Li Wenhong, Wang Xinyi, Jiang Po, Yang Mingwei, Li Zhimo, Huang Chunyang, He Yueping
Institute of Plant Protection, Guizhou Academy of Agricultural Sciences, Guiyang, China.
Hubei Insect Resources Utilization and Sustainable Pest Management Key Laboratory, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, China.
Front Physiol. 2022 Oct 10;13:1016582. doi: 10.3389/fphys.2022.1016582. eCollection 2022.
The predatory stink bug shows potential for Integrated Pest Management programs for controlling Lepidoptera pest insects in crops and forests. The importance of this insect for biological control has stimulated several studies into its biology and ecology. However, has little genetic information available. In the present study, PacBio single-molecule real-time (SMRT) sequencing and Illumina RNA-seq sequencing technologies were used to reveal the full-length transcriptome profiling and tissue-specific expression patterns of . A total of 12,997 high-quality transcripts with an average length of 2,292 bp were obtained from different stages of using SMRT sequencing. Among these, 12,101 were successfully annotated in seven public databases. A total of 67 genes of cytochrome P450 monooxygenases, 43 carboxylesterase genes, and 18 glutathione S-transferase genes were identified, most of which were obtained with full-length ORFs. Then, tissue-specific expression patterns of 5th instar nymphs were analyzed using Illumina sequencing. Several candidate genes related to detoxification of insecticides and other xenobiotics as well as the degradation of odors, were identified in the guts and antennae of . The current study offered in-depth knowledge to understand the biology and ecology of this beneficial predator and related species.
掠食性椿象在农作物和森林中对鳞翅目害虫的综合虫害管理项目中显示出潜力。这种昆虫在生物防治方面的重要性促使了多项对其生物学和生态学的研究。然而,其可用的遗传信息很少。在本研究中,使用PacBio单分子实时(SMRT)测序和Illumina RNA-seq测序技术来揭示[昆虫名称未给出]的全长转录组图谱和组织特异性表达模式。使用SMRT测序从[昆虫名称未给出]的不同阶段共获得了12,997个高质量转录本,平均长度为2,292 bp。其中,12,101个在七个公共数据库中成功注释。共鉴定出67个细胞色素P450单加氧酶基因、43个羧酸酯酶基因和18个谷胱甘肽S-转移酶基因,其中大多数是通过全长开放阅读框获得的。然后,使用Illumina测序分析了五龄若虫的组织特异性表达模式。在[昆虫名称未给出]的肠道和触角中鉴定出了几个与杀虫剂和其他异生物质解毒以及气味降解相关的候选基因。当前的研究为了解这种有益捕食者及其相关物种的生物学和生态学提供了深入的知识。