Institute of Plant Protection, Guangdong Academy of Agricultural Sciences, Key Laboratory of Green Prevention and Control on Fruits and Vegetables in South China Ministry of Agriculture and Rural Affairs, Guangdong Provincial Key Laboratory of High Technology for Plant Protection, Guangzhou, 510640, China.
Key Laboratory of Integrated Pest Management On Crops in Northern Region of North China, Ministry of Agriculture and Rural Affairs, IPM Center of Hebei Province, Plant Protection Institute, Hebei Academy of Agricultural and Forestry Sciences, Baoding, 071000, China.
Sci Rep. 2023 Mar 27;13(1):4989. doi: 10.1038/s41598-023-30570-7.
Conopomorpha sinensis Bradley is a destructive pest that causes severe economic damage to litchi and longan. Previous C. sinensis research has focused on population life tables, oviposition selectivity, pest population prediction, and control technology. However, there are few studies on its mitogenome and phylogenetic evolution. In this study, we sequenced the whole mitogenome of C. sinensis by the third-generation sequencing, and analyzed the characteristics of its mitogenome by comparative genome. The complete mitogenome of C. sinensis is a typical circular and double-stranded structure. The ENC-plot analyses revealed that natural selection could affect the information of codon bias of the protein-coding genes in the mitogenome of C. sinensis in the evolutionary process. Compared with 12 other Tineoidea species, the trnA-trnF gene cluster of tRNA in the C. sinensis mitogenome appears to have a new arrangement pattern. This new arrangement has not been found in other Tineoidea or other Lepidoptera, which needs further exploration. Meanwhile, a long AT repeated sequence was inserted between trnR and trnA, trnE and trnF, ND1 and trnS in the mitogenome of C. sinensis, and the reason for this sequence remains to be further studied. Furthermore, the results of phylogenetic analysis showed that the litchi fruit borer belonged to Gracillariidae, and Gracillariidae was monophyletic. The results will contribute to an improved understanding of the complex mitogenome and phylogeny of C. sinensis. It also will provide a molecular basis for further research on the genetic diversity and population differentiation of C. sinensis.
荔枝蒂蛀虫是一种为害荔枝和龙眼的毁灭性害虫。以往对荔枝蒂蛀虫的研究主要集中在种群生命表、产卵选择性、虫口预测预报和防治技术等方面,而对其线粒体基因组及系统进化研究较少。本研究通过三代测序技术获得了荔枝蒂蛀虫的完整线粒体基因组序列,并通过比较基因组分析其线粒体基因组的特征。荔枝蒂蛀虫的完整线粒体基因组是一个典型的双链环状结构。ENC-plot 分析表明,在进化过程中,自然选择可能会影响荔枝蒂蛀虫线粒体基因组中蛋白质编码基因的密码子偏好信息。与其他 12 种天牛总科物种相比,荔枝蒂蛀虫线粒体基因组中 tRNA 的 trnA-trnF 基因簇表现出一种新的排列模式。这种新的排列方式尚未在其他天牛总科或其他鳞翅目昆虫中发现,需要进一步探索。同时,在荔枝蒂蛀虫的线粒体基因组中,trnR 和 trnA、trnE 和 trnF、ND1 和 trnS 之间插入了一个长的 AT 重复序列,其原因尚需进一步研究。此外,系统发育分析结果表明,荔枝蒂蛀虫属于蛀果蛾科,蛀果蛾科是单系的。这些结果有助于更好地了解荔枝蒂蛀虫复杂的线粒体基因组和系统发育,为进一步研究荔枝蒂蛀虫的遗传多样性和种群分化提供了分子基础。