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茶细蛾线粒体全基因组:对粉虱科基因排列和基因组组织的见解

The Complete Mitochondrial Genome of Aleurocanthus camelliae: Insights into Gene Arrangement and Genome Organization within the Family Aleyrodidae.

作者信息

Chen Shi-Chun, Wang Xiao-Qing, Li Pin-Wu, Hu Xiang, Wang Jin-Jun, Peng Ping

机构信息

Tea Research Institute, Chongqing Academy of Agricultural Science, Chongqing 402160, China.

Tea Science Department, College of Horticulture, Sichuan Agricultural University, Ya'an 611130, China.

出版信息

Int J Mol Sci. 2016 Nov 7;17(11):1843. doi: 10.3390/ijms17111843.

Abstract

There are numerous gene rearrangements and transfer RNA gene absences existing in mitochondrial (mt) genomes of Aleyrodidae species. To understand how mt genomes evolved in the family Aleyrodidae, we have sequenced the complete mt genome of and comparatively analyzed all reported whitefly mt genomes. The mt genome of is 15,188 bp long, and consists of 13 protein-coding genes, two rRNA genes, 21 tRNA genes and a putative control region (GenBank: KU761949). The tRNA gene, , has not been observed in this genome. The mt genome has a unique gene order and shares most gene boundaries with . Nineteen of 21 tRNA genes have the conventional cloverleaf shaped secondary structure and two ( and ) lack the dihydrouridine (DHU) arm. Using ARWEN and homologous sequence alignment, we have identified five tRNA genes and revised the annotation for three whitefly mt genomes. This result suggests that most absent genes exist in the genomes and have not been identified, due to be lack of technology and inference sequence. The phylogenetic relationships among 11 whiteflies and were inferred by maximum likelihood and Bayesian inference methods. and form a sister group, and all three and two strains gather together. These results are identical to the relationships inferred from gene order. We inferred that gene rearrangement plays an important role in the mt genome evolved from whiteflies.

摘要

粉虱科物种的线粒体(mt)基因组中存在大量基因重排和转运RNA基因缺失。为了解粉虱科线粒体基因组是如何进化的,我们对[物种名称未给出]的完整线粒体基因组进行了测序,并对所有已报道的粉虱线粒体基因组进行了比较分析。[物种名称未给出]的线粒体基因组长度为15,188 bp,由13个蛋白质编码基因、两个核糖体RNA基因、21个转运RNA基因和一个假定的控制区组成(GenBank:KU761949)。在这个基因组中未观察到转运RNA基因[基因名称未给出]。该线粒体基因组具有独特的基因顺序,并且与[物种名称未给出]共享大多数基因边界。21个转运RNA基因中的19个具有传统的三叶草形二级结构,另外两个([基因名称未给出]和[基因名称未给出])缺乏二氢尿嘧啶(DHU)臂。使用ARWEN和同源序列比对,我们鉴定出了5个转运RNA基因,并对三个粉虱线粒体基因组的注释进行了修订。这一结果表明,由于技术和推断序列的缺乏,大多数缺失的基因存在于基因组中但尚未被鉴定出来。通过最大似然法和贝叶斯推断法推断了11种粉虱与[物种名称未给出]之间的系统发育关系。[物种名称未给出]和[物种名称未给出]形成一个姐妹群,所有三个[物种名称未给出]和两个[物种名称未给出]菌株聚集在一起。这些结果与从基因顺序推断出的关系一致。我们推断基因重排在粉虱线粒体基因组进化中起重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55e4/5133843/e0effc506c48/ijms-17-01843-g001.jpg

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