State Key Laboratory of Plant Cell and Chromosome Engineering; Institute of Genetics and Developmental Biology; Chinese Academy of Sciences; Beijing, PR China; University of Chinese Academy of Sciences; Beijing, PR China.
Plant Signal Behav. 2013 Aug;8(8). doi: 10.4161/psb.24996. Epub 2013 May 20.
Molecular interaction between powdery mildew fungi and Arabidopsis has been widely used as a model system to study plant immunity. Arabidopsis EDR2 (enhanced disease resistance 2) is a well characterized negative regulator in powdery mildew resistance and mildew-induced cell death. Recently, we showed that a mutation in BSK1 (br-signaling kinase 1), suppressed edr2-mediated disease resistance. (1) And the bsk1-1 single mutant displayed enhanced susceptibility to multiple pathogens, indicating that BSK1 plays important roles in plant immunity. BSK1 is a receptor-like cytoplasmic kinase and localizes on plasma membrane; loss of the membrane localization signaling disrupts BSK1 functions in edr2-mediated resistance. Significantly, BSK1 physically associates with the PAMP receptor FLS2 (flagellin sensing 2) and is required by FLS2-mediated ROS burst. (1) Here we show that disruption of BSK1 membrane localization affects the BSK1-FLS2 interactions, suggesting the membrane association of BSK1 is important for both edr2-mediated signaling and the BSK1-FLS2 complex formation. Previously, it was shown that BSK1 is a substrate of the brassinosteroid (BR) receptor BRI1 (brassinosteroid insensitive 1) and plays critical roles in BR signaling. (2) Further exploration of signaling transductions downstream of BSK1-FLS2 complex will not only shed new light on how BSK1 regulates plant immunity, but may also help to dissect the connections between plant growth and defense.
白粉病真菌与拟南芥的分子互作已被广泛用作研究植物免疫的模式系统。拟南芥 EDR2(增强的疾病抗性 2)是白粉病抗性和白粉病诱导细胞死亡中一个特征明确的负调控因子。最近,我们发现 BSK1(BR 信号激酶 1)的突变抑制了 edr2 介导的疾病抗性。(1)并且 bsk1-1 单突变体对多种病原体的敏感性增强,表明 BSK1 在植物免疫中发挥重要作用。BSK1 是一种受体样细胞质激酶,位于质膜上;膜定位信号的缺失破坏了 BSK1 在 edr2 介导的抗性中的功能。重要的是,BSK1 与 PAMP 受体 FLS2(鞭毛感应 2)物理结合,并且是 FLS2 介导的 ROS 爆发所必需的。(1)在这里,我们表明 BSK1 膜定位的破坏影响了 BSK1-FLS2 相互作用,表明 BSK1 的膜结合对于 edr2 介导的信号传导和 BSK1-FLS2 复合物的形成都很重要。先前已经表明,BSK1 是油菜素内酯(BR)受体 BRI1(BR 不敏感 1)的底物,并且在 BR 信号转导中发挥关键作用。(2)进一步探索 BSK1-FLS2 复合物下游的信号转导不仅将揭示 BSK1 如何调节植物免疫,而且还有助于剖析植物生长和防御之间的联系。