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Secondary structure of expansion segment D1 in LSU rDNA from Arachnida and its phylogenetic application in Eriophyoid mites and in Acari

机译:蛛形纲动物LSU rDNA中扩展区段D1的二级结构及其在类螨和Ac螨中的系统发育应用

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An increasing number of researchers have applied secondary-structure based multiple alignments of rDNA genes in phylogeny. These studies mostly depended on a few valuable divergent domains in LSU and SSU rDNA. Yet other divergent domains, e.g. D1, were poorly investigated and rarely used. However, these domains might contain additional evolutionary data and play a vital role in DNA-based phylogenetic study. Here, we investigated all available D1 sequences of Arachnida taxa and predicted corresponding secondary structures to help identify homologous positions in the D1 region. Long insertions were found exclusive to Eriophyoidea and folded into three newly proposed helices. Non-Acari taxa were all GC rich. In Acari, most Trombidiformes and all Mesostigmata (Parasitiformes) taxa were AT rich and Ixodida (Parasitiformes) GC rich; however there was no consistent base bias in Sarcoptiformes sequences. For Eriophyoid mites, genera Cecidophyopsis and Aceria were both well supported in MP, NJ, ME and ML tress based on D1 sequences, and clusters of Cecidophyopsis species were identical with former study. This demonstrated that the D1 region could act as a valuable molecular marker in phylogenetic reconstruction of Eriophyoidea. Additionally, D1 has been proven suitable in phylogenetic analysis at the family and genus level in Acari, but not in Opiliones. (C) 2015 Elsevier Inc. All rights reserved.
机译:越来越多的研究人员已经在系统发育中应用了基于二级结构的rDNA基因的多重比对。这些研究主要依赖于LSU和SSU rDNA中一些有价值的差异域。还有其他不同的域,例如D1,调查不充分,很少使用。但是,这些域可能包含其他进化数据,并且在基于DNA的系统发育研究中起着至关重要的作用。在这里,我们调查了蛛形纲分类群的所有可用D1序列,并预测了相应的二级结构,以帮助识别D1区域中的同源位置。发现长插入仅适用于线虫,并折叠成三个新提议的螺旋。非Acari分类单元都富含GC。在阿卡里(Acari),大多数菱形目和所有Mesostigmata(副寄生虫)类群富含AT,而Ixodida(副寄生虫)GC丰富。然而,在Sarcoptiformes序列中没有一致的碱基偏倚。对于Eriophyoid螨,基于D1序列,MP,NJ,ME和ML毛发中都支持Cecidophysis属和Aceria属,并且Cecidophysis属的簇与以前的研究相同。这表明,D1区可以作为一个重要的分子标记,在Eriophyoidea的系统发育重建中。此外,已证明D1在Acari中适合家庭和属水平的系统发育分析,但不适用于Opiliones。 (C)2015 Elsevier Inc.保留所有权利。

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