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Salmonella enterica flagellin is recognized via FLS2 and activates PAMP-triggered immunity in Arabidopsis thaliana.

机译:沙门氏菌鞭毛蛋白可通过FLS2识别,并激活拟南芥中PAMP触发的免疫力。

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Infections with Salmonella enterica belong to the most prominent causes of food poisoning and infected fruits and vegetables represent important vectors for salmonellosis. Recent evidence indicates that plants recognize S. enterica and raise defense responses. Nonetheless, the molecular mechanisms controlling the interaction of S. enterica with plants are still largely unclear. Here, we show that flagellin from S. enterica represents a prominent pathogen-associated molecular pattern (PAMP) in Arabidopsis thaliana, which induces PAMP-triggered immunity (PTI) via the recognition of the flg22 domain by the receptor kinase FLS2. The Arabidopsis fls2 mutant shows reduced though not abolished PTI activation, indicating that plants rely also on recognition of other S. enterica PAMPs. Interestingly, the S. enterica type III secretion system (T3SS) mutant prgH- induced stronger defense gene expression than wild-type bacteria in Arabidopsis, suggesting that T3SS effectors are involved in defense suppression. Furthermore, we observe that S. enterica strains show variation in the flg22 epitope, which results in proteins with reduced PTI-inducing activity. Altogether, these results show that S. enterica activates PTI in Arabidopsis and suggest that, in order to accomplish plant colonization, S. enterica evolved strategies to avoid or suppress PTI.
机译:肠沙门氏菌感染是食物中毒的最主要原因,被感染的水果和蔬菜是沙门氏菌病的重要载体。最近的证据表明植物识别小肠链球菌并提高防御反应。尽管如此,控制肠炎链球菌与植物相互作用的分子机制仍不清楚。在这里,我们表明,来自肠炎沙门氏菌的鞭毛蛋白代表拟南芥中的一个突出的病原体相关分子模式(PAMP),通过受体激酶FLS2对flg22域的识别来诱导PAMP触发的免疫(PTI)。拟南芥fls2突变体显示出降低的PTI活化程度,尽管没有消除,表明植物还依赖于对其他肠炎链球菌PAMP的识别。有趣的是,在拟南芥中,S。enterica III型分泌系统(T3SS)突变体prgH -诱导了比野生型细菌更强的防御基因表达,这表明T3SS效应子参与了防御抑制。此外,我们观察到肠炎链球菌菌株在flg22表位上显示出变异,从而导致蛋白质的PTI诱导活性降低。总而言之,这些结果表明小肠沙门氏菌激活拟南芥中的PTI,并表明为了完成植物定殖,小肠沙门氏菌发展了避免或抑制PTI的策略。

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