Probenazole-Induced Accumulation of Salicylic Acid Confers Resistance to Magnaporthe grisea in Adult Rice Plants
Open Access
- 13 June 2007
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant and Cell Physiology
- Vol. 48 (7) , 915-924
- https://doi.org/10.1093/pcp/pcm062
Abstract
Probenazole (PBZ) is the active ingredient of Oryzemate, an agrochemical which is used for the protection of rice plants from Magnaporthe grisea (blast fungus). While PBZ was reported to function upstream of salicylic acid (SA) in Arabidopsis, little is known about the mechanism of PBZ-induced resistance in rice. The role of SA in blast fungus resistance is also unclear. The recommended application period for Oryzemate is just before the Japanese rainy season, at which time rice plants in the field have reached the 8-leaf stage with adult traits. Thus, the involvement of SA in PBZ-induced resistance was studied in compatible and incompatible blast fungus–rice interactions at two developmentally different leaf morphology stages. Pre-treatment of inoculated fourth leaves of young wild-type rice plants at the 4-leaf stage with PBZ did not influence the development of whitish expanding lesions (ELs) in the susceptible interaction without the accumulation of SA and pathogenesis-related (PR) proteins. However, PBZ pre-treatment increased accumulation of SA and PR proteins in the eighth leaves of adult plants at the 8-leaf stage, resulting in the formation of hypersensitive reaction (HR) lesions (HRLs). Exogenous SA induced resistance in adult but not young plants. SA concentrations in blast fungus-inoculated young leaves were essentially the same in compatible and incompatible interactions, suggesting that PBZ-induced resistance in rice is age-dependently regulated via SA accumulation.Keywords
This publication has 32 references indexed in Scilit:
- Rice NRR, a negative regulator of disease resistance, interacts with Arabidopsis NPR1 and rice NH1The Plant Journal, 2005
- Evidence for a disease‐resistance pathway in rice similar to the NPR1‐mediated signaling pathway in ArabidopsisThe Plant Journal, 2001
- Salicylic acid is not required for Cf‐2‐ and Cf‐9‐dependent resistance of tomato to Cladosporium fulvumThe Plant Journal, 2000
- A Novel Rice (Oryza sativa L.) Acidic PR1 Gene Highly Responsive to Cut, Phytohormones, and Protein Phosphatase InhibitorsBiochemical and Biophysical Research Communications, 2000
- Developmental control of Xa21‐mediated disease resistance in riceThe Plant Journal, 1999
- Corngrass 1 of Maize (Zea mays L.) Delays Development of Adult Plant Resistance to Common Rust (Puccinia sorghi Schw.) and European Corn Borer (Ostrinia nubilalis Hubner)Journal of Heredity, 1996
- Race-Specific Elicitors of Cladosporium fulvum Induce Changes in Cell Morphology and the Synthesis of Ethylene and Salicylic Acid in Tomato Plants Carrying the Corresponding Cf Disease Resistance GenePlant Physiology, 1996
- Arabidopsis signal transduction mutant defective in chemically and biologically induced disease resistance.Proceedings of the National Academy of Sciences, 1995
- A Central Role of Salicylic Acid in Plant Disease ResistanceScience, 1994
- Requirement of Salicylic Acid for the Induction of Systemic Acquired ResistanceScience, 1993