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Joining the Crowd: Integrating Plant Virus Proteins into the Larger World of Pathogen Effectors
Annual Review of Phytopathology ( IF 10.2 ) Pub Date : 2018-08-27 00:00:00 , DOI: 10.1146/annurev-phyto-080417-050151
Scott M. Leisner 1 , James E. Schoelz 2
Affiliation  

The first bacterial and viral avirulence (avr) genes were cloned in 1984. Although virus and bacterial avr genes were physically isolated in the same year, the questions associated with their characterization after discovery were very different, and these differences had a profound influence on the narrative of host-pathogen interactions for the past 30 years. Bacterial avr proteins were subsequently shown to suppress host defenses, leading to their reclassification as effectors, whereas research on viral avr proteins centered on their role in the viral infection cycle rather than their effect on host defenses. Recent studies that focus on the multifunctional nature of plant virus proteins have shown that some virus proteins are capable of suppression of the same host defenses as bacterial effectors. This is exemplified by the P6 protein of Cauliflower mosaic virus (CaMV), a multifunctional plant virus protein that facilitates several steps in the infection, including modulation of host defenses. This review highlights the modular structure and multifunctional nature of CaMV P6 and illustrates its similarities to other, well-established pathogen effectors.

中文翻译:


加入人群:将植物病毒蛋白整合到更大的病原效应子世界中

第一个细菌和病毒无毒(AVR)基因在1984年虽然病毒和细菌克隆AVR这些基因是在同一年物理分离的,发现后与它们的特征相关的问题非常不同,并且这些差异对过去30年中宿主-病原体相互作用的叙述产生了深远的影响。随后显示细菌avr蛋白抑制宿主防御,导致其重新分类为效应子,而对病毒avr蛋白的研究集中于其在病毒感染周期中的作用,而不是其对宿主防御的作用。关注植物病毒蛋白多功能性质的最新研究表明,某些病毒蛋白能够抑制与细菌效应子相同的宿主防御。花椰菜花叶病毒的P6蛋白就是例证(CaMV),一种多功能植物病毒蛋白,可促进感染的多个步骤,包括调节宿主防御能力。这篇综述突出了CaMV P6的模块结构和多功能性质,并说明了其与其他公认的病原体效应子的相似性。

更新日期:2018-08-27
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