Cao Y, Fujiwara M, Nikaido M, Okada N, Hasegawa M
The Institute of Statistical Mathematics, 4-6-7 Minami-Azabu, Minato-ku, Tokyo 106-8569, Japan.
Gene. 2000 Dec 23;259(1-2):149-58. doi: 10.1016/s0378-1119(00)00427-3.
Extensive phylogenetic analyses of the updated sequence data of mammalian mitochondrial genomes were carried out using the maximum likelihood method in order to resolve deep branchings in eutherian evolution. The divergence times in the mammalian tree were estimated by a relaxed molecular clock of the mitochondrial proteins calibrated with multiple references. A Chiroptera/Eulipotyphla (i.e. bat/mole) clade and a close relationship of this clade to Fereuungulata (Carnivora+Perissodactyla+Cetartiodactyla) were reconfirmed with high statistical significance. However, a support for a monophyly of Fereuungulata relative to the Chiroptera/Eulipotyphla clade was fragile, and we suggest that the three branchings among Carnivora, Perissodactyla, Cetartiodactyla and Chiroptera/Eulipotyphla occurred successively in a short time period, estimated to be approximately 77Myr BP. The Chiroptera/Eulipotyphla divergence was estimated to roughly coincide with the Cretaceous-Tertiary boundary (65Myr BP). The monophyly of Rodentia, the Lagomorpha/Rodentia clade (traditionally called Glires), and the Afrotheria/Xenarthra clade were preferred over alternative relationships, but the supports of these clades were not strong enough to exclude other possibilities. Although several super-order taxa of eutherians were strongly supported by the analyses of the mitochondrial genome data, the branching order in the deepest part of the eutherian tree remained ambiguous from the data presently available.
为了解决真兽类进化中的深层分支问题,利用最大似然法对哺乳动物线粒体基因组的更新序列数据进行了广泛的系统发育分析。通过用多个参考校准的线粒体蛋白质的宽松分子钟来估计哺乳动物树中的分歧时间。翼手目/真盲缺目(即蝙蝠/鼹鼠)进化枝以及该进化枝与猛兽总目(食肉目+奇蹄目+鲸偶蹄目)的密切关系在统计学上得到了高度显著的再次确认。然而,相对于翼手目/真盲缺目进化枝,猛兽总目的单系性支持较为薄弱,我们认为食肉目、奇蹄目、鲸偶蹄目和翼手目/真盲缺目之间的三个分支在短时间内相继发生,估计约为7700万年前。翼手目/真盲缺目的分歧估计大致与白垩纪-第三纪边界(6500万年前)重合。啮齿目的单系性、兔形目/啮齿目进化枝(传统上称为啮齿动物)以及非洲兽总目/异关节总目进化枝比其他关系更受青睐,但这些进化枝的支持力度不足以排除其他可能性。尽管线粒体基因组数据分析强烈支持了真兽类的几个超目分类单元,但从目前可用的数据来看,真兽类树最深处的分支顺序仍然不明确。