Guo Huan, Liu Xuan-Zheng, Long Gui-Jun, Gong Lang-Lang, Zhang Meng-Qi, Ma Yun-Feng, Hull J Joe, Dewer Youssef, He Ming, He Peng
State Key Laboratory Breeding Base of Green Pesticide and Agricultural Bioengineering, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Guiyang, P. R. China.
Pest Management and Biocontrol Research Unit, US Arid Land Agricultural Research Center, USDA Agricultural Research Services, Maricopa, AZ, USA.
Pest Manag Sci. 2023 Mar;79(3):1048-1061. doi: 10.1002/ps.7271. Epub 2022 Nov 25.
Epidermal growth factor receptor (EGFR), zinc finger homeodomain-2 (zfh-2), Abdominal-A (Abd-A), and Abdominal-B (Abd-B) regulate the growth and development of the insect abdomen. However, their potential roles in pest control have not been fully assessed. The development of insecticide resistance to multiple chemistries in the white-backed planthopper (WBPH), a major pest of rice, has prompted interest in novel pest control approaches that are ecologically friendly. Although pest management approaches based on double-stranded RNA (dsRNA)-mediated RNA interference (RNAi) have potential, their susceptibility to degradation limits large-scale field applications. These limitations, however, can be overcome with nanoparticle-dsRNA complexes that have greater environmental stability and improved cellular uptake.
In this study, at 5 days post-injection, transcripts for the four gene targets were reduced relative to controls and all of the experimental groups exhibited significant phenotypic defects and increased mortality. To evaluate the potential of these gene targets for field applications, a nanocarrier-dsRNA spray delivery system was assessed for RNAi efficacy. At 11 days post-spray, significant phenotypic defects and increased mortality were observed in all experimental groups.
Taken together, the results confirm the suitability of the target genes (SfEGFR, Sfzfh-2, SfAbd-A, and SfAbd-B) for pest management and demonstrate the efficacy of the nanocarrier spray system for inducing RNAi-mediated knockdown. As such, the study lays the foundation for the further development and optimization of this technology for large-scale field applications. © 2022 Society of Chemical Industry.
表皮生长因子受体(EGFR)、锌指同源结构域-2(zfh-2)、腹-A(Abd-A)和腹-B(Abd-B)调节昆虫腹部的生长和发育。然而,它们在害虫防治中的潜在作用尚未得到充分评估。白背飞虱是水稻的主要害虫,对多种化学药剂产生了抗药性,这促使人们对生态友好型的新型害虫防治方法产生了兴趣。尽管基于双链RNA(dsRNA)介导的RNA干扰(RNAi)的害虫管理方法具有潜力,但其易降解性限制了大规模田间应用。然而,具有更高环境稳定性和改善细胞摄取能力的纳米颗粒-dsRNA复合物可以克服这些限制。
在本研究中,注射后5天,四个基因靶点的转录本相对于对照组减少,所有实验组均表现出明显的表型缺陷和死亡率增加。为了评估这些基因靶点在田间应用的潜力,对一种纳米载体-dsRNA喷雾递送系统的RNAi效果进行了评估。喷雾后11天,所有实验组均观察到明显的表型缺陷和死亡率增加。
综上所述,结果证实了靶基因(SfEGFR、Sfzfh-2、SfAbd-A和SfAbd-B)在害虫管理中的适用性,并证明了纳米载体喷雾系统诱导RNAi介导的基因敲低效果。因此,该研究为该技术进一步开发和优化以用于大规模田间应用奠定了基础。© 2022化学工业协会。