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褐飞虱中CYP303A1的特性及其基于ZIF-8纳米颗粒包裹双链RNA的潜在应用

Characterization of CYP303A1 and its potential application based on ZIF-8 nanoparticle-wrapped dsRNA in Nilaparvata lugens (Stål).

作者信息

Du Zuyi, Zhang Guijian, Yu Chang, Qin Yao, He Shun, Li Jianhong, Guo Le, Wan Hu

机构信息

State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan, China.

Hubei Hongshan Laboratory, Wuhan, China.

出版信息

Pest Manag Sci. 2025 Feb;81(2):766-776. doi: 10.1002/ps.8479. Epub 2024 Oct 12.

Abstract

BACKGROUND

RNA interference (RNAi) technology has been put forward as a promising method for pest control and resistance management. Mining highly efficient lethal genes and constructing stable double-stranded RNA (dsRNA) delivery systems are of great significance to improve the application potential of RNAi technology.

RESULTS

In this study, we characterized a molting-related gene, NlCYP303A1, in Nilaparvata lugens that was highly expressed in the cuticle and at the end stages of each instar in nymphs. Silencing the expression of NlCYP303A1 in N. lugens resulted in a deformed phenotype and a significant increase in mortality. Furthermore, interfering with NlCYP303A1 changed the relative expression of key genes in the chitin synthesis and degradation pathway. Finally, we used the nanocarrier zeolitic imidazolate framework-8 (ZIF-8) to load dsNlCYP303A1, forming a complex denoted as dsNlCYP303A1@ZIF-8. The results of both feeding and rice-seedling dip experiments indicated that the expression of NlCYP303A1 was dramatically and persistently suppressed by the dsNlCYP303A1@ZIF-8 treatment, compared with treatment with dsNlCYP303A1, suggesting that ZIF-8 can enhance the interference efficiency as well as the stability of dsNlCYP303A1.

CONCLUSIONS

Our results demonstrate that the lethal gene NlCYP303A1 can be employed as an excellent target for RNAi technology by loading onto a nano-delivery system, and provide new insights into the creation of innovative pest control approaches. © 2024 Society of Chemical Industry.

摘要

背景

RNA干扰(RNAi)技术已被提出作为一种有前景的害虫防治和抗性管理方法。挖掘高效致死基因并构建稳定的双链RNA(dsRNA)递送系统对于提高RNAi技术的应用潜力具有重要意义。

结果

在本研究中,我们鉴定了褐飞虱中一个与蜕皮相关的基因NlCYP303A1,该基因在若虫的表皮以及各龄期末期高度表达。沉默褐飞虱中NlCYP303A1的表达导致了畸形表型和死亡率显著增加。此外,干扰NlCYP303A1改变了几丁质合成和降解途径中关键基因的相对表达。最后,我们使用纳米载体沸石咪唑框架-8(ZIF-8)负载dsNlCYP303A1,形成一种复合物,记为dsNlCYP303A1@ZIF-8。喂食实验和水稻秧苗浸蘸实验的结果均表明,与dsNlCYP303A1处理相比,dsNlCYP303A1@ZIF-8处理显著且持续地抑制了NlCYP303A1的表达,这表明ZIF-8可以提高dsNlCYP303A1的干扰效率及其稳定性。

结论

我们的结果表明,致死基因NlCYP303A1通过负载到纳米递送系统上可作为RNAi技术的优良靶标,并为创新害虫防治方法的开发提供了新见解。©2024化学工业协会。

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