Tang Bin, Ge Yuxin, Liu Yongkang, Guan Liwen, Han Ye, Zhu Yang, Hu Gao, Wu Yan
College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou 311121, China.
Guizhou Key Laboratory of Agricultural Biosecurity, Guiyang University, Guiyang 550005, China.
Insects. 2025 Jul 16;16(7):725. doi: 10.3390/insects16070725.
The high reproductive performance of (Stål) (Hemiptera: Delphacidae) is one of the key factors contributing to its serious damage. Studies have demonstrated that trehalose hydrolysis, catalyzed by trehalase (TRE), plays an important role in the reproductive regulation of . However, it remains unclear how TRE regulates the reproduction of . To address this question, the current study was designed to investigate the effects of TRE on the reproductive regulatory network of . Specifically, RNA interference (RNAi) was conducted by injecting double-stranded RNA (dsRNA) targeting the TRE genes, and a trehalase inhibitor, validamycin, was used to suppress TRE activity. Subsequently, the relative expression levels of key genes involved in the reproductive regulatory pathway, as well as the triglyceride content in the fat body and ovary, were determined. The results indicated that both dsTREs and validamycin treatment decreased the relative expression of Vitellogenin (Vg) without affecting the expression of its receptor, . However, their impact on the reproductive regulatory network differed: dsTREs injection did not affect the relative expression of and in the juvenile hormone signaling pathway, but resulted in the upregulation of and , and inhibition of and . In contrast, validamycin injection inhibited the expression of , , , , , and . Both dsTREs and validamycin inhibited the expression of , but only validamycin decreased the ovarian triglyceride content. These findings suggest that the inhibition of leads to alterations in reproductive regulatory signals, thereby reducing the reproductive capacity of .
(斯塔尔)(半翅目:飞虱科)的高繁殖性能是其造成严重危害的关键因素之一。研究表明,海藻糖酶(TRE)催化的海藻糖水解在(该物种)的繁殖调控中起重要作用。然而,TRE如何调节(该物种)的繁殖仍不清楚。为了解决这个问题,本研究旨在探究TRE对(该物种)繁殖调控网络的影响。具体而言,通过注射靶向TRE基因的双链RNA(dsRNA)进行RNA干扰(RNAi),并使用海藻糖酶抑制剂井冈霉素来抑制TRE活性。随后,测定了参与繁殖调控途径的关键基因的相对表达水平,以及脂肪体和卵巢中的甘油三酯含量。结果表明,dsTREs处理和井冈霉素处理均降低了卵黄原蛋白(Vg)的相对表达,而不影响其受体(某基因,原文未给出具体名称)的表达。然而,它们对繁殖调控网络的影响有所不同:注射dsTREs不影响保幼激素信号通路中(某些基因,原文未给出具体名称)的相对表达,但导致(某些基因,原文未给出具体名称)上调,以及(某些基因,原文未给出具体名称)和(某些基因,原文未给出具体名称)受到抑制。相比之下,注射井冈霉素抑制了(某些基因,原文未给出具体名称)、(某些基因,原文未给出具体名称)、(某些基因,原文未给出具体名称)、(某些基因,原文未给出具体名称)、(某些基因,原文未给出具体名称)和(某些基因,原文未给出具体名称)的表达。dsTREs和井冈霉素均抑制了(某基因,原文未给出具体名称)的表达,但只有井冈霉素降低了卵巢甘油三酯含量。这些发现表明,对(TRE)的抑制导致繁殖调控信号的改变,从而降低了(该物种)的繁殖能力。