Annals of Applied Biology · 2003 · 31 citations · 22 references
Plant ImmunityEngineeringPlant Defence ActivatorPearl MilletCrop ProtectionPlant ProtectionDowny Mildew PathogenVarious Plant PathogensInduced ResistancePlant PathologyPest ManagementSignificant Yield EnhancementMicrobiologyHost ResistanceMedicinePlant-pathogen Interaction
Summary Innate defence mechanisms in plants can be triggered and enhanced by certain agents, which are referred to as inducers. Inducing resistance against a broad spectrum of pathogens in otherwise susceptible plants is seen as a potentially safer alternative to other methods of chemical control of plant diseases. Cerebrosides, which are glycosphingolipids extracted from various plant pathogens, have been reported as resistance elicitors in the rice‐pathogen system. In the present study, cerebroside elicited resistance against downy mildew disease (caused by Sclerospora graminicola ) of pearl millet ( Pennisetum glaucum ) that was highly significant. The resistance was of systemic nature and the time required for the resistance to build up was from 2 days onwards. There was a significant yield enhancement due to disease suppression by cerebroside treatment. Promising results were obtained in a preliminary field trial.
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Signaling in Plant-Microbe Interactions
Barbara Baker, Patricia Zambryski, Brian J. Staskawicz et al. · Science · 1997 · 828 citations
Signal Transduction Pathways, Engineering, Plant Pathology +17
Signaling in Plant-Microbe Interactions
Alok Pandey, Subhadeep Chatterjee · 2013 · 768 citations
P. M'piga, Richard R. Bélanger, Timothy C. Paulitz et al. · Physiological and Molecular Plant Pathology · 1997 · 263 citations