The chloroplast‐localized casein kinase II α subunit, CPCK2, negatively regulates plant innate immunity through promoting S‐nitrosylation of SABP3

Author:

Rui Lu123,Kang Ping4,Shao Jing4,Lu Minfeng4,Cui Beimi5,Zhao Yaofei3,Wang Wei3,Cai Huiren3,Tang Dingzhong3ORCID,Loake Gary J.5,Wang Mo1,Shi Hua1ORCID

Affiliation:

1. State Key Laboratory for Conservation and Utilization of Bio‐Resources in Yunnan Yunnan Agricultural University Kunming 650201 China

2. College of Biology and Food Engineering Chongqing Three Gorges University Chongqing 404120 China

3. State Key Laboratory of Ecological Control of Fujian‐Taiwan Crop Pests, Key Laboratory of Ministry of Education for Genetics, Breeding and Multiple Utilization of Crops, Plant Immunity Center Fujian Agriculture and Forestry University Fuzhou 35002 China

4. Fujian University Key Laboratory for Plant‐Microbe Interaction Fujian Agriculture and Forestry University Fuzhou 350002 China

5. Institute of Molecular Plant Sciences, School of Biological Sciences University of Edinburgh Edinburgh EH9 3BF UK

Abstract

SUMMARYThe casein kinase II (CK2) complex consists of catalytic (α) and regulatory (β) subunits and is highly conserved throughout eukaryotes. Plant CK2 plays critical roles in multiple physiological processes; however, its function in plant immunity remains obscure. In this study, we demonstrated that the unique chloroplast‐localized CK2 α subunit (CPCK2) is a negative regulator of Arabidopsis thaliana innate immunity. cpck2 mutants displayed enhanced resistance against the fungal pathogen powdery mildew, Golovinomyces cichoracearum and the virulent bacterial pathogen, Pseudomonas syringae pv. tomato (Pto) DC3000. Moreover, the cpck2‐1 mutant accumulated higher salicylic acid (SA) levels and mutations that disabled SA biosynthesis or signaling inhibited cpck2‐1‐mediated disease resistance. CPCK2 interacted with the chloroplast‐localized carbonic anhydrase (CA), SA‐binding protein 3 (SABP3), which was required for cpck2‐mediated immunity. Significantly, CPCK2 phosphorylated SABP3, which promoted S‐nitrosylation of this enzyme. It has previously been established that S‐nitrosylation of SABP3 reduces both its SA binding function and its CA activity, which compromises the immune‐related function of SABP3. Taken together, our results establish CPCK2 as a negative regulator of SA accumulation and associated immunity. Importantly, our findings unveil a mechanism by which CPCK2 negatively regulates plant immunity by promoting S‐nitrosylation of SABP3 through phosphorylation, which provides the first example in plants of S‐nitrosylation being promoted by cognate phosphorylation.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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