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Integrated decoys and effector traps: how to catch a plant pathogen

机译:集成诱饵和效应诱捕器:如何捕获植物病原体

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Plant immune receptors involved in disease resistance and crop protection are related to the animal Nod-like receptor (NLR) class, and recognise the virulence effectors of plant pathogens, whereby they arm the plant’s defensive response. Although plant NLRs mainly contain three protein domains, about 10?% of these receptors identified by extensive cross-plant species data base searches have now been shown to include novel and highly variable integrated domains, some of which have been shown to detect pathogen effectors by direct interaction. Sarris et al. have identified a large number of integrated domains that can be used to detect effector targets in host plant proteomes and identify unknown pathogen effectors. Please see related Research article: Comparative analysis of plant immune receptor architectures uncovers host proteins likely targeted by pathogens, http://dx.doi.org/10.1186/s12915-016-0228-7 Since the time of writing, a closely related paper has been released: Kroj T, Chanclud E, Michel-Romiti C, Grand X, Morel J-B. Integration of decoy domains derived from protein targets of pathogen effectors into plant immune receptors is widespread. New Phytol. 2016 (ahead of print)
机译:涉及疾病抗性和农作物保护的植物免疫受体与动物Nod-like受体(NLR)类有关,并识别植物病原体的毒力效应因子,从而武装植物的防御反应。尽管植物的NLR主要包含三个蛋白质结构域,但现已证明,通过广泛的跨植物物种数据库搜索鉴定出的这些受体中,约有10%包含了新颖且高度可变的整合结构域,其中一些已被证明可以检测病原体效应子。直接互动。 Sarris等。已鉴定出大量整合域,可用于检测宿主植物蛋白质组中的效应子靶标并鉴定未知的病原体效应子。请参阅相关研究文章:对植物免疫受体结构的比较分析发现了病原体可能靶向的宿主蛋白,http://dx.doi.org/10.1186/s12915-016-0228-7自撰写本文以来,一篇密切相关的论文已发布:Kroj T,Chanclud E,Michel-Romiti C,Grand X,Morel JB。源自病原体效应子的蛋白质靶标的诱饵结构域整合到植物免疫受体中已很普遍。新植物。 2016(印刷前)

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