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18S核糖体RNA的超延伸与真半翅目(昆虫纲:半翅目)的系统发育

18S rRNA hyper-elongation and the phylogeny of Euhemiptera (Insecta: Hemiptera).

作者信息

Xie Qiang, Tian Ying, Zheng Leyi, Bu Wenjun

机构信息

Institute of Entomology, College of Life Sciences, Nankai University, Department of Zoology, No. 94 Weijin Road, Nankai District, Tianjin 300071, China.

出版信息

Mol Phylogenet Evol. 2008 May;47(2):463-71. doi: 10.1016/j.ympev.2008.01.024. Epub 2008 Feb 2.

Abstract

The small subunit of nuclear ribosomal RNA (SSU nrRNA), whose sedimentation is mostly 18S in eukaryotes, is considered a relatively conservative marker for resolving phylogenetic relationship at the order level or higher. Length variation in SSU nrDNA is common, and can be rather large in some groups. In studies of Hexapoda phylogeny, the SSU nrDNA has been repeatedly used as a marker. Sternorrhyncha has been rarely included. The lengths of SSU nrDNAs of sternorrhynchids, the basal group of Hemiptera identified in the previous study are 0.3-0.6 kb longer than the usual ones in Hexapoda (1.8-1.9 kb). To use the entire SSU nrDNA sequences or the length-variable parts could cause alignment trouble and therefore affect phylogenetic results, as shown in this study of Euhemiptera phylogeny. Two problems are particularly noticeable. One is that two hyper-variable regions flanking a short length-conservative region could become overlapped in the alignment. This will destroy the positional homology over a larger range. The other is that, when a base pair in a stem of the secondary structure is located near the length-variable regions (LVRs), the simultaneous positional homology of these two bases in the pair is always lost in the alignment results. In this study, the secondary structure model of Hexapoda SSU nrRNA was slightly adjusted and the LVR distributions in it were finely positioned. The noise caused by the hyper LVRs was eliminated and the simultaneous homology for the paired bases was recovered based on the secondary structure model. These corrections improved the quality of the data matrix and hence improved the resolving behavior of the algorithm used. This study provided more convincing evidence for resolving the Euhemiptera suborders phylogeny as (Archaeorrhyncha+(Clypeorrhyncha+(Coleorrhyncha+Heteroptera))). This result provided a more solid background for outgroup determination according to the phylogenetic studies inside each suborder. The problems caused by LVRs have seldom been well addressed. As phylogenetic reconstruction depends more on the data matrix itself than on the algorithm, and length variation of SSU/LSU rRNA exists more or less in any group, it is necessary to closely investigate the effect of rRNA length variation on alignment and phylogenetic reconstruction in more groups.

摘要

核糖体核糖核酸小亚基(SSU nrRNA)在真核生物中的沉降系数大多为18S,被认为是解决科级及以上系统发育关系的相对保守的标记。SSU nrDNA的长度变异很常见,在某些类群中可能相当大。在六足动物系统发育研究中,SSU nrDNA已被多次用作标记。但粉虱亚目很少被纳入研究。在前一项研究中确定的半翅目基部类群粉虱类的SSU nrDNA长度比六足动物中常见的长度(1.8 - 1.9 kb)长0.3 - 0.6 kb。正如在本次真半翅目系统发育研究中所示,使用整个SSU nrDNA序列或长度可变部分可能会导致比对困难,从而影响系统发育结果。有两个问题尤为明显。一个是在比对中,短长度保守区域两侧的两个高变区域可能会重叠。这将在更大范围内破坏位置同源性。另一个是,当二级结构茎中的一个碱基对位于长度可变区域(LVRs)附近时,在比对结果中该碱基对中这两个碱基的同时位置同源性总是会丢失。在本研究中,对六足动物SSU nrRNA的二级结构模型进行了微调,并精确确定了其中LVRs的分布。消除了高变LVRs引起的噪声,并基于二级结构模型恢复了碱基对的同时同源性。这些校正提高了数据矩阵的质量,从而改善了所用算法的解析性能。本研究为解决真半翅目亚目系统发育关系为(古喙亚目 +(蜡喙亚目 +(鞘喙亚目 + 异翅亚目)))提供了更有说服力的证据。这一结果为根据每个亚目内部的系统发育研究确定外类群提供了更坚实的背景。LVRs引起的问题很少得到很好的解决。由于系统发育重建更多地依赖于数据矩阵本身而非算法,并且SSU/LSU rRNA的长度变异在任何类群中都或多或少存在,因此有必要更深入地研究rRNA长度变异对更多类群比对和系统发育重建的影响。

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