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Phylogenetic analyses under secondary structure-specific substitution models outperform traditional approaches: Case studies with diploblast LSU

机译:在二级结构特异性替代模型下的系统发生分析优于传统方法:双倍体LSU的案例研究

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摘要

Many rDNA molecular phylogenetic studies result in trees that are incongruent to either alternative gene tree reconstructions and/or morphological assumptions. One reason for this outcome might be the application of suboptimal phylogenetic substitution models. While the most commonly implemented models describe the evolution of independently evolving characters fairly well, they do not account for character dependencies such as rRNA strands that form a helix in the ribosome. Such non-independent sites require the use of models that take into account the coevolution of the complete nucleotide pair (doublet). We analyzed 28S rDNA (LSU) demosponge phylogenies using a '' doublet '' model for pairing sites (rRNA-helices) and compared our findings with the results of '' standard '' approaches using Bayes factors. We demonstrate that paired and unpaired sites of the same gene result in different reconstructions and that usage of a doublet model leads to more reliable demosponge trees. We show the influence of more sophisticated models on phylogenetic reconstructions of early-branching metazoans and the phylogenetic relationships of demosponge orders.
机译:许多rDNA分子系统发育研究都得出了与替代性基因树重建和/或形态学假设不一致的树木。这种结果的一个原因可能是应用了次优的系统发育替代模型。尽管最常用的模型很好地描述了独立进化的字符的进化过程,但它们并不能说明字符依赖性,例如在核糖体中形成螺旋的rRNA链。此类非独立位点需要使用考虑完整核苷酸对(双峰)协同进化的模型。我们使用“ doublet”模型配对位点(rRNA-螺旋)分析了28S rDNA(LSU)脱节系统发育,并将我们的发现与使用贝叶斯因子的“标准”方法的结果进行了比较。我们证明了同一基因的配对和未配对位点会导致不同的重建,并且使用doublet模型会导致更可靠的脱脂树。我们显示了更复杂的模型对早期分支后生动物的系统发育重建的影响,以及脱节阶的系统发育关系。

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