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A secondary structural model of the 28S rRNA expansion segments D2 and D3 for chalcidoid wasps (Hymenoptera : Chalcidoidea)

机译:拟南芥类黄蜂28S rRNA扩展片段D2和D3的二级结构模型(膜翅目:Chalcidoidea)

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摘要

We analyze the secondary structure of two expansion segments (132, D3) of the 28S ribosomal (rRNA)-encoding gene region from 527 chalcidoid wasp taxa (Hymenoptera: Chalcidoidea) representing 18 of the 19 extant families. The sequences are compared in a multiple sequence alignment, with secondary structure inferred primarily from the evidence of compensatory base changes in conserved helices of the rRNA molecules. This covariation analysis yielded 36 helices that are composed of base pairs exhibiting positional covariation. Several additional regions are also involved in hydrogen bonding, and they form highly variable base-pairing patterns across the alignment. These are identified as regions of expansion and contraction or regions of slipped-strand compensation. Additionally, 31 single-stranded locales are characterized as regions of ambiguous alignment based on the difficulty in assigning positional homology in the presence of multiple adjacent indels. Based on comparative analysis of these sequences, the largest genetic study on any hymenopteran group to date, we report an annotated secondary structural model for the D2, D3 expansion segments that will prove useful in assigning positional nucleotide homology for phylogeny reconstruction in these and closely related apocritan taxa.
机译:我们分析了两个扩展节段(132,D3)的二级结构,它们分别来自代表19个现存家族中18个家族的527个类鲨鱼黄蜂类群(膜翅目:Chalcidoidea)的28S核糖体(rRNA)编码基因区域。比较这些序列的多重序列比对,其二级结构主要从rRNA分子的保守螺旋中补偿性碱基变化的证据推断。此协方差分析得出36个螺旋,这些螺旋由显示位置协方差的碱基对组成。氢键还涉及其他几个区域,它们在整个比对过程中形成高度可变的碱基配对模式。这些被标识为膨胀和收缩区域或滑线补偿区域。另外,基于在存在多个相邻插入缺失的情况下分配位置同源性的困难,将31个单链区域设置为歧义对齐区域。基于对这些序列的比较分析,这是迄今为止所有膜翅类动物群体中规模最大的遗传研究,我们报告了一个带注释的D2,D3扩展区段二级结构模型,该模型将被证明可用于分配与这些亲缘关系密切的系统发育重建的位置核苷酸同源性阿朴克里特分类群。

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