生物
埃及伊蚊
先天免疫系统
基因敲除
小RNA
免疫
球孢白僵菌
RNA干扰
微生物学
病原真菌
免疫系统
病毒学
核糖核酸
真菌
免疫学
遗传学
细胞凋亡
基因
植物
生物病虫害防治
幼虫
作者
Tengfei Lu,Yannan Ji,Mengmeng Chang,Xiaoming Zhang,Yanhong Wang,Zhen Zou
出处
期刊:BMC Biology
[Springer Nature]
日期:2024-01-17
卷期号:22 (1)
标识
DOI:10.1186/s12915-024-01811-6
摘要
Abstract Background Mosquitoes transmit many infectious diseases that affect human health. The fungus Beauveria bassiana is a biological pesticide that is pathogenic to mosquitoes but harmless to the environment. Results We found a microRNA (miRNA) that can modulate the antifungal immunity of Aedes aegypti by inhibiting its cognate serine protease. Fungal infection can induce the expression of modular serine protease (ModSP), and ModSP knockdown mosquitoes were more sensitive to B. bassiana infection. The novel miRNA-novel-53 is linked to antifungal immune response and was greatly diminished in infected mosquitoes . The miRNA-novel-53 could bind to the coding sequences of ModSP and impede its expression. Double fluorescence in situ hybridization (FISH) showed that this inhibition occurred in the cytoplasm. The amount of miRNA-novel-53 increased after miRNA agomir injection. This resulted in a significant decrease in ModSP transcript and a significant increase in mortality after fungal infection. An opposite effect was produced after antagomir injection. The miRNA-novel-53 was also knocked out using CRISPR-Cas9, which increased mosquito resistance to the fungus B. bassiana . Moreover, mosquito novel-circ-930 can affect ModSP mRNA by interacting with miRNA-novel-53 during transfection with siRNA or overexpression plasmid. Conclusions Novel-circ-930 affects the expression level of ModSP by a novel-circ-930/miRNA-novel-53/ ModSP mechanism to modulate antifungal immunity, revealing new information on innate immunity in insects.
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