Functional Characterization of Nuclear Receptor MuFTZ-F1 in the Bean Flower Thrips, Megalurothrips usitatus

生物 基因敲除 RNA干扰 蜕皮 基因沉默 若虫 细胞生物学 有害生物分析 RNA沉默 调节器 核受体 黑腹果蝇 保幼激素 受体 蜕皮激素受体 遗传学 龄期 小发夹RNA 昆虫 病虫害综合治理 病虫害防治 核糖核酸 进化生物学 功能(生物学) 植物 击倒阻力 啮齿动物 内化
作者
Zexin Zhong,Jianxing Li,Jian Chen,Chunxiao Yang,Chaoqun Zhang,Ri-Yuan Tang,Wen Xie,You-Jun Zhang,Huipeng Pan,Zexin Zhong,Jianxing Li,Jian Chen,Chunxiao Yang,Chaoqun Zhang,Ri-Yuan Tang,Wen Xie,You-Jun Zhang,Huipeng Pan
出处
期刊:Agronomy [Multidisciplinary Digital Publishing Institute]
卷期号:15 (11): 2593-2593
标识
DOI:10.3390/agronomy15112593
摘要

The development of novel control strategies for the major cowpea pest Megalurothrips usitatus requires a deeper understanding of its critical molecular regulators. The nuclear receptor Fushi-tarazu factor 1 (FTZ-F1) is a conserved master regulator of insect development and reproduction, yet its function in M. usitatus remains uncharacterized. In this study, we investigated the expression and functional role of MuFTZ-F1 in this pest. RT-qPCR analysis revealed ubiquitous MuFTZ-F1 expression across all developmental stages and in major adult tissues. RNA interference (RNAi)-mediated knockdown of MuFTZ-F1 in the 2nd instar nymphs caused severe developmental defects, including impaired eclosion and significantly increased mortality. Mechanistically, silencing led to a significant reduction in the molting hormone ecdysone, accounting for the observed molting arrest. Furthermore, MuFTZ-F1 knockdown significantly decreased dopamine titers in both nymphs and female adults, suggesting its involvement in regulating this key biogenic amine beyond developmental processes. Our results provide the first functional evidence that MuFTZ-F1 is indispensable for nymphal development and survival in M. usitatus, mediated through the regulation of ecdysone. The profound lethal effect of MuFTZ-F1 silencing underscores its promise as a target for RNAi-based pest management strategies against this economically important pest.
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