NPR1 Promotes Its Own and Target Gene Expression in Plant Defense by Recruiting CDK8
Author(s) -
Jian Chen,
Rajinikanth Mohan,
Yuqiang Zhang,
Min Li,
Huan Chen,
Ian Arthur Palmer,
Ming Chang,
Guang Qi,
Steven H. Spoel,
Tesfaye Mengiste,
Daowen Wang,
Fengquan Liu,
Zheng Qing Fu
Publication year - 2019
Publication title -
plant physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.554
H-Index - 312
eISSN - 1532-2548
pISSN - 0032-0889
DOI - 10.1104/pp.19.00124
Subject(s) - wrky protein domain , cyclin dependent kinase 8 , npr1 , biology , arabidopsis , transcription factor , rna polymerase ii , promoter , transcription (linguistics) , gene expression , microbiology and biotechnology , gene , genetics , natriuretic peptide , medicine , heart failure , notch signaling pathway , linguistics , philosophy , mutant
NPR1 (NONEXPRESSER OF PR GENES1) functions as a master regulator of the plant hormone salicylic acid (SA) signaling and plays an essential role in plant immunity. In the nucleus, NPR1 interacts with transcription factors to induce the expression of PR ( PATHOGENESIS - RELATED ) genes and thereby promote defense responses. However, the underlying molecular mechanism of PR gene activation is poorly understood. Furthermore, despite the importance of NPR1 in plant immunity, the regulation of NPR1 expression has not been extensively studied. Here, we show that SA promotes the interaction of NPR1 with both CDK8 (CYCLIN-DEPENDENT KINASE8) and WRKY18 (WRKY DNA-BINDING PROTEIN18) in Arabidopsis ( Arabidopsis thaliana ). NPR1 recruits CDK8 and WRKY18 to the NPR1 promoter, facilitating its own expression. Intriguingly, CDK8 and its associated Mediator subunits positively regulate NPR1 and PR1 expression and play a pivotal role in local and systemic immunity. Moreover, CDK8 interacts with WRKY6, WRKY18, and TGA transcription factors and brings RNA polymerase II to NPR1 and PR1 promoters and coding regions to facilitate their expression. Our studies reveal a mechanism in which NPR1 recruits CDK8, WRKY18, and TGA transcription factors along with RNA polymerase II in the presence of SA and thereby facilitates its own and target gene expression for the establishment of plant immunity.
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