Transcriptional reprogramming regulated by WRKY18 and WRKY40 facilitates powdery mildew infection of Arabidopsis.
pmid: 21143673
handle: 11858/00-001M-0000-0012-34A6-5
Transcriptional reprogramming regulated by WRKY18 and WRKY40 facilitates powdery mildew infection of Arabidopsis.
The two closely related Arabidopsis transcription factors, WRKY18 and WRKY40, play a major and partly redundant role in PAMP-triggered basal defense. We monitored the transcriptional reprogramming induced by the powdery mildew fungus, Golovinomyces orontii, during early stages of infection with respect to the role of WRKY18/40. Expression of >1300 Arabidopsis genes was differentially altered already 8 hours post infection (hpi), indicating rapid pre-penetration signaling between the pathogen and the host. We found that WRKY18/40 negatively affects pre-invasion host defenses and deduced a subset of genes that appear to be under WRKY18/40 control. A mutant lacking the WRKY18/40 repressors executes pathogen-dependent but exaggerated expression of some defense genes leading, for example, to strongly elevated levels of camalexin. This implies that WRKY18/40 act in a feedback repression system controlling basal defense. Moreover, using chromatin immunoprecipitation (ChIP), direct in vivo interactions of WRKY40 to promoter regions containing W box elements of the regulatory gene EDS1, the AP2-type transcription factor gene RRTF1 and to JAZ8, a member of the JA-signaling repressor gene family were demonstrated. Our data support a model in which WRKY18/40 negatively modulate the expression of positive regulators of defense such as CYP71A13, EDS1 and PAD4, but positively modulate the expression of some key JA-signaling genes by partly suppressing the expression of JAZ repressors.
- Max Planck Institute for Plant Breeding Research Germany
- Max Planck Society Germany
Indoles, Arabidopsis Proteins, Gene Expression Profiling, Arabidopsis, Cyclopentanes, DNA-Binding Proteins, Thiazoles, Ascomycota, Gene Expression Regulation, Plant, Host-Pathogen Interactions, Mutation, Oxylipins, Promoter Regions, Genetic, Plant Diseases, Signal Transduction, Transcription Factors
Indoles, Arabidopsis Proteins, Gene Expression Profiling, Arabidopsis, Cyclopentanes, DNA-Binding Proteins, Thiazoles, Ascomycota, Gene Expression Regulation, Plant, Host-Pathogen Interactions, Mutation, Oxylipins, Promoter Regions, Genetic, Plant Diseases, Signal Transduction, Transcription Factors
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