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灵长类物种主要谱系分化时间的估计。

Estimation of divergence times for major lineages of primate species.

作者信息

Glazko Galina V, Nei Masatoshi

机构信息

Institute of Molecular Evolutionary Genetics and Department of Biology, Pennsylvania State University, University Park, Pennsylvania, USA.

出版信息

Mol Biol Evol. 2003 Mar;20(3):424-34. doi: 10.1093/molbev/msg050.

Abstract

Although the phylogenetic relationships of major lineages of primate species are relatively well established, the times of divergence of these lineages as estimated by molecular data are still controversial. This controversy has been generated in part because different authors have used different types of molecular data, different statistical methods, and different calibration points. We have therefore examined the effects of these factors on the estimates of divergence times and reached the following conclusions: (1) It is advisable to concatenate many gene sequences and use a multigene gamma distance for estimating divergence times rather than using the individual gene approach. (2) When sequence data from many nuclear genes are available, protein sequences appear to give more robust estimates than DNA sequences. (3) Nuclear proteins are generally more suitable than mitochondrial proteins for time estimation. (4) It is important first to construct a phylogenetic tree for a group of species using some outgroups and then estimate the branch lengths. (5) It appears to be better to use a few reliable calibration points rather than many unreliable ones. Considering all these factors and using two calibration points, we estimated that the human lineage diverged from the chimpanzee, gorilla, orangutan, Old World monkey, and New World monkey lineages approximately 6 MYA (with a range of 5-7), 7 MYA (range, 6-8), 13 MYA (range, 12-15), 23 MYA (range, 21-25), and 33 MYA (range 32-36).

摘要

虽然灵长类物种主要谱系的系统发育关系相对已经确立,但通过分子数据估算的这些谱系的分歧时间仍存在争议。产生这种争议的部分原因是不同的作者使用了不同类型的分子数据、不同的统计方法以及不同的校准点。因此,我们研究了这些因素对分歧时间估计的影响,并得出以下结论:(1)建议串联多个基因序列并使用多基因伽马距离来估算分歧时间,而不是采用单个基因的方法。(2)当有许多核基因的序列数据时,蛋白质序列似乎比DNA序列能给出更可靠的估计。(3)核蛋白通常比线粒体蛋白更适合用于时间估计。(4)首先使用一些外类群为一组物种构建系统发育树,然后估计分支长度,这很重要。(5)使用少数可靠的校准点似乎比使用许多不可靠的校准点更好。综合考虑所有这些因素并使用两个校准点,我们估计人类谱系与黑猩猩、大猩猩、猩猩、旧世界猴和新世界猴谱系的分歧时间分别约为600万年前(范围为500 - 700万年前)、700万年前(范围为600 - 800万年前)、1300万年前(范围为1200 - 1500万年前)、2300万年前(范围为2100 - 2500万年前)和3300万年前(范围为3200 - 3600万年前)。

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