Chlorantraniliprole Suppresses the Humoral Immunity in Spodoptera frugiperda Larvae by Downregulating Peptidoglycan Recognition Protein Gene SfPGRP-S5
Qingyan Liu, Wenqi Xie, Jiaxin Liu, Shuhua Liu, Xiaoyue Deng, Qing Li, Yanli Yue, Huabao Chen, Qunfang Yang, Chunxian JiangAbstract
Previous studies have demonstrated that chlorantraniliprole enhances cellular immunity in Spodoptera frugiperda larvae, but its effects on humoral immunity remain unclear. Thus, we investigated the role of this insecticide in modulating humoral responses, focusing on peptidoglycan recognition proteins (PGRPs) as key mediators. PGRPs are important pattern recognition receptors that activate insect innate immunity against microbes. Our findings revealed that chlorantraniliprole inhibited humoral immunity in larvae, with the expression of SfPGRP-S5 being significantly affected. Functional studies revealed that SfPGRP-S5 knockdown under chlorantraniliprole exposure decreased larval survival following bacterial infection and downregulated antimicrobial peptide (AMP) genes, while recombinant SfPGRP-S5 activated AMP and prophenoloxidase (PPO) expression. Additionally, the transgenic Drosophila bioassay indicated that SfPGRP-S5 overexpression enhanced chlorantraniliprole tolerance and reduced bacterial susceptibility. In summary, SfPGRP-S5 plays a critical role in mediating chlorantraniliprole-induced suppression of humoral immunity in S. frugiperda larvae. This study reveals the differential immune regulation by insecticides and provides new insights for understanding their sublethal effects.