Institute of Weed Science, Entomology and Plant Pathology, College of Agriculture and Food Science, University of the Philippines Los Baños, Laguna, Philippines.
Arch Insect Biochem Physiol. 2023 Aug;113(4):e22023. doi: 10.1002/arch.22023. Epub 2023 May 24.
The review discusses current RNA interference (RNAi) biotechnological innovations for crop protection. Special attention is given to the management of insect pests in the order Hemiptera. This insect order has the most members of insects which transmit pathogens on economically important crops. It first briefly summarizes the characteristics of the insects in this order and the type of transmission mechanisms for viral and bacterial plant pathogens. RNAi products developed for other insects are also analyzed. Emphasis was made on the need for innovative management approaches to offset the threat of resistance by both the insect vector to insecticides and the pathogens to microbicides. Subsequently, the RNAi technology is described, which is particularly an ingenious method currently utilized in itself or in combination with other modern biotechnological innovations for managing important vector insects that could provide an additional powerful tool for use in integrated pest control programs. The requirements and recent advances for performing RNAi assays are detailed and an overview is given on how to produce cheaper double-stranded RNA as the main component of RNAi-based biopesticide. Examples of agricultural companies that use RNAi biotechnology in their product development were also discussed.
本文讨论了当前用于作物保护的 RNA 干扰(RNAi)生物技术创新。特别关注半翅目昆虫目害虫的管理。该昆虫目拥有最多的昆虫成员,它们会传播对经济上重要作物有影响的病原体。本文首先简要总结了该目昆虫的特征以及病毒和细菌植物病原体的传播机制类型。还分析了针对其他昆虫开发的 RNAi 产品。重点强调需要创新管理方法来抵消昆虫媒介对杀虫剂以及病原体对抗微生物剂产生抗药性的威胁。随后,描述了 RNAi 技术,该技术特别巧妙,目前单独或与其他现代生物技术创新结合使用,可用于管理重要的媒介昆虫,为综合虫害治理计划提供了另一种强大的工具。详细说明了进行 RNAi 检测的要求和最新进展,并概述了如何生产更廉价的双链 RNA,作为基于 RNAi 的生物农药的主要成分。还讨论了一些使用 RNAi 生物技术进行产品开发的农业公司的实例。