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基于RNA干扰的生物农药的前景展望。

A Perspective on RNAi-Based Biopesticides.

作者信息

Fletcher Stephen J, Reeves Philip T, Hoang Bao Tram, Mitter Neena

机构信息

Centre for Horticultural Science, Queensland Alliance for Agriculture and Food Innovation, University of Queensland, Saint Lucia, QLD, Australia.

Independent Researcher, Canberra, ACT, Australia.

出版信息

Front Plant Sci. 2020 Feb 12;11:51. doi: 10.3389/fpls.2020.00051. eCollection 2020.

Abstract

Sustainable agriculture relies on practices and technologies that combine effectiveness with a minimal environmental footprint. RNA interference (RNAi), a eukaryotic process in which transcript expression is reduced in a sequence-specific manner, can be co-opted for the control of plant pests and pathogens in a topical application system. Double-stranded RNA (dsRNA), the key trigger molecule of RNAi, has been shown to provide protection without the need for integration of dsRNA-expressing constructs as transgenes. Consequently, development of RNA-based biopesticides is gaining momentum as a narrow-spectrum alternative to chemical-based control measures, with pests and pathogens targeted with accuracy and specificity. Limitations for a commercially viable product to overcome include stable delivery of the topically applied dsRNA and extension of the duration of protection. In addition to the research focus on delivery of dsRNA, development of regulatory frameworks, risk identification, and establishing avoidance and mitigation strategies is key to widespread deployment of topical RNAi technologies. Once in place, these measures will provide the crop protection industry with the certainty necessary to expend resources on the development of innovative dsRNA-based products. Readily evident risks to human health appear minimal, with multiple barriers to uptake and a long history of consumption of dsRNA from plant material. Unintended impacts to the environment are expected to be most apparent in species closely related to the target. Holistic design practices, which incorporate bioinformatics-based dsRNA selection along with experimental testing, represent important techniques for elimination of adverse impacts.

摘要

可持续农业依赖于将有效性与最小环境足迹相结合的实践和技术。RNA干扰(RNAi)是一种真核生物过程,其中转录本表达以序列特异性方式降低,可在局部应用系统中用于控制植物害虫和病原体。双链RNA(dsRNA)是RNAi的关键触发分子,已证明无需将表达dsRNA的构建体作为转基因整合即可提供保护。因此,基于RNA的生物农药的开发正成为一种窄谱替代化学控制措施的方法,能够精准且特异性地靶向害虫和病原体。要开发出商业上可行的产品,需要克服的限制包括局部应用dsRNA的稳定递送以及延长保护持续时间。除了专注于dsRNA递送的研究外,制定监管框架、识别风险以及制定规避和缓解策略对于局部RNAi技术的广泛应用至关重要。一旦这些措施到位,将为作物保护行业提供必要的确定性,以便在开发基于dsRNA的创新产品上投入资源。对人类健康的明显风险似乎极小,因为存在多种摄取障碍,并且植物材料中的dsRNA已有很长的食用历史。对环境的意外影响预计在与目标密切相关的物种中最为明显。整体设计实践,包括基于生物信息学的dsRNA选择以及实验测试,是消除不利影响的重要技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd9e/7028687/39d9a9ab0017/fpls-11-00051-g001.jpg

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