Department of Evolution and Ecology, University of California, Davis, CA 95616, USA.
Mol Phylogenet Evol. 2010 Jun;55(3):1189-94. doi: 10.1016/j.ympev.2009.11.005. Epub 2009 Nov 12.
Advances in molecular biology have expanded our understanding of patterns of evolution and our ability to infer phylogenetic relationships. Despite many applications of molecular methods in attempts at resolving the evolutionary relationships among the major clades of turtles, some nodes in the tree have proved to be extremely problematic and have remained unresolved. In this study, we use 14 nuclear loci to provide an in depth look at several of these troublesome nodes and infer the systematic relationships among 11 of the 14 turtle families. We find strong support for two of the most problematic nodes in the deep phylogeny of turtles that have traditionally defied resolution. In particular, we recover strong support for a sister relationship between the Emydidae and the monotypic bigheaded-turtle, Platysternon megacephalum. We also find strong support for a clade consisting of sea turtles, mud and musk turtles, and snapping turtles. Within this clade, snapping turtles (Chelydridae) and mud/musk turtles (Kinosternidae) are sister taxa, again with strong support. Our results emphasize the utility of multi-locus datasets in phylogenetic analyses of difficult problems.
分子生物学的进展扩展了我们对进化模式的理解,并提高了我们推断系统发育关系的能力。尽管在尝试解决海龟主要分支之间的进化关系时,分子方法有许多应用,但有些节点被证明是极其棘手的,尚未得到解决。在这项研究中,我们使用 14 个核基因座,深入研究了其中的几个棘手节点,并推断了 14 个海龟科中的 11 个之间的系统发育关系。我们发现对海龟系统发育中两个最棘手的节点有很强的支持,这两个节点传统上一直难以解决。特别是,我们强烈支持 Emydidae 和单型大头龟 Platysternon megacephalum 之间的姐妹关系。我们还发现了一个由海龟、泥龟和麝香龟以及 snapping 龟组成的分支的强烈支持。在这个分支中, snapping 龟(Chelydridae)和泥龟/麝香龟(Kinosternidae)是姐妹分类群,也有很强的支持。我们的结果强调了多基因座数据集在解决困难问题的系统发育分析中的效用。