正选择分支位点检验对基因树选择位点推断的影响

Y. Diekmann, J. Pereira-Leal
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引用次数: 14

摘要

阳性选择的分支位点测试是检测基因系统发育中优先指定分支中过去偶发性阳性选择的标准方法。在这里,我们询问基因树拓扑结构的差异是否对推断正向选择位点的能力有任何影响。使用模拟序列,我们比较了真实拓扑和重新排列拓扑的结果。我们发现“冲突分支长度”之间存在很强的关系,当一组序列经历给定拓扑和前景的选择时发生变化,以及预测积极选择位置的能力。此外,通过重新分析先前发表的数据集,我们表明基因树的选择也会影响实际序列的结果。这是第一个证明树的拓扑结构对正向选择推理有明显影响的研究。我们认为基因树的选择是正选择分支位点分析的一个重要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gene Tree Affects Inference of Sites Under Selection by the Branch-Site Test of Positive Selection
The branch-site test of positive selection is a standard approach to detect past episodic positive selection in a priori-specified branches of a gene phylogeny. Here, we ask if differences in the topology of the gene tree have any influence on the ability to infer positively selected sites. Using simulated sequences, we compare the results obtained for true and rearranged topologies. We find a strong relationship between “conflicting branch length,” which occurs when the set of sequences that experiences selection for a given topology and foreground is changed, and the ability to predict positively selected sites. Moreover, by reanalyzing a previously published data set, we show that the choice of a gene tree also affects the results obtained for real-world sequences. This is the first study to demonstrate that tree topology has a clear effect on the inference of positive selection. We conclude that the choice of a gene tree is an important factor for the branch-site analysis of positive selection.
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