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Comparative Phylogenies of Ribosomal Proteins and the 16S rRNA Gene at Higher Ranks of the Class Actinobacteria

机译:核糖体蛋白和16S rRNA基因在放线菌类较高等级中的比较系统发生

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摘要

The 16S rRNA-based hierarchical system is considered to be the backbone of prokaryote taxonomy at the genus level and above. However, in the class Actinobacteria, the topology of the 16S rRNA-based tree is highly unsteady, and relationships between several families and orders are ambiguous. Recently, phylogenomic information was claimed to provide a more comprehensive understanding of prokaryotic systematics in the genomics era. In this article, a comparative phylogenetic analysis of the class Actinobacteria was carried out using 16S rRNA gene sequences and a set of 46 ribosomal proteins (RPs). Phylogenies based on concatenated RP sequences were generally congruent with 16S rRNA phylogenies, but higher bootstrap values supported the branching orders in the former trees. RP-based trees constructed by the maximum-likelihood and neighbor-joining algorithms provided better-defined phylogenetic relationships within the Actinobacteria and clarified the relationships and positions of several orders, such as Micrococcales and Frankiales. The RP-based phylogeny approach may thus provide a sound basis for assessing the Actinobacteria.
机译:基于16S rRNA的分层系统被认为是属级及以上级别的原核生物分类学的骨干。但是,在放线菌类中,基于16S rRNA的树的拓扑结构非常不稳定,并且多个科目和顺序之间的关系不明确。最近,据称植物遗传学信息可提供对基因组学时代原核生物系统学的更全面了解。在本文中,使用16S rRNA基因序列和46种核糖体蛋白(RPs)进行了放线菌类的比较系统发育分析。基于串联RP序列的系统发育通常与16S rRNA系统发育一致,但是较高的自举值支持前者树中的分支顺序。通过最大似然和邻居联接算法构建的基于RP的树在放线菌中提供了更明确的系统发育关系,并阐明了微球菌和Frankiales等几个阶的关系和位置。因此,基于RP的系统发育方法可为评估放线菌提供良好的基础。

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