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Arabidopsis Actin-Depolymerizing Factor-4 Links Pathogen Perception Defense Activation and Transcription to Cytoskeletal Dynamics

机译:拟南芥肌动蛋白解聚因子4链接到细胞骨架动力学病原体知觉防御激活和转录。

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摘要

The primary role of Actin-Depolymerizing Factors (ADFs) is to sever filamentous actin, generating pointed ends, which in turn are incorporated into newly formed filaments, thus supporting stochastic actin dynamics. Arabidopsis ADF4 was recently shown to be required for the activation of resistance in Arabidopsis following infection with the phytopathogenic bacterium Pseudomonas syringae pv. tomato DC3000 (Pst) expressing the effector protein AvrPphB. Herein, we demonstrate that the expression of RPS5, the cognate resistance protein of AvrPphB, was dramatically reduced in the adf4 mutant, suggesting a link between actin cytoskeletal dynamics and the transcriptional regulation of R-protein activation. By examining the PTI (PAMP Triggered Immunity) response in the adf4 mutant when challenged with Pst expressing AvrPphB, we observed a significant reduction in the expression of the PTI-specific target gene FRK1 (Flg22-Induced Receptor Kinase 1). These data are in agreement with recent observations demonstrating a requirement for RPS5 in PTI-signaling in the presence of AvrPphB. Furthermore, MAPK (Mitogen-Activated Protein Kinase)-signaling was significantly reduced in the adf4 mutant, while no such reduction was observed in the rps5-1 point mutation under similar conditions. Isoelectric focusing confirmed phosphorylation of ADF4 at serine-6, and additional in planta analyses of ADF4's role in immune signaling demonstrates that nuclear localization is phosphorylation independent, while localization to the actin cytoskeleton is linked to ADF4 phosphorylation. Taken together, these data suggest a novel role for ADF4 in controlling gene-for-gene resistance activation, as well as MAPK-signaling, via the coordinated regulation of actin cytoskeletal dynamics and R-gene transcription.
机译:肌动蛋白解聚因子(ADF)的主要作用是切断丝状肌动蛋白,产生尖端,然后将尖端结合到新形成的丝中,从而支持随机肌动蛋白动力学。最近已证明拟南芥ADF4是感染植物病原细菌丁香假单胞菌pv后激活拟南芥中抗性的必需物质。表达效应蛋白AvrPphB的番茄DC3000(Pst)。在这里,我们证明了adf4突变体中,AvrPphB的同源抗性蛋白RPS5的表达显着降低,表明肌动蛋白细胞骨架动力学与R蛋白活化的转录调控之间存在联系。通过检查adf4突变体在受到表达Pst的AvrPphB攻击时的PTI(PAMP触发的免疫)应答,我们观察到PTI特异性靶基因FRK1(Flg22诱导的受体激酶1)的表达显着降低。这些数据与最近的观察结果一致,表明在存在AvrPphB的情况下,PTI信号传输中需要RPS5。此外,在adf4突变体中MAPK(促分裂原活化蛋白激酶)信号显着降低,而在类似条件下的rps5-1点突变中未观察到这种降低。等电聚焦证实了ADF4在丝氨酸6处的磷酸化,并且在植物中对ADF4在免疫信号中的作用的分析还表明,核定位是独立于磷酸化的,而肌动蛋白细胞骨架的定位与ADF4磷酸化相关。综上所述,这些数据表明,ADF4在肌动蛋白细胞骨架动力学和R基因转录的协调调控中,在控制基因对基因的抗性激活以及MAPK信号传导中起着新的作用。

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