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首页> 外文期刊>Journal of general plant pathology >Attenuated plant viruses: preventing virus diseases and understanding the molecular mechanism
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Attenuated plant viruses: preventing virus diseases and understanding the molecular mechanism

机译:减毒植物病毒:预防病毒疾病和了解分子机制

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摘要

Attenuated viruses have been isolated and studied not only as a practical means of controlling virus diseases but also to gain a molecular understanding of viral virulence and cross protection. They have been isolated from crop fields and generated through high/low temperature treatment or by mutagens such as nitrous acid and ultraviolet irradiation. Some viruses have been beneficially used in fields and evaluated for one or more decades. Molecular genetic studies on attenuated viruses have revealed that amino acid substitutions are located in replicase and the movement protein in tobamovirus, protein 2b for cucumovirus, and P1 and HC-Pro for potyvirus. In most cases, with a few exceptions, symptom attenuation is positively correlated with a reduced level of RNA silencing suppression. Molecular mechanisms underlying virus attenuation and cross protection and the rationale for practical use of attenuated viruses for effective virus disease control are discussed.
机译:已分离并研究了减毒病毒,不仅作为控制病毒疾病的实用手段,而且还获得了对病毒毒力和交叉保护的分子理解。它们已从农作物田中分离出来,并通过高温/低温处理或诱变剂(例如亚硝酸和紫外线辐射)产生。一些病毒已经在领域中得到了有益的使用,并经过了十多年的评估。对减毒病毒的分子遗传学研究表明,氨基酸置换位于复制酶中,并且在杆状病毒中为运动蛋白,在黄瓜花叶病毒中为蛋白2b,而在杯状病毒中为P1和HC-Pro。在大多数情况下,除少数例外,症状减轻与RNA沉默抑制水平降低呈正相关。讨论了病毒减毒和交叉保护的分子机制,以及为有效控制病毒疾病而实际使用减毒病毒的原理。

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