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番茄潜叶蛾的完整线粒体基因组序列及其与其他三种木虱总科物种的比较

The Complete Mitochondrial Genome Sequence of Bactericera cockerelli and Comparison with Three Other Psylloidea Species.

作者信息

Wu Fengnian, Cen Yijing, Wallis Christopher M, Trumble John T, Prager Sean, Yokomi Ray, Zheng Zheng, Deng Xiaoling, Chen Jianchi, Liang Guangwen

机构信息

Laboratory of Insect Ecology / Guangdong Province, Key Laboratory of Microbial Signals and Disease Control, College of Agriculture, South China Agricultural University, Guangzhou, Guangdong, China.

San Joaquin Valley Agricultural Sciences Center, United States Department of Agriculture -Agricultural Research Service, Parlier, California, United States of America.

出版信息

PLoS One. 2016 May 26;11(5):e0155318. doi: 10.1371/journal.pone.0155318. eCollection 2016.

Abstract

Potato psyllid (Bactericera cockerelli) is an important pest of potato, tomato and pepper. Not only could a toxin secreted by nymphs results in serious phytotoxemia in some host plants, but also over the past few years B. cockerelli was shown to transmit "Candidatus Liberibacter solanacearum", the putative bacterial pathogen of potato zebra chip (ZC) disease, to potato and tomato. ZC has caused devastating losses to potato production in the western U.S., Mexico, and elsewhere. New knowledge of the genetic diversity of the B. cockerelli is needed to develop improved strategies to manage pest populations. Mitochondrial genome (mitogenome) sequencing provides important knowledge about insect evolution and diversity in and among populations. This report provides the first complete B. cockerelli mitogenome sequence as determined by next generation sequencing technology (Illumina MiSeq). The circular B. cockerelli mitogenome had a size of 15,220 bp with 13 protein-coding gene (PCGs), 2 ribosomal RNA genes (rRNAs), 22 transfer RNA genes (tRNAs), and a non-coding region of 975 bp. The overall gene order of the B. cockerelli mitogenome is identical to three other published Psylloidea mitogenomes: one species from the Triozidae, Paratrioza sinica; and two species from the Psyllidae, Cacopsylla coccinea and Pachypsylla venusta. This suggests all of these species share a common ancestral mitogenome. However, sequence analyses revealed differences between and among the insect families, in particular a unique region that can be folded into three stem-loop secondary structures present only within the B. cockerelli mitogenome. A phylogenetic tree based on the 13 PCGs matched an existing taxonomy scheme that was based on morphological characteristics. The available complete mitogenome sequence makes it accessible to all genes for future population diversity evaluation of B. cockerelli.

摘要

马铃薯木虱(Bactericera cockerelli)是马铃薯、番茄和辣椒的一种重要害虫。若虫分泌的毒素不仅会在一些寄主植物中导致严重的植物毒素血症,而且在过去几年中,已证实马铃薯木虱会将马铃薯斑纹片病(ZC)的假定细菌病原体“番茄自由杆菌”传播给马铃薯和番茄。ZC已给美国西部、墨西哥及其他地区的马铃薯生产造成了毁灭性损失。需要了解马铃薯木虱的遗传多样性新知识,以制定更好的害虫种群管理策略。线粒体基因组(mitogenome)测序为昆虫种群内部和种群之间的进化及多样性提供了重要信息。本报告提供了通过下一代测序技术(Illumina MiSeq)测定的首个完整的马铃薯木虱线粒体基因组序列。环状的马铃薯木虱线粒体基因组大小为15220 bp,包含13个蛋白质编码基因(PCGs)、2个核糖体RNA基因(rRNAs)、22个转运RNA基因(tRNAs)以及一个975 bp的非编码区。马铃薯木虱线粒体基因组的总体基因排列与其他三个已发表的木虱总科线粒体基因组相同:一个来自粉虱科的物种,中华拟粉虱;以及两个来自木虱科的物种,山楂木虱和榆木虱。这表明所有这些物种共享一个共同的祖先线粒体基因组。然而,序列分析揭示了昆虫科之间的差异,特别是一个独特区域,该区域可折叠成仅存在于马铃薯木虱线粒体基因组中的三个茎环二级结构。基于13个PCGs构建的系统发育树与基于形态特征的现有分类方案相匹配。现有的完整线粒体基因组序列使所有基因都可用于未来马铃薯木虱种群多样性评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c84c/4881912/7a4ddd8bc814/pone.0155318.g001.jpg

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