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Molecular evolution of rDNA in early diverging Metazoa: First comparative analysis and phylogenetic application of complete SSU rRNA secondary structures in Porifera

机译:rDNA在早期发散的后生动物中的分子进化:完整的SSU rRNA二级结构在porifera中的首次比较分析和系统发育应用

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摘要

BackgroundThe cytoplasmic ribosomal small subunit (SSU, 18S) ribosomal RNA (rRNA) is the most frequently-used gene for molecular phylogenetic studies. However, information regarding its secondary structure is neglected in most phylogenetic analyses. Incorporation of this information is essential in order to apply specific rRNA evolutionary models to overcome the problem of co-evolution of paired sites, which violates the basic assumption of the independent evolution of sites made by most phylogenetic methods. Information about secondary structure also supports the process of aligning rRNA sequences across taxa. Both aspects have been shown to increase the accuracy of phylogenetic reconstructions within various taxa.Here, we explore SSU rRNA secondary structures from the three extant classes of Phylum Porifera (Grant, 1836), a pivotal, but largely unresolved taxon of early branching Metazoa. This is the first phylogenetic study of poriferan SSU rRNA data to date that includes detailed comparative secondary structure information for all three sponge classes.
机译:背景胞质核糖体小亚基(SSU,18S)核糖体RNA(rRNA)是分子系统发育研究中最常用的基因。但是,在大多数系统发育分析中都忽略了有关其二级结构的信息。为了应用特定的rRNA进化模型来克服配对位点共同进化的问题,整合这些信息是必不可少的,这违反了大多数系统发育方法对位点进行独立进化的基本假设。有关二级结构的信息还支持跨整个分类群比对rRNA序列的过程。这两个方面都被证明可以提高各种分类单元内系统发育重建的准确性。在这里,我们探索了Phylum Porifera的三个现存类别的SSU rRNA二级结构(Grant,1836),这是早期分支后生动物的关键但很大程度上尚未解决的分类单元。这是迄今为止对poriferan SSU rRNA数据的首次系统发育研究,其中包括所有三种海绵类别的详细比较二级结构信息。

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