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番茄斑萎病毒 P22 和 P19 蛋白作为非毒性决定因子在烟草原生种中功能的比较分析。

Comparative analysis of the capacity of tombusvirus P22 and P19 proteins to function as avirulence determinants in Nicotiana species.

机构信息

Division of Plant Sciences, University of Missouri, Columbia, MO 65211, USA.

出版信息

Mol Plant Microbe Interact. 2011 Jan;24(1):91-9. doi: 10.1094/MPMI-04-10-0089.

Abstract

We have used an agroinfiltration assay for a comparative study of the roles of tombusvirus P22 and P19 proteins in elicitation of hypersensitive response (HR)-like necrosis and the role of P19 in silencing suppression in Nicotiana species. The advantage of agroinfiltration rather than expression in plant virus vectors is that putative viral avirulence proteins can be evaluated in isolation, eliminating the possibility of synergistic effects with other viral proteins. We found that tombusvirus P22 and P19 proteins elicited HR-like necrosis in certain Nicotiana species but, also, that Nicotiana species could recognize subtle differences in sequence between these proteins. Furthermore, Nicotiana species that responded with systemic necrosis to virion inoculations responded to agroinfiltration of tombusvirus P19 with a very weak and delayed necrosis, indicating that the rapid HR-like necrosis was associated with putative resistance genes and a plant defense response that limited the spread of the virus. Tombusvirus P19 proteins also appeared to differ in their effectiveness as silencing suppressors; in our assay, the P19 proteins of Cymbidium ringspot virus and Tomato bushy stunt virus were stronger silencing suppressors than Cucumber necrosis virus P20. Finally, we show that agroinfiltration can be used to track the presence of putative plant resistance genes in Nicotiana species that target either tombusvirus P19 or P22.

摘要

我们使用农杆菌浸润法比较研究了番茄斑萎病毒 P22 和 P19 蛋白在诱导过敏性坏死(HR)样坏死和 P19 在沉默抑制中的作用。农杆菌浸润法相对于植物病毒载体表达的优势在于,可以单独评估假定的病毒非毒性蛋白,消除与其他病毒蛋白协同作用的可能性。我们发现,番茄斑萎病毒 P22 和 P19 蛋白在某些烟草物种中诱导 HR 样坏死,但烟草物种也能够识别这些蛋白之间序列上的细微差异。此外,对病毒粒体接种产生系统性坏死反应的烟草物种,对番茄斑萎病毒 P19 的农杆菌浸润反应非常微弱且延迟,这表明快速的 HR 样坏死与假定的抗性基因和限制病毒传播的植物防御反应有关。番茄斑萎病毒 P19 蛋白在作为沉默抑制剂的有效性方面似乎也有所不同;在我们的实验中,蝴蝶兰环斑病毒和番茄丛矮病毒的 P19 蛋白比黄瓜坏死病毒 P20 更有效地作为沉默抑制剂。最后,我们表明,农杆菌浸润法可用于跟踪烟草物种中针对番茄斑萎病毒 P19 或 P22 的假定植物抗性基因的存在。

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