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A Unique Box in 28S rRNA Is Shared by the Enigmatic Insect Order Zoraptera and Dictyoptera

机译:28S rRNA的一个独特的盒子由昆虫的昆虫Zoraptera和Dictyoptera共享。

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摘要

The position of the Zoraptera remains one of the most challenging and uncertain concerns in ordinal-level phylogenies of the insects. Zoraptera have been viewed as having a close relationship with five different groups of Polyneoptera, or as being allied to the Paraneoptera or even Holometabola. Although rDNAs have been widely used in phylogenetic studies of insects, the application of the complete 28S rDNA are still scattered in only a few orders. In this study, a secondary structure model of the complete 28S rRNAs of insects was reconstructed based on all orders of Insecta. It was found that one length-variable region, D3-4, is particularly distinctive. The length and/or sequence of D3-4 is conservative within each order of Polyneoptera, but it can be divided into two types between the different orders of the supercohort, of which the enigmatic order Zoraptera and Dictyoptera share one type, while the remaining orders of Polyneoptera share the other. Additionally, independent evidence from phylogenetic results support the clade (Zoraptera+Dictyoptera) as well. Thus, the similarity of D3-4 between Zoraptera and Dictyoptera can serve as potentially valuable autapomorphy or synapomorphy in phylogeny reconstruction. The clades of (Plecoptera+Dermaptera) and ((Grylloblattodea+Mantophasmatodea)+(Embiodea+Phasmatodea)) were also recovered in the phylogenetic study. In addition, considering the other studies based on rDNAs, this study reached the highest congruence with previous phylogenetic studies of Holometabola based on nuclear protein coding genes or morphology characters. Future comparative studies of secondary structures across deep divergences and additional taxa are likely to reveal conserved patterns, structures and motifs that can provide support for major phylogenetic
机译:Zoraptera的位置仍然是昆虫序数系统发育中最具挑战性和不确定性的问题之一。 Zoraptera被认为与五个不同种类的新翅目有密切关系,或者与旁翅目甚至整翅目同盟。尽管rDNA已被广泛用于昆虫的系统发育研究中,但完整的28S rDNA的应用仍然只分散了几个数量级。在这项研究中,昆虫的完整28S rRNA的二级结构模型是基于所有Insecta顺序重建的。发现一个长度可变的区域,D3-4,是特别独特的。 D3-4的长度和/或序列在多翅目的每个阶中都是保守的,但是在超群的不同阶之间它可以分为两种类型,其中神秘的Zoraptera和Dictyoptera共有一种类型,而其余的阶的Polyneoptera分享其他。此外,来自系统发育结果的独立证据也支持进化枝(Zoraptera + Dictyoptera)。因此,Zoraptera和Dictyoptera之间D3-4的相似性可以在系统发育重建中作为潜在的有价值的亚同形或亚同形。在系统发育研究中还回收了(鳞翅目+ Dermaptera)和((Grylloblattodea + Mantophasmatodea)+(Embiodea + Phasmatodea))的进化枝。此外,考虑到其他基于rDNA的研究,该研究与以前基于核蛋白编码基因或形态特征的大隐菌的系统发育研究达到了最高的一致性。跨越深层分歧和其他分类单元的二级结构的未来比较研究可能会揭示保守的模式,结构和基序,从而可以为主要的系统发育提供支持

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