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首页> 外文期刊>Journal of pest science >Isocitrate dehydrogenase-mediated metabolic disorders disrupt active immunization against fungal pathogens in eusocial termites
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Isocitrate dehydrogenase-mediated metabolic disorders disrupt active immunization against fungal pathogens in eusocial termites

机译:异柠檬酸脱氢酶介导的代谢紊乱破坏了Eusocial蚁群中真菌病原体的主动免疫

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摘要

Active immunization is a crucial colony-level pathogen defense to improve the survival of eusocial termites, which limits the lethal effect of biopesticides for termite control. Here, we report a possible strategy for RNAi-mediated metabolic disorders, which causes reduction in insect pathogen defense and might facilitate the foundation of nontoxic and sustainable pest control methods. Isocitrate dehydrogenase (IDH) was significantly upregulated by active immunization in termites, but its regulatory mechanism has yet to be well understood. We found that dsIDH-injected termites exhibited significantly reduced IDH at mRNA and protein levels and altered levels of isocitrate and NADH, indicating the impaired NAD(+)-IDH reaction. IDH-silenced termites displayed metabolic disorders, which was implied by significant changes in several metabolites from the carbohydrates and amino acids. When grooming toward fungus-exposed termites, IDH-silenced nestmates showed a significant upregulation of four apoptosis-related genes and caspase 3 activity, and hence the significantly increased rate of apoptosis. These physiological changes led to more apoptotic cell death in different body parts of the nestmates. In particular, more apoptotic cells increased disease susceptibility of the nestmates as revealed by growth of the significantly increased number of colony-forming units from dissected gut contents. Furthermore, the IDH-silenced nestmates exhibited lower antifungal activity and higher mortality, suggesting that IDH downregulation disrupted active immunization against fungal pathogens in termites. These findings illustrated the metabolic regulation of active immunization and provide a sound foundation for enhancing the impact of biopesticides by reducing the pathogen defense of hosts.
机译:主动免疫是一个关键的殖民地水平病原体防御,以改善Eusocial Nermites的存活率,这限制了生物农药对白蚁对照的致命作用。在这里,我们报告了RNAi介导的代谢障碍的可能策略,这导致昆虫病原体防御的降低,并可促进无毒和可持续的害虫防治方法的基础。在白蚁中的主动免疫显着上调异柠檬酸脱氢酶(IDH),但其调节机制尚未得到很好的理解。我们发现DSIDH注入的白蚁在mRNA和蛋白质水平下显着降低了IDH,并改变了异柠檬酸和NADH水平,表明NAD(+) - IDH反应受损。 IDH-沉默的白蚁显示了代谢紊乱,其通过来自碳水化合物和氨基酸的几种代谢物的显着变化来暗示。在梳理真菌的白蚁时,IDH-沉默的巢蛋白显示出对四种凋亡相关基因和Caspase 3活性的显着上调,因此凋亡显着增加。这些生理变化导致巢卵不同身体部位的细胞凋亡细胞死亡。特别是,更多的凋亡细胞增加了巢蛋白的疾病易感性,如解除肠道内含量的显着增加的菌落形成单位的显着增加。此外,IDH沉默的巢蛋白表现出较低的抗真菌活性和更高的死亡率,表明IDH下调在白蚁中扰动了对真菌病原体的主动免疫。这些发现说明了主动免疫的代谢调节,并提供了通过减少宿主的病原体防御来提高生物生物的影响的声音基础。

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