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Antiviral strategies in plants based on RNA silencing.

机译:基于RNA沉默的植物抗病毒策略。

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One of the challenges being faced in the twenty-first century is the biological control of plant viral infections. Among the different strategies to combat virus infections, those based on pathogen-derived resistance (PDR) are probably the most powerful approaches to confer virus resistance in plants. The application of the PDR concept not only revealed the existence of a previously unknown sequence-specific RNA-degradation mechanism in plants, but has also helped to design antiviral strategies to engineer viral resistant plants in the last 25 years. In this article, we review the different platforms related to RNA silencing that have been developed during this time to obtain plants resistant to viruses and illustrate examples of current applications of RNA silencing to protect crop plants against viral diseases of agronomic relevance. This article is part of a Special Issue entitled: MicroRNAs in viral gene regulation.
机译:在二十世纪面临的挑战之一是生物控制植物病毒感染。在对抗病毒感染的不同策略中,基于病原体抗性(PDR)的策略可能是赋予植物抗病毒性的最有效方法。 PDR概念的应用不仅揭示了植物中以前未知的序列特异性RNA降解机制的存在,而且还帮助设计了近25年来设计抗病毒植物的抗病毒策略。在本文中,我们回顾了在此期间开发的与RNA沉默相关的不同平台,以获得对病毒具有抗性的植物,并举例说明了RNA沉默在保护农作物免受农艺相关病毒性疾病侵害方面的当前应用实例。本文是名为“病毒基因调控中的MicroRNA”的特刊的一部分。

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