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RIN4 Functions with Plasma Membrane H+-ATPases to Regulate Stomatal Apertures during Pathogen Attack

机译:RIN4与质膜H + -ATPase一起在病原体发作期间调节气孔的功能

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摘要

Pathogen perception by the plant innate immune system is of central importance to plant survival and productivity. The Arabidopsis protein RIN4 is a negative regulator of plant immunity. In order to identify additional proteins involved in RIN4-mediated immune signal transduction, we purified components of the RIN4 protein complex. We identified six novel proteins that had not previously been implicated in RIN4 signaling, including the plasma membrane (PM) H+-ATPases AHA1 and/or AHA2. RIN4 interacts with AHA1 and AHA2 both in vitro and in vivo. RIN4 overexpression and knockout lines exhibit differential PM H+-ATPase activity. PM H+-ATPase activation induces stomatal opening, enabling bacteria to gain entry into the plant leaf; inactivation induces stomatal closure thus restricting bacterial invasion. The rin4 knockout line exhibited reduced PM H+-ATPase activity and, importantly, its stomata could not be re-opened by virulent Pseudomonas syringae. We also demonstrate that RIN4 is expressed in guard cells, highlighting the importance of this cell type in innate immunity. These results indicate that the Arabidopsis protein RIN4 functions with the PM H+-ATPase to regulate stomatal apertures, inhibiting the entry of bacterial pathogens into the plant leaf during infection.
机译:植物固有免疫系统对病原体的感知对植物存活和生产力至关重要。拟南芥蛋白RIN4是植物免疫力的负调节剂。为了鉴定参与RIN4介导的免疫信号转导的其他蛋白质,我们纯化了RIN4蛋白复合物的成分。我们鉴定了六个以前尚未参与RIN4信号传导的新型蛋白质,包括质膜(PM)H + -ATPases AHA1和/或AHA2。 RIN4在体内外均与AHA1和AHA2相互作用。 RIN4过表达和敲除品系表现出不同的PM H + -ATPase活性。 PM H + -ATPase的激活诱导气孔开放,使细菌能够进入植物叶片。失活诱导气孔关闭,从而限制细菌入侵。 rin4基因敲除品系的PM H + -ATPase活性降低,重要的是,强力假单胞菌无法重开其气孔。我们还证明了RIN4在守卫细胞中表达,突出了这种细胞在先天免疫中的重要性。这些结果表明拟南芥蛋白RIN4与PM H + -ATPase一起调节气孔孔径,抑制细菌病原体在感染过程中进入植物叶片。

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