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PP2C 型磷酸酶 AP2C1 负向调节 MPK4 和 MPK6,它在拟南芥中调控先天免疫、茉莉酸和乙烯水平。

The PP2C-type phosphatase AP2C1, which negatively regulates MPK4 and MPK6, modulates innate immunity, jasmonic acid, and ethylene levels in Arabidopsis.

作者信息

Schweighofer Alois, Kazanaviciute Vaiva, Scheikl Elisabeth, Teige Markus, Doczi Robert, Hirt Heribert, Schwanninger Manfred, Kant Merijn, Schuurink Robert, Mauch Felix, Buchala Antony, Cardinale Francesca, Meskiene Irute

机构信息

Max F. Perutz Laboratories of the University of Viena, 1030 Viena, Austria.

出版信息

Plant Cell. 2007 Jul;19(7):2213-24. doi: 10.1105/tpc.106.049585. Epub 2007 Jul 13.

Abstract

Wound signaling pathways in plants are mediated by mitogen-activated protein kinases (MAPKs) and stress hormones, such as ethylene and jasmonates. In Arabidopsis thaliana, the transmission of wound signals by MAPKs has been the subject of detailed investigations; however, the involvement of specific phosphatases in wound signaling is not known. Here, we show that AP2C1, an Arabidopsis Ser/Thr phosphatase of type 2C, is a novel stress signal regulator that inactivates the stress-responsive MAPKs MPK4 and MPK6. Mutant ap2c1 plants produce significantly higher amounts of jasmonate upon wounding and are more resistant to phytophagous mites (Tetranychus urticae). Plants with increased AP2C1 levels display lower wound activation of MAPKs, reduced ethylene production, and compromised innate immunity against the necrotrophic pathogen Botrytis cinerea. Our results demonstrate a key role for the AP2C1 phosphatase in regulating stress hormone levels, defense responses, and MAPK activities in Arabidopsis and provide evidence that the activity of AP2C1 might control the plant's response to B. cinerea.

摘要

植物中的伤口信号通路由丝裂原活化蛋白激酶(MAPK)和应激激素介导,如乙烯和茉莉酸酯。在拟南芥中,MAPK介导的伤口信号传递已成为详细研究的主题;然而,特定磷酸酶在伤口信号传导中的作用尚不清楚。在这里,我们表明AP2C1是拟南芥2C型丝氨酸/苏氨酸磷酸酶,是一种新型应激信号调节剂,可使应激反应性MAPK MPK4和MPK6失活。突变体ap2c1植物在受伤时产生显著更多的茉莉酸,并且对植食性螨(二斑叶螨)更具抗性。AP2C1水平升高的植物表现出较低的MAPK伤口激活、乙烯产量降低以及对坏死营养型病原菌灰葡萄孢的先天免疫受损。我们的结果证明了AP2C1磷酸酶在调节拟南芥应激激素水平、防御反应和MAPK活性方面的关键作用,并提供了证据表明AP2C1的活性可能控制植物对灰葡萄孢的反应。

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