Williams Tom A, Heaps Sarah E, Cherlin Svetlana, Nye Tom M W, Boys Richard J, Embley T Martin
Institute for Cell and Molecular Biosciences, Newcastle University, Newcastle upon Tyne NE2 4HH, UK
Institute for Cell and Molecular Biosciences, Newcastle University, Newcastle upon Tyne NE2 4HH, UK School of Mathematics and Statistics, Newcastle University, Newcastle upon Tyne NE1 7RU, UK.
Philos Trans R Soc Lond B Biol Sci. 2015 Sep 26;370(1678):20140336. doi: 10.1098/rstb.2014.0336.
The root of a phylogenetic tree is fundamental to its biological interpretation, but standard substitution models do not provide any information on its position. Here, we describe two recently developed models that relax the usual assumptions of stationarity and reversibility, thereby facilitating root inference without the need for an outgroup. We compare the performance of these models on a classic test case for phylogenetic methods, before considering two highly topical questions in evolutionary biology: the deep structure of the tree of life and the root of the archaeal radiation. We show that all three alignments contain meaningful rooting information that can be harnessed by these new models, thus complementing and extending previous work based on outgroup rooting. In particular, our analyses exclude the root of the tree of life from the eukaryotes or Archaea, placing it on the bacterial stem or within the Bacteria. They also exclude the root of the archaeal radiation from several major clades, consistent with analyses using other rooting methods. Overall, our results demonstrate the utility of non-reversible and non-stationary models for rooting phylogenetic trees, and identify areas where further progress can be made.
系统发育树的根对于其生物学解释至关重要,但标准替代模型并未提供关于其位置的任何信息。在此,我们描述了两种最近开发的模型,它们放宽了通常的平稳性和可逆性假设,从而无需外类群即可促进根推断。在考虑进化生物学中两个极具热点的问题之前,我们在系统发育方法的一个经典测试案例上比较了这些模型的性能:生命之树的深层结构和古菌辐射的根。我们表明,所有三个比对都包含这些新模型可以利用的有意义的生根信息,从而补充和扩展了基于外类群生根的先前工作。特别是,我们的分析将生命之树的根排除在真核生物或古菌之外,将其置于细菌主干上或细菌内部。它们还将古菌辐射的根排除在几个主要分支之外,这与使用其他生根方法的分析一致。总体而言,我们的结果证明了非可逆和非平稳模型在系统发育树生根方面的实用性,并确定了可以取得进一步进展的领域。