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基于RNA干扰技术防治害虫的可行性、局限性及可能的解决方案

Feasibility, limitation and possible solutions of RNAi-based technology for insect pest control.

作者信息

Zhang Hao, Li Hai-Chao, Miao Xue-Xia

机构信息

Key Laboratory of Insect Developmental and Evolutionary Biology, Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai, China.

出版信息

Insect Sci. 2013 Feb;20(1):15-30. doi: 10.1111/j.1744-7917.2012.01513.x. Epub 2012 Jun 12.

Abstract

Numerous studies indicate that target gene silencing by RNA interference (RNAi) could lead to insect death. This phenomenon has been considered as a potential strategy for insect pest control, and it is termed RNAi-mediated crop protection. However, there are many limitations using RNAi-based technology for pest control, with the effectiveness target gene selection and reliable double-strand RNA (dsRNA) delivery being two of the major challenges. With respect to target gene selection, at present, the use of homologous genes and genome-scale high-throughput screening are the main strategies adopted by researchers. Once the target gene is identified, dsRNA can be delivered by micro-injection or by feeding as a dietary component. However, micro-injection, which is the most common method, can only be used in laboratory experiments. Expression of dsRNAs directed against insect genes in transgenic plants and spraying dsRNA reagents have been shown to induce RNAi effects on target insects. Hence, RNAi-mediated crop protection has been considered as a potential new-generation technology for pest control, or as a complementary method of existing pest control strategies; however, further development to improve the efficacy of protection and range of species affected is necessary. In this review, we have summarized current research on RNAi-based technology for pest insect management. Current progress has proven that RNAi technology has the potential to be a tool for designing a new generation of insect control measures. To accelerate its practical application in crop protection, further study on dsRNA uptake mechanisms based on the knowledge of insect physiology and biochemistry is needed.

摘要

大量研究表明,RNA干扰(RNAi)介导的靶基因沉默可导致昆虫死亡。这一现象被视为一种潜在的害虫防治策略,被称为RNAi介导的作物保护。然而,使用基于RNAi的技术进行害虫防治存在许多局限性,其中有效靶基因的选择和可靠的双链RNA(dsRNA)递送是两个主要挑战。关于靶基因的选择,目前研究人员采用的主要策略是使用同源基因和基因组规模的高通量筛选。一旦确定了靶基因,dsRNA可以通过显微注射或作为饮食成分喂食来递送。然而,显微注射作为最常用的方法,仅能用于实验室实验。在转基因植物中表达针对昆虫基因的dsRNA以及喷洒dsRNA试剂已被证明可对靶标昆虫产生RNAi效应。因此,RNAi介导的作物保护被视为一种潜在的新一代害虫防治技术,或作为现有害虫防治策略的补充方法;然而,有必要进一步改进以提高保护效果和受影响物种的范围。在这篇综述中,我们总结了目前基于RNAi的技术在害虫管理方面的研究。目前的进展已证明RNAi技术有潜力成为设计新一代昆虫控制措施的工具。为加速其在作物保护中的实际应用,需要基于昆虫生理学和生物化学知识对dsRNA摄取机制进行进一步研究。

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