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首页> 外文期刊>Insect Molecular Biology >A secondary structural model of the 28S rRNA expansion segments D2 and D3 from rootworms and related leaf beetles (Coleoptera : Chrysomelidae; Galerucinae) [Review]
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A secondary structural model of the 28S rRNA expansion segments D2 and D3 from rootworms and related leaf beetles (Coleoptera : Chrysomelidae; Galerucinae) [Review]

机译:根虫和相关叶甲虫(鞘翅目:金眼科;半翅目)的28S rRNA扩展片段D2和D3的二级结构模型[综述]

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摘要

We analysed the secondary structure of two expansion segments (D2, D3) of the 28S rRNA gene from 229 leaf beetles (Coleoptera: Chrysomelidae), the majority of which are in the subfamily Galerucinae. The sequences were compared in a multiple sequence alignment, with secondary structure inferred primarily from the compensatory base changes in the conserved helices of the rRNA molecules. This comparative approach yielded thirty helices comprised of base pairs with positional covariation. Based on these leaf beetle sequences, we report an annotated secondary structural model for the D2 and D3 expansion segments that will prove useful in assigning positional nucleotide homology for phylogeny reconstruction in these and closely related beetle taxa. This predicted structure, consisting of seven major compound helices, is mostly consistent with previously proposed models for the D2 and D3 expansion segments in insects. Despite a lack of conservation in the primary structure of these regions of insect 28S rRNA, the evolution of the secondary structure of these seven major motifs may be informative above the nucleotide level for higher-order phylogeny reconstruction of major insect lineages. [References: 105]
机译:我们分析了来自229个叶甲虫(鞘翅目:金眼科)的28S rRNA基因的两个扩展片段(D2,D3)的二级结构,其中大部分位于Galerucinae亚科中。比较这些序列的多重序列比对,其二级结构主要由rRNA分子保守螺旋中的补偿碱基变化推断。这种比较方法产生了三十个由具有位置协变的碱基对组成的螺旋。基于这些叶甲虫序列,我们报告了一个带注释的D2和D3扩展区段的二级结构模型,该模型将被证明可用于分配与这些和密切相关的甲虫类群系统发育重建的位置核苷酸同源性。这种由七个主要化合物螺旋组成的预测结​​构与昆虫中D2和D3扩展片段的先前提出的模型基本一致。尽管在昆虫28S rRNA的这些区域的一级结构中缺乏保守性,但在主要昆虫谱系的高级系统发育重建的核苷酸水平以上,这七个主要基序的二级结构的演变可能是有益的。 [参考:105]

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