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高等灵长类动物系统发育——为什么我们无法确定?

Higher-primate phylogeny--why can't we decide?

作者信息

Holmquist R, Miyamoto M M, Goodman M

机构信息

Space Sciences Laboratory, University of California, Berkeley.

出版信息

Mol Biol Evol. 1988 May;5(3):201-16. doi: 10.1093/oxfordjournals.molbev.a040493.

Abstract

At present, no definitive agreement on either the correct branching order or differential rates of evolution among the higher primates exists, despite the accumulated integration of decades of morphological, immunological, protein and nucleic acid sequence data, and numerous reasonable theoretical models for the analysis, interpretation, and understanding of those data. Of the three distinct unrooted phylogenetic trees, that joining human with chimpanzee and the gorilla with the orangutan is currently favored, but the two alternatives that group humans with either gorillas or the orangutan rather than with chimpanzees also have support. This paper is a synthetic and critical review of the methodological literature and isolates some 20 specific reasons why uncertainty in the evolutionary understanding of our closest living relatives persists. Many of the difficulties are eliminated or ameliorated by Lake's new methods of phylogenetic invariants and operator metrics. In the companion paper these new methods are used to analyze both the nuclear and mitochondrial DNA of the higher primates.

摘要

目前,尽管几十年来积累了形态学、免疫学、蛋白质和核酸序列数据,以及众多用于分析、解释和理解这些数据的合理理论模型,但对于高等灵长类动物正确的分支顺序或进化差异速率,仍未达成明确共识。在三种不同的无根系统发育树中,目前倾向于将人类与黑猩猩归为一类,大猩猩与猩猩归为另一类的那种,但将人类与大猩猩或猩猩而非黑猩猩归为一类的另外两种替代方案也有支持依据。本文是对方法学文献的综合批判性综述,梳理出约20个具体原因,解释了为何对我们现存最近亲属的进化理解仍存在不确定性。Lake的系统发育不变量和算子度量新方法消除或缓解了许多困难。在配套论文中,这些新方法被用于分析高等灵长类动物的核DNA和线粒体DNA。

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