首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Hemiptera Mitochondrial Control Region: New Sights into the Structural Organization Phylogenetic Utility and Roles of Tandem Repetitions of the Noncoding Segment
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Hemiptera Mitochondrial Control Region: New Sights into the Structural Organization Phylogenetic Utility and Roles of Tandem Repetitions of the Noncoding Segment

机译:半翅目线粒体控制区:结构编码系统发生效用和非编码段的串联重复的作用的新视野。

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摘要

As a major noncoding fragment, the control region (CR) of mtDNA is responsible for the initiation of mitogenome transcription and replication. Several structural features of CR sequences have been reported in many insects. However, comprehensive analyses on the structural organization and phylogenetic utility, as well as the role of tandem replications (TRs) on length variation, high A+T content, and shift of base skew of CR sequences are poorly investigated in hemipteran insects. In this study, we conducted a series of comparative analyses, using 116 samples covering all 11 infraorders of the five currently recognized monophyletic groups in the Hemiptera. Several structural elements (mononucleotide stretches containing conserved sequence blocks (CSBs), TRs, and GA-rich region) were identified in the mitochondrial control region in hemipteran insects, without showing a consistent location. The presence and absence of certain specific structural elements in CR sequences show the various structural organizations of that segment among the five monophyletic groups, which indicates the diversification of the control region’s structural organization in Hemiptera. Among the many groups within Hemiptera, eight monophyletic groups and three consistent phylogenetic trees were recovered, using CSBs datasets by maximum likelihood and Bayesian methods, which suggests the possible utility of CR sequences for phylogenetic reconstruction in certain groups of Hemiptera. Statistical analyses showed that TRs may contribute to the length variation, high AT content, and the shift of base skewing of CR sequences toward high AT content in the Hemiptera. Our findings enrich the knowledge of structural organization, phylogenetic utility, and roles of tandem replication of hemipteran CR, and provide a possible framework for mitochondrial control region analyses in hemimetabolous insects.
机译:作为主要的非编码片段,mtDNA的控制区(CR)负责有丝分裂基因组转录和复制的启动。在许多昆虫中已经报道了CR序列的一些结构特征。但是,在半足类昆虫中,关于结构组织和系统发生作用的综合分析,以及串联复制(TRs)在长度变异,高A + T含量和CR序列基本偏斜的移位方面的作用研究很少。在这项研究中,我们进行了一系列比较分析,使用了116个样本,涵盖了半翅目中目前公认的五个单系群体的所有11个基础。在半翅目昆虫的线粒体控制区中鉴定了几个结构元件(含有保守序列区(CSB),TR和富含GA的区域的单核苷酸序列),但未显示一致的位置。 CR序列中是否存在某些特定的结构元件,显示了五个单基因组中该片段的各种结构组织,这表明半翅目中控制区的结构组织多样化。在半翅目的许多组中,利用最大似然法和贝叶斯方法使用CSBs数据集,恢复了8个单谱系组和3个一致的系统发育树,这表明CR序列在某些半翅目组中可能用于系统发育重建。统计分析表明,TRs可能导致半翅目的长度变异,高AT含量以及CR序列的基本偏向高AT含量的转变。我们的发现丰富了半足动物CR的结构组织,系统发育实用性和串联复制作用的知识,并为半代谢昆虫中的线粒体控制区分析提供了可能的框架。

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