Department of Entomology, Kansas State University, Manhattan, KS, USA.
Pest Manag Sci. 2021 Jun;77(6):2645-2658. doi: 10.1002/ps.6277. Epub 2021 Feb 1.
Low RNA interference (RNAi) efficiency in many insect pests has significantly prevented its widespread application for insect pest management. This article provides a comprehensive review of recent research in developing various strategies for enhancing RNAi efficiency. Our review focuses on the strategies in target gene selection and double-stranded RNA (dsRNA) delivery technologies. For target gene selection, genome-wide or large-scale screening strategies have been used to identify most susceptible target genes for RNAi. Other strategies include the design of dsRNA constructs and manipulate the structure of dsRNA to maximize the RNA efficiency for a target gene. For dsRNA delivery strategies, much recent research has focused on the applications of complexed or encapsulated dsRNA using various reagents, polymers, or peptides to enhance dsRNA stability and cellular uptake. Other dsRNA delivery strategies include genetic engineering of microbes (e.g. fungi, bacteria, and viruses) and plants to produce insect-specific dsRNA. The ingestion of the dsRNA-producing organisms or tissues will have lethal or detrimental effects on the target insect pests. This article also identifies obstacles to further developing RNAi for insect pest management and suggests future avenues of research that will maximize the potential for using RNAi for insect pest management. © 2021 Society of Chemical Industry.
低 RNA 干扰 (RNAi) 效率在许多害虫中显著阻碍了其在害虫管理中的广泛应用。本文全面回顾了近年来提高 RNAi 效率的各种策略的研究进展。我们的综述重点介绍了靶基因选择和双链 RNA (dsRNA) 传递技术的策略。对于靶基因选择,已经使用全基因组或大规模筛选策略来鉴定最易受 RNAi 影响的靶基因。其他策略包括 dsRNA 构建的设计和操纵 dsRNA 的结构,以最大限度地提高针对靶基因的 RNA 效率。对于 dsRNA 传递策略,许多最近的研究都集中在使用各种试剂、聚合物或肽来复杂或封装 dsRNA 以提高 dsRNA 稳定性和细胞摄取方面的应用。其他 dsRNA 传递策略包括对微生物(如真菌、细菌和病毒)和植物进行基因工程,以产生昆虫特异性 dsRNA。dsRNA 产生的生物体或组织的摄入将对靶标害虫产生致命或有害的影响。本文还确定了进一步开发 RNAi 用于害虫管理的障碍,并提出了未来将 RNAi 用于害虫管理的最大潜力的研究方向。©2021 化学工业协会。
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