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缨翅目 2 亚目的比较分析及短角管蓟马完整线粒体基因组的特征。

Comparative analysis of the two suborders of Thysanoptera and characterization of the complete mitochondrial genome of Thrips parvispinus.

机构信息

Molecular Systematics Division, Centre for DNA Taxonomy, Zoological Survey of India, Kolkata, West Bengal, India.

出版信息

Arch Insect Biochem Physiol. 2023 Oct;114(2):1-15. doi: 10.1002/arch.22010. Epub 2023 Mar 13.

Abstract

Thrips parvispinus is a serious sucking pest on a number of economically important crops in the oriental region. It has gained importance recently for its drastic range extension distribution as an invasive pest. Here, the complete mitochondrial genome (15,067 bp) of Thrips parvispinus was sequenced and characterized. It possesses 37 genes and the putative noncoding region is duplicated. Comparative analyses of nucleotide diversity, skewness, codon usage bias, and selection pressure in mitochondrial protein-coding genes of the available 31 thrips mitogenomes (24 Terebrantia + 7 Tubulifera) were performed. Phylogenetic analysis showed a sister relationship of T. parvispinus to the clade (T. florum + T. hawaiiensis). Phylogenetic analyses formed the monophyly of subfamilies Phlaeothripinae and Idolothripinae within the family Phlaeothripidae (Suborder Tubulifera). Low nucleotide diversity was indicative of reversal of strand asymmetry in the Tubulifera. Neutrality analysis showed that directional mutation plays a major role in shaping codon usage bias in both suborders. Principal component analysis indicated distinct codon usage patterns in each suborder. Our data suggested weaker selection constrains on Terebrantia than in the Tubulifera. More tubuliferan mitogenomes are required to resolve previous classification hypotheses and elucidate genome evolution in these two suborders.

摘要

短体蓟马是东方地区多种重要经济作物的严重刺吸性害虫。它作为入侵性害虫,其分布范围急剧扩大,最近变得尤为重要。本研究中,我们对短体蓟马的完整线粒体基因组(15067bp)进行了测序和特征分析。该基因组包含 37 个基因,且假定非编码区发生了重复。对已获得的 31 种蓟马线粒体基因组(24 种 Terebrantia+7 种 Tubulifera)中的核苷酸多样性、偏度、密码子使用偏好和选择压力进行了比较分析。系统发育分析表明,短体蓟马与 T. florum+T. hawaiiensis 分支关系较近。系统发育分析表明,Phlaeothripidae 科内的 Phlaeothripinae 和 Idolothripinae 亚科具有单系性(Tubulifera 亚目)。核苷酸多样性较低表明 Tubulifera 中存在链反转不对称性。中性分析表明,定向突变在两个亚目中的密码子使用偏好形成中起主要作用。主成分分析表明,每个亚目都有独特的密码子使用模式。我们的数据表明,Terebrantia 受到的选择限制比 Tubulifera 弱。需要更多的 Tubulifera 线粒体基因组来解决之前的分类假设,并阐明这两个亚目的基因组进化。

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