Functional screening of the Arabidopsis 2C protein phosphatases family identifies PP2C15 as a negative regulator of plant immunity by targeting BRI1‐associated receptor kinase 1

生物 磷酸酶 拟南芥 植物免疫 细胞生物学 调节器 突变体 激酶 植物抗病性 蛋白磷酸酶2 拟南芥 负调节器 信号转导 磷酸化 生物化学 基因
作者
Zhu Diao,Rongqian Yang,Yizhu Wang,Jun-Mei Cui,Junhao Li,Qing Wu,Yaxin Zhang,Xuezhong Yu,Ben-Qiang Gong,Yan Huang,Guozhi Yu,Huipeng Yao,Jinlin Guo,Huaiyu Zhang,Jinbo Shen,Andrea A. Gust,Yi Cai
出处
期刊:Molecular Plant Pathology [Wiley]
卷期号:25 (4)
标识
DOI:10.1111/mpp.13447
摘要

Genetic engineering using negative regulators of plant immunity has the potential to provide a huge impetus in agricultural biotechnology to achieve a higher degree of disease resistance without reducing yield. Type 2C protein phosphatases (PP2Cs) represent the largest group of protein phosphatases in plants, with a high potential for negative regulatory functions by blocking the transmission of defence signals through dephosphorylation. Here, we established a PP2C functional protoplast screen using pFRK1::luciferase as a reporter and found that 14 of 56 PP2Cs significantly inhibited the immune response induced by flg22. To verify the reliability of the system, a previously reported MAPK3/4/6-interacting protein phosphatase, PP2C5, was used; it was confirmed to be a negative regulator of PAMP-triggered immunity (PTI). We further identified PP2C15 as an interacting partner of BRI1-associated receptor kinase 1 (BAK1), which is the most well-known co-receptor of plasma membrane-localized pattern recognition receptors (PRRs), and a central component of PTI. PP2C15 dephosphorylates BAK1 and negatively regulates BAK1-mediated PTI responses such as MAPK3/4/6 activation, defence gene expression, reactive oxygen species bursts, stomatal immunity, callose deposition, and pathogen resistance. Although plant growth and 1000-seed weight of pp2c15 mutants were reduced compared to those of wild-type plants, pp2c5 mutants did not show any adverse effects. Thus, our findings strengthen the understanding of the mechanism by which PP2C family members negatively regulate plant immunity at multiple levels and indicate a possible approach to enhance plant resistance by eliminating specific PP2Cs without affecting plant growth and yield.
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