Tang Yan, Zou Qi, Yu Guojie, Liu Feng, Wu Yu, Zhao Xueyan, Wang Wensheng, Liu Xinchang, Hu Fei, Wang Zengxia
College of Resource and Environment, Anhui Science and Technology University, Chuzhou 233100, China.
College of Agriculture, Anhui Science and Technology University, Chuzhou 233100, China.
Insects. 2025 Mar 31;16(4):360. doi: 10.3390/insects16040360.
is a globally significant migratory agricultural pest that requires proactive monitoring. Understanding the molecular mechanisms underlying the interactions between pathogenic microorganisms and is crucial for enhancing the effectiveness of microbial control agents against this pest. This study used transcriptome sequencing and molecular biology techniques on larvae infected by bacteria and fungi to investigate the composition and molecular regulatory mechanisms of its immune system. A total of 598 immune-related genes were identified. Upon microbial infection, most immune-related genes showed an upregulated expression trend. Phylogenetic analysis revealed that the immune gene repertoire of is relatively conserved. The expression of the genes of in different tissues of induced by microorganisms at different times was verified using qPCR, and the results confirmed that these genes were significantly upregulated under specific pathogenic infections. This study elucidates the immune transcriptome of in response to various pathogenic microorganisms, providing valuable insights for improving the effectiveness of existing microbial agents and developing new, highly efficient, and specific biopesticides.
是一种具有全球重要性的迁徙性农业害虫,需要进行主动监测。了解病原微生物与 之间相互作用的分子机制对于提高微生物控制剂对这种害虫的有效性至关重要。本研究对受细菌和真菌感染的 幼虫进行转录组测序和分子生物学技术,以研究其免疫系统的组成和分子调控机制。共鉴定出598个免疫相关基因。在微生物感染后,大多数免疫相关基因呈现上调表达趋势。系统发育分析表明, 的免疫基因库相对保守。利用qPCR验证了微生物在不同时间诱导的 不同组织中基因的表达,结果证实这些基因在特定病原感染下显著上调。本研究阐明了 对各种病原微生物的免疫转录组,为提高现有微生物制剂的有效性和开发新型高效特异性生物农药提供了有价值的见解。