差异与体重、世代时间和代谢率差异进行的相关性分析表明,在三个蛋白质序列中的两个序列的四倍简并位点处,替代率与世代时间呈负相关。此外,对于两个核编码序列,分子进化速率与体型之间存在关联。未发现代谢率对序列进化速率有影响的证据。文中讨论了物种间替代率差异的可能原因。