Abstract
The principal immune mechanism against biotrophic pathogens in plants is the resistance (R)-gene-mediated defence. It was proposed to share components with the broad-spectrum basal defence machinery. However, the underlying molecular mechanism is largely unknown. Here we report the identification of novel genes involved in R-gene-mediated resistance against downy mildew in Arabidopsis and their regulatory control by the circadian regulator, CIRCADIAN CLOCK-ASSOCIATED 1 (CCA1). Numerical clustering based on phenotypes of these gene mutants revealed that programmed cell death (PCD) is the major contributor to resistance. Mutants compromised in the R-gene-mediated PCD were also defective in basal resistance, establishing an interconnection between these two distinct defence mechanisms. Surprisingly, we found that these new defence genes are under circadian control by CCA1, allowing plants to 'anticipate' infection at dawn when the pathogen normally disperses the spores and time immune responses according to the perception of different pathogenic signals upon infection. Temporal control of the defence genes by CCA1 differentiates their involvement in basal and R-gene-mediated defence. Our study has revealed a key functional link between the circadian clock and plant immunity.
MeSH Terms
Apoptosis
Arabidopsis/immunology,microbiology,physiology
Arabidopsis Proteins/metabolism
Circadian Clocks/immunology
Circadian Rhythm/genetics,immunology
Gene Expression Regulation, Plant/genetics,immunology
Genes, Plant/genetics,immunology
Immunity, Innate/immunology
Light
Mutation
Oomycetes/immunology,pathogenicity
Phenotype
Plant Diseases/genetics,immunology,microbiology
Plant Immunity/immunology
Spores, Fungal/immunology,physiology
Time Factors
Transcription Factors/metabolism
Chemicals
Arabidopsis Proteins
CCA1 protein, Arabidopsis
RPP5 protein, Arabidopsis
Transcription Factors
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Wang Wei
Department of Biology, Duke University, Durham, North Carolina 27708, USA.
Barnaby Jinyoung Yang
Tada Yasuomi
Li Hairi
Tör Mahmut
Caldelari Daniela
Lee Dae-un
Fu Xiang-Dong
Dong Xinnian
References (26)
26 references, click to expand
-
Programmed cell death, mitochondria and the plant hypersensitive response.
Nature. 2001 Jun 14;411(6839):848-53
PMID: 11459068
-
Orchestrated transcription of key pathways in Arabidopsis by the circadian clock.
Science. 2000 Dec 15;290(5499):2110-3
PMID: 11118138
-
Network discovery pipeline elucidates conserved time-of-day-specific cis-regulatory modules.
PLoS Genet. 2008 Feb;4(2):e14
PMID: 18248097
-
Arabidopsis SGT1b is required for defense signaling conferred by several downy mildew resistance genes.
Plant Cell. 2002 May;14(5):993-1003
PMID: 12034892
-
Sick and tired: Does sleep have a vital role in the immune system?
Nat Rev Immunol. 2004 Jun;4(6):457-67
PMID: 15173834
-
Downy mildew (Peronospora parasitica) resistance genes in Arabidopsis vary in functional requirements for NDR1, EDS1, NPR1 and salicylic acid accumulation.
Plant J. 2000 Jun;22(6):523-9
PMID: 10886772
-
Quantitative nature of Arabidopsis responses during compatible and incompatible interactions with the bacterial pathogen Pseudomonas syringae.
Plant Cell. 2003 Feb;15(2):317-30
PMID: 12566575
-
Positive and negative factors confer phase-specific circadian regulation of transcription in Arabidopsis.
Plant Cell. 2005 Jul;17(7):1926-40
PMID: 15923346
-
Pvclust: an R package for assessing the uncertainty in hierarchical clustering.
Bioinformatics. 2006 Jun 15;22(12):1540-2
PMID: 16595560
-
Genetic characterization of five powdery mildew disease resistance loci in Arabidopsis thaliana.
Plant J. 1996 Mar;9(3):341-56
PMID: 8919911
-
The cpr5 mutant of Arabidopsis expresses both NPR1-dependent and NPR1-independent resistance.
Plant Cell. 1997 Sep;9(9):1573-84
PMID: 9338960
-
PSEUDO-RESPONSE REGULATOR 7 and 9 are partially redundant genes essential for the temperature responsiveness of the Arabidopsis circadian clock.
Plant Cell. 2005 Mar;17(3):791-803
PMID: 15705949
-
A high-resolution root spatiotemporal map reveals dominant expression patterns.
Science. 2007 Nov 2;318(5851):801-6
PMID: 17975066
-
The late elongated hypocotyl mutation of Arabidopsis disrupts circadian rhythms and the photoperiodic control of flowering.
Cell. 1998 Jun 26;93(7):1219-29
PMID: 9657154
-
The receptor-like kinase SERK3/BAK1 is a central regulator of innate immunity in plants.
Proc Natl Acad Sci U S A. 2007 Jul 17;104(29):12217-22
PMID: 17626179
-
Metagene projection for cross-platform, cross-species characterization of global transcriptional states.
Proc Natl Acad Sci U S A. 2007 Apr 3;104(14):5959-64
PMID: 17389406
-
Constitutive expression of the CIRCADIAN CLOCK ASSOCIATED 1 (CCA1) gene disrupts circadian rhythms and suppresses its own expression.
Cell. 1998 Jun 26;93(7):1207-17
PMID: 9657153
-
Lights, rhythms, infection: the role of light and the circadian clock in determining the outcome of plant-pathogen interactions.
Plant Cell. 2009 Sep;21(9):2546-52
PMID: 19789275
-
The BRI1-associated kinase 1, BAK1, has a brassinolide-independent role in plant cell-death control.
Curr Biol. 2007 Jul 3;17(13):1116-22
PMID: 17583510
-
Arabidopsis RPP4 is a member of the RPP5 multigene family of TIR-NB-LRR genes and confers downy mildew resistance through multiple signalling components.
Plant J. 2002 Feb;29(4):439-51
PMID: 11846877
-
Profiling alternative splicing on fiber-optic arrays.
Nat Biotechnol. 2002 Apr;20(4):353-8
PMID: 11923840
-
Downy mildew of Arabidopsis thaliana caused by Hyaloperonospora parasitica (formerly Peronospora parasitica).
Mol Plant Pathol. 2003 May 1;4(3):159-70
PMID: 20569375
-
The plant immune system.
Nature. 2006 Nov 16;444(7117):323-9
PMID: 17108957
-
Characterization of an Arabidopsis Mutant That Is Nonresponsive to Inducers of Systemic Acquired Resistance.
Plant Cell. 1994 Nov;6(11):1583-1592
PMID: 12244227
-
Abnormal callose response phenotype and hypersusceptibility to Peronospoara parasitica in defence-compromised arabidopsis nim1-1 and salicylate hydroxylase-expressing plants.
Mol Plant Microbe Interact. 2001 Apr;14(4):439-50
PMID: 11310731
-
A flagellin-induced complex of the receptor FLS2 and BAK1 initiates plant defence.
Nature. 2007 Jul 26;448(7152):497-500
PMID: 17625569