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负鼠目有袋类动物RAG1基因座的碱基组成异质性:对系统发育推断和GC含量进化的影响

Base-compositional heterogeneity in the RAG1 locus among didelphid marsupials: implications for phylogenetic inference and the evolution of GC content.

作者信息

Gruber Karl F, Voss Robert S, Jansa Sharon A

机构信息

Bell Museum of Natural History and Department of Ecology, Evolution, and Behavior, University of Minnesota, St. Paul, Minnesota 55108, USA.

出版信息

Syst Biol. 2007 Feb;56(1):83-96. doi: 10.1080/10635150601182939.

Abstract

Although theoretical studies have suggested that base-compositional heterogeneity can adversely affect phylogenetic reconstruction, only a few empirical examples of this phenomenon, mostly among ancient lineages (with divergence dates > 100 Mya), have been reported. In the course of our phylogenetic research on the New World marsupial family Didelphidae, we sequenced 2790 bp of the RAG1 exon from exemplar species of most extant genera. Phylogenetic analysis of these sequences recovered an anomalous node consisting of two clades previously shown to be distantly related based on analyses of other molecular data. These two clades show significantly increased GC content at RAG1 third codon positions, and the resulting convergence in base composition is strong enough to overwhelm phylogenetic signal from other genes (and morphology) in most analyses of concatenated datasets. This base-compositional convergence occurred relatively recently (over tens rather than hundreds of millions of years), and the affected gene region is still in a state of evolutionary disequilibrium. Both mutation rate and substitution rate are higher in GC-rich didelphid taxa, observations consistent with RAG1 sequences having experienced a higher rate of recombination in the convergent lineages.

摘要

尽管理论研究表明碱基组成异质性会对系统发育重建产生不利影响,但关于这一现象的实证例子却很少,大多出现在古老谱系(分歧时间>1亿年前)中。在我们对新大陆有袋类负鼠科的系统发育研究过程中,我们对大多数现存属的代表物种的RAG1外显子的2790 bp进行了测序。对这些序列的系统发育分析发现了一个异常节点,该节点由两个分支组成,根据其他分子数据的分析,这两个分支此前被证明亲缘关系较远。这两个分支在RAG1第三密码子位置的GC含量显著增加,在大多数串联数据集分析中,由此产生的碱基组成趋同程度足以掩盖来自其他基因(和形态学)的系统发育信号。这种碱基组成趋同发生的时间相对较近(距今数千万年而非数亿年),且受影响的基因区域仍处于进化不平衡状态。在富含GC的负鼠类分类群中,突变率和替换率都更高,这些观察结果与RAG1序列在趋同谱系中经历了更高的重组率一致。

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