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八项独立核基因支持丘鹬类的单系性:基因树中突变方差的作用。

Eight independent nuclear genes support monophyly of the plovers: the role of mutational variance in gene trees.

机构信息

Department of Natural History, Royal Ontario Museum, 100 Queen's Park, Toronto, Ontario, Canada M5S 2C6.

出版信息

Mol Phylogenet Evol. 2012 Nov;65(2):631-41. doi: 10.1016/j.ympev.2012.07.018. Epub 2012 Jul 27.

DOI:10.1016/j.ympev.2012.07.018
PMID:22842291
Abstract

Molecular phylogenies of Charadriiformes based on mtDNA genes and one to three nuclear loci do not support the traditional placement of Pluvialis in the plovers (Charadriidae), assigning it instead to oystercatchers, stilts, and avocets (Haematopodidae and Recurvirostridae). To investigate this hypothesis of plover paraphyly, the relationships among Pluvialis and closely related families were revisited by sequencing two individuals of all taxa except Peltohyas for eight independent single copy nuclear protein-coding loci selected for their informativeness at this phylogenetic depth. The species tree estimated jointly with the gene trees in the coalescent programme (*)BEAST strongly supported plover monophyly, as did Bayesian analysis of the concatenated matrix. The data sets that supported plover paraphyly in Baker et al. (2007) and Fain and Houde (2007) reflect two to four independent gene histories, and thus discordance with the plover monophyly species tree might have arisen by chance through stochastic mutational variance. For the plovers we conclude there is no conclusive evidence of coalescent variance from ancient incomplete lineage sorting across the interior branch leading to Pluvialis in the species tree. Rather, earlier studies seem have been misled by faster evolving mtDNA genes with high mutational variance, and a few nuclear genes that had low resolving power at the Pluvialis sister group level. These findings are of general relevance in avian phylogenetics, as they show that careful attention needs to be paid to the number and the phylogenetic informativeness of genes required to obtain accurate estimates of the species tree, especially where there is mutational heterogeneity in gene trees.

摘要

基于 mtDNA 基因和一到三个核基因座的 Charadriiformes 分子系统发育关系不支持将 Pluvialis 传统地置于滨鹬科(Charadriidae)中,而是将其归入蛎鹬科(Haematopodidae)和反嘴鹬科(Recurvirostridae)。为了验证滨鹬科单系性的假设,我们通过对除 Peltohyas 以外的所有分类群的两个个体进行测序,重新研究了 Pluvialis 与近亲科之间的关系,选择了八个独立的、单拷贝的核蛋白编码基因座,这些基因座在这种系统发育深度上具有信息性。在合并程序 (*)BEAST 中与基因树一起估计的种系发生树强烈支持滨鹬科的单系性,串联矩阵的贝叶斯分析也是如此。Baker 等人(2007 年)和 Fain 和 Houde(2007 年)支持滨鹬科的并系性的数据集反映了两个到四个独立的基因历史,因此与滨鹬科单系性种系发生树的不一致可能是由于随机突变方差而偶然发生的。对于滨鹬科,我们得出的结论是,在种系发生树中,内部分支导致 Pluvialis 的分支上没有明显的证据表明有古老的不完全谱系分选引起的合并方差。相反,早期的研究似乎受到了 mtDNA 基因进化较快、突变方差较高以及一些核基因在 Pluvialis 姐妹群水平上分辨率较低的误导。这些发现对于鸟类系统发育学具有普遍意义,因为它们表明,在获得物种树的准确估计值时,需要特别注意所需基因的数量和系统发育信息量,特别是在基因树存在突变异质性的情况下。

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