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A flagellin-induced complex of the receptor FLS2 and BAK1 initiates plant defence

机译:鞭毛蛋白诱导的受体FLS2和BAK1的复合物启动植物防御

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Plants sense potential microbial invaders by using pattern-recognition receptors to recognize pathogen-associated molecular patterns (PAMPs). In Arabidopsis thaliana, the leucine-rich repeat receptor kinases flagellin-sensitive 2 (FLS2) and elongation factor Tu receptor (EFR) act as pattern-recognition receptors for the bacterial PAMPs flagellin and elongation factor Tu (EF-Tu) and contribute to resistance against bacterial pathogens. Little is known about the molecular mechanisms that link receptor activation to intracellular signal transduction. Here we show that BAK1 (BRI1-associated receptor kinase 1), a leucine-rich repeat receptor-like kinase that has been reported to regulate the brassinosteroid receptor BRI1, is involved in signalling by FLS2 and EFR. Plants carrying bak1 mutations show normal flagellin binding but abnormal early and late flagellin-triggered responses, indicating that BAK1 acts as a positive regulator in signalling. The bak1-mutant plants also show a reduction in early, but not late, EF-Tu-triggered responses. The decrease in responses to PAMPs is not due to reduced sensitivity to brassinosteroids. rnWe provide evidence that FLS2 and BAK1 form a complex in vivo, in a specific ligand-dependent manner, within the first minutes of stimulation with flagellin. Thus, BAK1 is not only associated with developmental regulation through the plant hormone receptor BRI1, but also has a functional role in PRR-dependent signalling, which initiates innate immunity.
机译:植物通过使用模式识别受体来识别病原体相关的分子模式(PAMP),来感知潜在的微生物入侵者。在拟南芥中,富含亮氨酸的重复受体激酶鞭毛蛋白敏感2(FLS2)和延伸因子Tu受体(EFR)充当细菌PAMP鞭毛蛋白和延伸因子Tu(EF-Tu)的模式识别受体,并有助于抵抗抵抗细菌病原体。将受体激活与细胞内信号转导联系起来的分子机制知之甚少。在这里,我们显示BAK1(与BRI1相关的受体激酶1),一种富含亮氨酸的重复受体样激酶,据报道可以调节油菜素甾体受体BRI1,它通过FLS2和EFR参与信号传导。携带bak1突变的植物显示正常的鞭毛蛋白结合,但异常的早期和晚期鞭毛蛋白触发的反应,表明BAK1在信号传导中起正调控作用。 bak1突变植物在EF-Tu触发的早期反应中也显示出减少,但不是晚期。对PAMPs响应的下降并不是由于对油菜素类固醇的敏感性降低。我们提供的证据表明,在鞭毛蛋白刺激的最初几分钟内,FLS2和BAK1在体内以特定的配体依赖性方式形成了复合物。因此,BAK1不仅与通过植物激素受体BRI1的发育调控有关,而且在PRR依赖性信号传导中发挥功能性作用,从而启动先天免疫。

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