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叶面喷施 RNAi:在田间应用中的效率和挑战。

RNAi as a Foliar Spray: Efficiency and Challenges to Field Applications.

机构信息

Centre for Horticulture Science, Queensland Alliance for Agriculture and Food Innovation, The University of Queensland, St. Lucia, QLD 4072, Australia.

出版信息

Int J Mol Sci. 2022 Jun 14;23(12):6639. doi: 10.3390/ijms23126639.

Abstract

RNA interference (RNAi) is a powerful tool that is being increasingly utilized for crop protection against viruses, fungal pathogens, and insect pests. The non-transgenic approach of spray-induced gene silencing (SIGS), which relies on spray application of double-stranded RNA (dsRNA) to induce RNAi, has come to prominence due to its safety and environmental benefits in addition to its wide host range and high target specificity. However, along with promising results in recent studies, several factors limiting SIGS RNAi efficiency have been recognized in insects and plants. While sprayed dsRNA on the plant surface can produce a robust RNAi response in some chewing insects, plant uptake and systemic movement of dsRNA is required for delivery to many other target organisms. For example, pests such as sucking insects require the presence of dsRNA in vascular tissues, while many fungal pathogens are predominately located in internal plant tissues. Investigating the mechanisms by which sprayed dsRNA enters and moves through plant tissues and understanding the barriers that may hinder this process are essential for developing efficient ways to deliver dsRNA into plant systems. In this review, we assess current knowledge of the plant foliar and cellular uptake of dsRNA molecules. We will also identify major barriers to uptake, including leaf morphological features as well as environmental factors, and address methods to overcome these barriers.

摘要

RNA 干扰(RNAi)是一种强大的工具,越来越多地被用于保护作物免受病毒、真菌病原体和昆虫的侵害。依赖于双链 RNA(dsRNA)喷雾应用诱导 RNAi 的喷雾诱导基因沉默(SIGS)非转基因方法,由于其安全性和环境效益,除了其广泛的宿主范围和高目标特异性外,已经引起了关注。然而,随着最近研究中取得的有希望的结果,人们已经认识到在昆虫和植物中存在几种限制 SIGS RNAi 效率的因素。虽然在植物表面喷洒 dsRNA 可以在一些咀嚼昆虫中产生强烈的 RNAi 反应,但需要将 dsRNA 植物吸收和系统移动到许多其他靶标生物中。例如,吮吸昆虫等害虫需要 dsRNA 存在于血管组织中,而许多真菌病原体主要位于植物内部组织中。研究喷洒的 dsRNA 进入和通过植物组织的机制以及了解可能阻碍这一过程的障碍,对于开发将 dsRNA 有效递送至植物系统的方法至关重要。在这篇综述中,我们评估了 dsRNA 分子在植物叶片和细胞摄取方面的最新知识。我们还将确定摄取的主要障碍,包括叶片形态特征以及环境因素,并探讨克服这些障碍的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c505/9224206/28a644e50960/ijms-23-06639-g001.jpg

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