Building large trees by combining phylogenetic information: a complete phylogeny of the extant Carnivora (Mammalia).

O R Bininda-Emonds, J L Gittleman, A Purvis
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Abstract

One way to build larger, more comprehensive phylogenies is to combine the vast amount of phylogenetic information already available. We review the two main strategies for accomplishing this (combining raw data versus combining trees), but employ a relatively new variant of the latter: supertree construction. The utility of one supertree technique, matrix representation using parsimony analysis (MRP), is demonstrated by deriving a complete phylogeny for all 271 extant species of the Carnivora from 177 literature sources. Beyond providing a 'consensus' estimate of carnivore phylogeny, the tree also indicates taxa for which the relationships remain controversial (e.g. the red panda; within canids, felids, and hyaenids) or have not been studied in any great detail (e.g. herpestids, viverrids, and intrageneric relationships in the procyonids). Times of divergence throughout the tree were also estimated from 74 literature sources based on both fossil and molecular data. We use the phylogeny to show that some lineages within the Mustelinae and Canidae contain significantly more species than expected for their age, illustrating the tree's utility for studies of macroevolution. It will also provide a useful foundation for comparative and conservational studies involving the carnivores.

结合系统发育信息构建大树:现存食肉目(哺乳目)的完整系统发育。
建立更大、更全面的系统发育的一种方法是将现有的大量系统发育信息结合起来。我们回顾了实现这一目标的两种主要策略(组合原始数据与组合树),但采用了后者的一种相对较新的变体:超树构造。通过对177个文献资料中271个现存食肉目物种的完整系统发育分析,证明了一种超树技术——利用简约分析(MRP)的矩阵表示的实用性。除了提供肉食动物系统发育的“共识”估计外,这棵树还指出了一些类群的关系仍然存在争议(例如小熊猫;在犬科动物、猫科动物和鬣狗中)或没有被详细研究过的(例如,herpds、viverids和原yonids的属内关系)。根据化石和分子数据,从74个文献来源估计了整个树的分化时间。我们使用系统发育来显示鼬科和犬科的一些谱系所包含的物种明显多于其年龄的预期,这说明了树在宏观进化研究中的效用。这也将为涉及食肉动物的比较和保护研究提供有用的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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