RNA-Based Vaccination of Plants for Control of Viruses.

IF 8.1 1区 医学 Q1 VIROLOGY
Andreas E Voloudakis, Athanasios Kaldis, Basavaprabhu L Patil
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引用次数: 6

Abstract

Plant viruses cause nearly half of the emerging plant diseases worldwide, contributing to 10-15% of crop yield losses. Control of plant viral diseases is mainly accomplished by extensive chemical applications targeting the vectors (i.e., insects, nematodes, fungi) transmitting these viruses. However, these chemicals have a significant negative effect on human health and the environment. RNA interference is an endogenous, cellular, sequence-specific RNA degradation mechanism in eukaryotes induced by double-stranded RNA molecules that has been exploited as an antiviral strategy through transgenesis. Because genetically modified crop plants are not accepted for cultivation in several countries globally, there is an urgent demand for alternative strategies. This has boosted research on exogenous application of the RNA-based biopesticides that are shown to exhibit significant protective effect against viral infections. Such environment-friendly and efficacious antiviral agents for crop protection will contribute to global food security, without adverse effects on human health.

基于rna的植物预防病毒的研究。
植物病毒造成了全世界近一半的新发植物病害,造成了10-15%的作物产量损失。植物病毒性疾病的控制主要是通过针对传播这些病毒的媒介(即昆虫、线虫、真菌)的广泛化学应用来实现的。然而,这些化学品对人类健康和环境有重大的负面影响。RNA干扰是真核生物中由双链RNA分子诱导的内源性、细胞性、序列特异性RNA降解机制,已被利用为通过转基因的抗病毒策略。由于转基因作物在全球一些国家不被接受种植,因此迫切需要替代策略。这促进了基于rna的生物农药外源性应用的研究,这些生物农药显示出对病毒感染的显着保护作用。这种环境友好和有效的作物保护抗病毒药物将有助于全球粮食安全,而不会对人类健康产生不利影响。
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来源期刊
CiteScore
19.40
自引率
0.90%
发文量
28
期刊介绍: The Annual Review of Virology serves as a conduit for disseminating thrilling advancements in our comprehension of viruses spanning animals, plants, bacteria, archaea, fungi, and protozoa. Its reviews illuminate novel concepts and trajectories in basic virology, elucidating viral disease mechanisms, exploring virus-host interactions, and scrutinizing cellular and immune responses to virus infection. These reviews underscore the exceptional capacity of viruses as potent probes for investigating cellular function.
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