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巴氏细腹跳蝽的完整线粒体基因组。(半翅目:猎蝽科)

The complete mitochondrial genome of the damsel bug Alloeorhynchus bakeri (Hemiptera: Nabidae).

机构信息

Department of Entomology, China Agricultural University, Beijing 100193, China.

出版信息

Int J Biol Sci. 2012;8(1):93-107. doi: 10.7150/ijbs.8.93. Epub 2011 Nov 24.

Abstract

The complete sequence of the mitochondrial DNA (mtDNA) of the damsel bug, Alloeorhynchus bakeri, has been completed and annotated in this study. It represents the first sequenced mitochondrial genome of heteropteran family Nabidae. The circular genome is 15, 851 bp in length with an A+T content of 73.5%, contains the typical 37 genes that are arranged in the same order as that of the putative ancestor of hexapods. Nucleotide composition and codon usage are similar to other known heteropteran mitochondrial genomes. All protein-coding genes (PCGs) use standard initiation codons (methionine and isoleucine), except COI, which started with TTG. Canonical TAA and TAG termination codons are found in eight protein-coding genes, the remaining five (COI, COII, COIII, ND5, ND1) have incomplete termination codons (T or TA). PCGs of two strands present opposite CG skew which is also reflected by the nucleotide composition and codon usage. All tRNAs have the typical clover-leaf structure, except the dihydrouridine (DHU) arm of tRNA(Ser (AGN))which forms a simple loop as known in many other metazoa. Secondary structure models of the ribosomal RNA genes of A. bakeri are presented, similar to those proposed for other insect orders. There are six domains and 45 helices and three domains and 27 helices in the secondary structures of rrnL and rrnS, respectively. The major non-coding region (also called control region) between the small ribosomal subunit and the tRNA(Ile )gene includes two special regions. The first region includes four 133 bp tandem repeat units plus a partial copy of the repeat (28 bp of the beginning), and the second region at the end of control region contains 4 potential stem-loop structures. Finally, PCGs sequences were used to perform a phylogenetic study. Both maximum likelihood and Bayesian inference analyses highly support Nabidae as the sister group to Anthocoridae and Miridae.

摘要

本研究完成并注释了姬猎蝽(Alloeorhynchus bakeri)的线粒体 DNA(mtDNA)全序列。这是第一个测序的异翅目猎蝽科线粒体基因组。该环状基因组长 15851bp,A+T 含量为 73.5%,包含典型的 37 个基因,排列顺序与六足动物的假定祖先相同。核苷酸组成和密码子使用与其他已知的异翅目线粒体基因组相似。所有蛋白质编码基因(PCGs)都使用标准起始密码子(蛋氨酸和异亮氨酸),除了 COI,它以 TTG 开始。在八个蛋白质编码基因中发现了典型的 TAA 和 TAG 终止密码子,其余五个(COI、COII、COIII、ND5、ND1)具有不完整的终止密码子(T 或 TA)。两条链上的 PCGs 呈现出相反的 CG 倾斜,这也反映在核苷酸组成和密码子使用上。除了 tRNA(Ser (AGN))的二氢尿嘧啶(DHU)臂形成一个简单的环外,所有 tRNA 都具有典型的三叶形结构,这在许多其他后生动物中也是如此。本文提出了姬猎蝽 rRNA 基因的二级结构模型,与其他昆虫目提出的模型相似。rrnL 和 rrnS 的二级结构分别有六个结构域和 45 个螺旋以及三个结构域和 27 个螺旋。小核糖体亚基和 tRNA(Ile)基因之间的主要非编码区(也称为控制区)包括两个特殊区域。第一个区域包含四个 133bp 串联重复单元加上重复的部分副本(开始的 28bp),第二个区域位于控制区的末端,包含 4 个潜在的茎环结构。最后,对 PCGs 序列进行了系统发育研究。最大似然和贝叶斯推断分析都高度支持猎蝽科是Anthocoridae 和 Miridae 的姐妹群。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca73/3248651/7fa7875051a1/ijbsv08p0093g01.jpg

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