Hough James, Howard John D, Brown Stephen, Portwood David E, Kilby Peter M, Dickman Mark J
Department of Chemical and Biological Engineering, University of Sheffield, Sheffield, United Kingtom.
Sheffield RNAi Screening Facility, School of Biosciences, University of Sheffield, Sheffield, United Kingtom.
Front Bioeng Biotechnol. 2022 Oct 10;10:980592. doi: 10.3389/fbioe.2022.980592. eCollection 2022.
Current crop pest control strategies rely on insecticidal and fungicidal sprays, plant genetic resistance, transgenes and agricultural practices. However, many insects, plant viruses, and fungi have no current means of control or have developed resistance against traditional pesticides. dsRNA is emerging as a novel sustainable method of plant protection as an alternative to traditional chemical pesticides. The successful commercialisation of dsRNA based biocontrols for effective pest management strategies requires the economical production of large quantities of dsRNA combined with suitable delivery methods to ensure RNAi efficacy against the target pest. A number of methods exist for the production and delivery of dsRNA based biocontrols and here we review alternative methods currently employed and emerging new approaches for their production. Additionally, we highlight potential challenges that will need to be addressed prior to widespread adoption of dsRNA biocontrols as novel sustainable alternatives to traditional chemical pesticides.
当前的农作物害虫防治策略依赖于杀虫和杀菌喷雾、植物遗传抗性、转基因技术及农业实践。然而,许多昆虫、植物病毒和真菌目前尚无防治手段,或已对传统农药产生抗性。双链RNA(dsRNA)作为一种新型的可持续植物保护方法正在兴起,可替代传统化学农药。基于dsRNA的生物防治剂成功商业化以实现有效的害虫管理策略,需要大量经济地生产dsRNA并结合合适的递送方法,以确保RNA干扰对目标害虫的功效。存在多种生产和递送基于dsRNA的生物防治剂的方法,在此我们综述目前采用的替代方法以及其生产的新出现方法。此外,我们强调在dsRNA生物防治剂作为传统化学农药的新型可持续替代品广泛应用之前需要解决的潜在挑战。