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Phylogenetic Utility of rRNA ITS2 Sequence-Structure under Functional Constraint

机译:rRNA ITS2序列结构在功能约束下的系统发育效用

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摘要

The crucial function of the internal transcribed spacer 2 (ITS2) region in ribosome biogenesis depends on its secondary and tertiary structures. Despite rapidly evolving, ITS2 is under evolutionary constraints to maintain the specific secondary structures that provide functionality. A link between function, structure and evolution could contribute an understanding to each other and recently has created a growing point of sequence-structure phylogeny of ITS2. Here we briefly review the current knowledge of ITS2 processing in ribosome biogenesis, focusing on the conservative characteristics of ITS2 secondary structure, including structure form, structural motifs, cleavage sites, and base-pair interactions. We then review the phylogenetic implications and applications of this structure information, including structure-guiding sequence alignment, base-pair mutation model, and species distinguishing. We give the rationale for why incorporating structure information into tree construction could improve reliability and accuracy, and some perspectives of bioinformatics coding that allow for a meaningful evolutionary character to be extracted. In sum, this review of the integration of function, structure and evolution of ITS2 will expand the traditional sequence-based ITS2 phylogeny and thus contributes to the tree of life. The generality of ITS2 characteristics may also inspire phylogenetic use of other similar structural regions.
机译:核糖体生物组织中的内转录间隔物2(ITS2)区域的关键函数取决于其二级和三级结构。尽管快速发展,但其2处于进化约束,以维持提供功能的特定二级结构。功能,结构和演化之间的联系可以互相贡献,并且最近已经产生了ITS2的序列结构序列结构的增长点。在这里,我们简要介绍了核糖体生物发生中ITS2处理的目前的知识,重点是ITS2二级结构的保守特征,包括结构形式,结构基序,切割位点和碱基相互作用。然后,我们回顾这种结构信息的系统发育意义和应用,包括结构引导序列对准,基对突变模型和物种区分。我们给出了将结构信息的原则提供成树结构可以提高可靠性和准确性,以及生物信息学编码的一些视角,允许提取有意义的进化字符。总而言之,对其函数,结构和演化的整合综述将扩大基于传统的序列的其2个系统,从而有助于生命之树。其2个特征的一般性也可以激发其他类似结构区域的系统发育使用。

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