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Comparative study of Arabidopsis PBS1 and a wheat PBS1 homolog helps understand the mechanism of PBS1 functioning in innate immunity

机译:拟南芥PBS1和小麦PBS1同源物的比较研究有助于了解PBS1在先天免疫中的作用机理

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摘要

Arabidopsis AVRPPHB SUSCEPTIBLE1 (PBS1) serves as a “decoy” in activating RESISTANCE TO PSEUDOMONAS SYRINGAE5 (RPS5) upon cleavage by Pseudomonas phaseolicola B (AvrPphB), a Pseudomonas syringae effector. The SEMPH motif in PBS1 was thought to allow it to be distinguished by RPS5 from the closely related Arabidopsis kinases. However, the underlying mechanism is not fully understood. Here, we isolated and characterized a wheat PBS1 homolog, TaPBS1. Although this plasma membrane-localized kinase could be cleaved by AvrPphB and could associate with RPS5, it failed to trigger RPS5-mediated hypersensitive response (HR) in a transient assay. TaPBS1 harbors a STRPH motif. The association of RPS5 with TaPBS1 was weaker than with PBS1. Change of the STRPH motif to the SEMPH motif allowed TaPBS1 to trigger HR. However, the SEMPH motif is not required for association of PBS1 with RPS5. The difference between “SEMPH” and “STRPH” points to the importance of “EM” in PBS1. Furthermore we found that a negatively charged amino acid at the position of “E” in the SEMPH motif was required for recognition of PBS1 by RPS5. Additionally, both PBS1 and TaPBS1 undergo the flagellin-induced phosphorylation. Therefore, our work will help understand the mechanism of PBS1 functioning in plant innate immunity.
机译:拟南芥丁香假单胞菌效应子Pseudomonas phaseolicola B(AvrPphB)切割后,拟南芥AVRPPHB SUSCEPTIBLE1(PBS1)充当激活对假单胞菌丁香酮5(RPS5)的抗性的“诱饵”。 PBS1中的SEMPH基元被认为可以通过RPS5与密切相关的拟南芥激酶区分开。但是,尚不完全了解其基本机制。在这里,我们分离并鉴定了小麦PBS1同源物TaPBS1。尽管此质膜定位激酶可被AvrPphB切割并与RPS5结合,但在瞬时分析中未能触发RPS5介导的超敏反应(HR)。 TaPBS1带有STRPH基序。 RPS5与TaPBS1的关联比与PBS1的关联弱。将STRPH基序更改为SEMPH基序可使TaPBS1触发HR。但是,SEMPH基序对于PBS1与RPS5的结合不是必需的。 “ SEMPH”和“ STRPH”之间的差异指出了PBS1中“ EM”的重要性。此外,我们发现SEMPH基序中“ E”位置带有负电荷的氨基酸对于RPS5识别PBS1是必需的。此外,PBS1和TaPBS1都接受鞭毛蛋白诱导的磷酸化。因此,我们的工作将有助于了解PBS1在植物固有免疫中的作用机理。

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