β-Aminobutyric Acid-Induced Protection of Arabidopsis against the Necrotrophic Fungus Botrytis cinerea
- 1 June 2001
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 126 (2), 517-523
- https://doi.org/10.1104/pp.126.2.517
Abstract
The non-protein amino acid beta-aminobutyric acid (BABA) protects numerous plants against various pathogens. Protection of Arabidopsis plants against virulent pathogens involves the potentiation of pathogen-specific defense responses. To extend the analysis of the mode of action of BABA to necrotrophs we evaluated the effect of this chemical on Arabidopsis plants infected with the gray mold fungus Botrytis cinerea. BABA-treated Arabidopsis were found to be less sensitive to two different strains of this pathogen. BABA protected mutants defective in the jasmonate and ethylene pathways, but was inactive in plants impaired in the systemic acquired resistance transduction pathway. Treatments with benzo-(1,2,3)-thiadiazole-7-carbothioic acid S-methyl ester, a functional analog of salicylic acid (SA), also markedly reduced the level of infection. Moreover, BABA potentiated mRNA accumulation of the SA-associated PR-1, but not the jasmonate/ethylene-dependent PDF1.2 gene. Thus, besides jasmonate/ethylene-dependent defense responses, SA-dependent signaling also contributes to restrict B. cinerea infection in Arabidopsis. Our results also suggest that SA-dependent signaling is down-regulated after infection by B. cinerea. The observed up-regulation of the PDF1.2 gene in mutants defective in the SA-dependent signaling pathway points to a cross-talk between SA- and jasmonate/ethylene-dependent signaling pathways during pathogen ingress.Keywords
This publication has 29 references indexed in Scilit:
- The hypersensitive response facilitates plant infection by the necrotrophic pathogen Botrytis cinereaCurrent Biology, 2000
- Arabidopsis thaliana EDS4 Contributes to Salicylic Acid (SA)-Dependent Expression of Defense Responses: Evidence for Inhibition of Jasmonic Acid Signaling by SAMolecular Plant-Microbe Interactions®, 2000
- Requirement of FunctionalEthylene-Insensitive 2Gene for Efficient Resistance of Arabidopsis to Infection byBotrytis cinereaPlant Physiology, 1999
- Systemic Acquired Resistance inArabidopsisRequires Salicylic Acid but Not EthyleneMolecular Plant-Microbe Interactions®, 1995
- Characterization of an Arabidopsis Mutant That Is Nonresponsive to Inducers of Systemic Acquired Resistance.Plant Cell, 1994
- Characterization of an Arabidopsis Mutant That Is Nonresponsive to Inducers of Systemic Acquired ResistancePlant Cell, 1994
- Arabidopsis Mutants Selected for Resistance to the Phytotoxin Coronatine Are Male Sterile, Insensitive to Methyl Jasmonate, and Resistant to a Bacterial PathogenPlant Cell, 1994
- Dichloroisonicotinic and salicylic acid, inducers of systemic acquired resistance, enhance fungal elicitor responses in parsley cellsThe Plant Journal, 1992
- Acquired resistance in Arabidopsis.Plant Cell, 1992
- Comparison of histological and physiological responses to Phakopsora pachyrhizi in resistant and susceptible soybeanTransactions of the British Mycological Society, 1980