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利用RNA干扰技术实现选择性和可持续的作物保护。

Leveraging RNA interference technology for selective and sustainable crop protection.

作者信息

Qi Hong-Yue, Zhang Dan-Dan, Liu Binhui, Chen Jie-Yin, Han Dongfei, Wang Dan

机构信息

The State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.

Western Agricultural Research Center, Chinese Academy of Agricultural Sciences, Changji, China.

出版信息

Front Plant Sci. 2024 Dec 24;15:1502015. doi: 10.3389/fpls.2024.1502015. eCollection 2024.

Abstract

Double-stranded RNA (dsRNA) has emerged as key player in gene silencing for the past two decades. Tailor-made dsRNA is now recognized a versatile raw material, suitable for a wide range of applications in biopesticide formulations, including insect control to pesticide resistance management. The mechanism of RNA interference (RNAi) acts at the messenger RNA (mRNA) level, utilizing a sequence-dependent approach that makes it unique in term of effectiveness and specificity compared to conventional agrochemicals. Two primary categories of small RNAs, known as short interfering RNAs (siRNAs) and microRNAs (miRNAs), function in both somatic and germline lineages in a broad range of eukaryotic species to regulate endogenous genes and to defend the genome from invasive nucleic acids. Furthermore, the application of RNAi in crop protection can be achieved by employing plant-incorporated protectants through plant transformation, but also by non-transformative strategies such as the use of formulations of sprayable RNAs as direct control agents, resistance factor repressors or developmental disruptors. This review explores the agricultural applications of RNAi, delving into its successes in pest-insect control and considering its broader potential for managing plant pathogens, nematodes, and pests. Additionally, the use of RNAi as a tool for addressing pesticide-resistant weeds and insects is reviewed, along with an evaluation of production costs and environmental implications.

摘要

在过去二十年中,双链RNA(dsRNA)已成为基因沉默中的关键角色。特制的dsRNA如今被视为一种通用原料,适用于生物农药制剂中的广泛应用,包括从昆虫防治到抗药性管理。RNA干扰(RNAi)机制作用于信使核糖核酸(mRNA)水平,采用一种依赖序列的方法,这使其在有效性和特异性方面与传统农用化学品相比独具特色。两类主要的小RNA,即小干扰RNA(siRNA)和微小RNA(miRNA),在广泛的真核生物物种的体细胞和生殖细胞谱系中发挥作用,以调控内源基因并保护基因组免受侵入性核酸的影响。此外,RNAi在作物保护中的应用既可以通过植物转化采用植物内保护剂来实现,也可以通过非转化策略来实现,例如使用可喷雾RNA制剂作为直接控制剂、抗性因子抑制剂或发育干扰剂。本综述探讨了RNAi在农业中的应用,深入研究其在害虫防治方面的成功之处,并考虑其在管理植物病原体、线虫和害虫方面的更广泛潜力。此外,还综述了将RNAi用作解决抗农药杂草和昆虫问题的工具,以及对生产成本和环境影响的评估。

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