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通过RNA干扰敲低β-N-乙酰己糖胺酶基因可抑制白背飞虱(Sogatella furcifera)的蜕皮并增加其死亡率。

Knockdown of the β-N-acetylhexosaminidase genes by RNA interference inhibited the molting and increased the mortality of the white-backed planthopper, Sogatella furcifera.

作者信息

Yang Xi-Bin, Yang Hong, Zhou Cao, Long Gui-Yun, Jin Dao-Chao

机构信息

Institute of Entomology, Guizhou University, China; Guizhou Provincial Key Laboratory for Agricultural Pest Management of Mountainous Regions, Guiyang 550025, China.

Plant Protection and Quarantine Station, Department of Agriculture and Rural Affairs of Guizhou Province, Guiyang 550001, China.

出版信息

Pestic Biochem Physiol. 2025 Jan;207:106216. doi: 10.1016/j.pestbp.2024.106216. Epub 2024 Nov 22.

Abstract

β-N-Acetylglucosaminidases and/or β-N-acetylhexosaminidases (NAGs / Hexes) are crucial exonucleases, playing a crucial role in the insect molting process. SfHex3 and SfHex4 contain conserved catalytic domains of GH20 and GH20b, clustered into NAG2 and NAG1 group, respectively. SfHex3 and SfHex4 were mainly highly expressed in the 4th-5th instar nymphs, as well as in the integument and ovary. The expression level of SfHex3 gradually decreased in male and female adults, and SfHex4 on the first day of female was significantly higher than that on the first day of male. In addition, RNA interference (RNAi) results demonstrated that the downregulation of SfHex3 and SfHex4 expression in 5th-instar nymphs resulted in failed molting, and a high mortality. Furthermore, after RNAi with SfHex3 and SfHex4, the transcript levels on key genes of the chitin metabolism pathway (SfCHS1, SfCHS1a, SfCHS1b, SfTRE1, SfTRE2, SfCht5, and SfCht7) were significantly decreased compared to the control group. Meanwhile the expression levels of SfHex3 and SfHex4 were up-regulated after 6 h and 12 h of 20E treatment. And the transcription levels of SfHex3 and SfHex4 were significantly inhibited at nitenpyram LC, LC, and LC after 96 h of treatment, in 3rd nymphs of Sogatella furcifera. In conclusion, SfHex3 and SfHex4 play important roles in the nymphal development of S. furcifera, contributing to the molting process from nymph to adult. This study not only enhances our understanding of the nitenpyram in pest control, but also provides a foundation for the development of new control strategies using RNAi to targeting SfHex3 and SfHex4.

摘要

β-N-乙酰氨基葡萄糖苷酶和/或β-N-乙酰己糖胺酶(NAGs / Hexes)是关键的核酸外切酶,在昆虫蜕皮过程中起关键作用。SfHex3和SfHex4含有保守的GH20和GH20b催化结构域,分别聚集成NAG2和NAG1组。SfHex3和SfHex4主要在4-5龄若虫以及体壁和卵巢中高表达。SfHex3在雌雄成虫中的表达水平逐渐降低,而雌性第一天的SfHex4明显高于雄性第一天的表达水平。此外,RNA干扰(RNAi)结果表明,5龄若虫中SfHex3和SfHex4表达的下调导致蜕皮失败和高死亡率。此外,在用SfHex3和SfHex4进行RNAi后,与对照组相比,几丁质代谢途径关键基因(SfCHS1、SfCHS1a、SfCHS1b、SfTRE1、SfTRE2、SfCht5和SfCht7)的转录水平显著降低。同时,在20E处理6小时和12小时后,SfHex3和SfHex4的表达水平上调。在处理96小时后,在褐飞虱3龄若虫中,烯啶虫胺LC、LC和LC浓度下SfHex3和SfHex4的转录水平受到显著抑制。总之,SfHex3和SfHex4在褐飞虱若虫发育中起重要作用,有助于若虫到成虫的蜕皮过程。本研究不仅增进了我们对烯啶虫胺在害虫防治中的理解,也为利用RNAi靶向SfHex3和SfHex4开发新的防治策略提供了基础。

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