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Deep metazoan phylogeny: When different genes tell different stories

机译:深部后生动物系统发育:当不同的基因讲述不同的故事时

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摘要

Molecular phylogenetic analyses have produced a plethora of controversial hypotheses regarding the patterns of diversification of non-bilaterian animals. To unravel the causes for the patterns of extreme inconsistencies at the base of the metazoan tree of life, we constructed a novel supermatrix containing 122 genes, enriched with non-bilaterian taxa. Comparative analyses of this supermatrix and its two non-overlapping multi-gene partitions (including ribosomal and non-ribosomal genes) revealed conflicting phylogenetic signals. We show that the levels of saturation and long branch attraction artifacts in the two partitions correlate with gene sampling. The ribosomal gene partition exhibits significantly lower saturation levels than the non-ribosomal one. Additional systematic errors derive from significant variations in amino acid substitution patterns among the metazoan lineages that violate the stationarity assumption of evolutionary models frequently used to reconstruct phylogenies. By modifying gene sampling and the taxonomic composition of the outgroup, we were able to construct three different yet well-supported phylogenies. These results show that the accuracy of phylogenetic inference may be substantially improved by selecting genes that evolve slowly across the Metazoa and applying more realistic substitution models. Additional sequence-independent genomic markers are also necessary to assess the validity of the phylogenetic hypotheses.
机译:分子系统发育分析已经产生了许多关于非双性动物多样化模式的有争议的假设。为了弄清后生动物生命树基础上极端不一致的模式的原因,我们构建了一个包含122个基因的新型超矩阵,其中富含非双态类群。对此超级矩阵及其两个不重叠的多基因分区(包括核糖体和非核糖体基因)进行的比较分析显示了相互冲突的系统发生信号。我们表明两个分区中的饱和度和长分支吸引伪影的水平与基因采样相关。核糖体基因分区的饱和水平明显低于非核糖体基因分区。其他系统性错误源于后生动物谱系中氨基酸替代模式的重大变化,这与经常用于重建系统发育的进化模型的平稳性假设相违背。通过修改基因采样和外来群体的生物分类组成,我们能够构建三个不同但得到良好支持的系统发育树。这些结果表明,通过选择在后生动物中缓慢进化的基因并应用更现实的替代模型,可以显着提高系统发育推断的准确性。还需要其他与​​序列无关的基因组标记,以评估系统发生假设的有效性。

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