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通过系统发育重建确定的藻类 ITS2 的共识二级结构。

A consensus secondary structure of ITS2 in the chlorophyta identified by phylogenetic reconstruction.

机构信息

Universität zu Köln, Biozentrum Köln, Botanisches Institut, Zülpicher Str. 47b, 50674 Köln, Germany.

出版信息

Protist. 2013 Jul;164(4):482-96. doi: 10.1016/j.protis.2013.04.005. Epub 2013 Jun 13.

Abstract

The definition of species plays a pivotal role in biology. It has been proposed that Compensatory Base Changes (CBCs) in the fast-evolving Internal Transcribed Spacer 2 (ITS2) correlate with speciation and thus can be used to distinguish species. The applicability of CBC - based species concepts using ITS2, however, rests on the homology of the investigated ITS2 positions. We studied the ITS2 molecule of 147 strains of Chlorophyceae (Chlorophyta, Viridiplantae) including 26 new sequences in the order Chaetophorales, and compared their secondary structures to ITS2 in the sister class Ulvophyceae, represented by the order Ulvales. Using a phylogenetic/comparative approach, it was possible to identify 1) the first consensus structure model of the ITS2 molecule that can be applied to two classes of green algae [Ulvophyceae (Ulvales), Chlorophyceae] and 2) landmarks (the spacer regions separating the ITS2 Helices) for more robust prediction of the secondary structures in green algae. Moreover, we found that CBCs in homologous positions in these 147 strains (representing 115 validly described species) are either completely absent or mostly associated with internal branches representing higher order taxonomic levels (genera, families, orders). As reported for the Ulvales, CBCs are not diagnostic at the species level in the dataset used.

摘要

物种的定义在生物学中起着关键作用。有人提出,快速进化的内部转录间隔区 2(ITS2)中的补偿碱基变化(CBC)与物种形成相关,因此可用于区分物种。然而,基于 ITS2 的 CBC 物种概念的适用性取决于所研究的 ITS2 位置的同源性。我们研究了包括 Chaetophorales 目中的 26 个新序列在内的 147 株绿藻(Chlorophyta,Viridiplantae)的 ITS2 分子,并将其二级结构与代表 Ulvales 目中的 Ulvophyceae 类的 ITS2 进行了比较。使用系统发育/比较方法,可以确定 1)适用于绿藻两个类群(Ulvophyceae(Ulvales),Chlorophyceae)的 ITS2 分子的第一个共识结构模型,以及 2)地标(分离 ITS2 螺旋的间隔区),以便更稳健地预测绿藻的二级结构。此外,我们发现,在这 147 株菌株(代表 115 个有效描述的物种)中,同源位置的 CBC 要么完全不存在,要么主要与代表更高阶分类水平(属、科、目)的内部分支相关。与 Ulvales 报道的情况一样,在使用的数据集中小尺度基因体间区的碱基变化(CBCs)在物种水平上没有诊断意义。

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