The Plant Cell · 1994 · 533 citations · 26 references
Plant Defense GeneGeneticsPlant PathologyMolecular GeneticsGenomicsWisconsin 38Plant Molecular BiologyTranscriptional RegulationMethyl JasmonateGene ExpressionCell BiologyPlant HormoneBiologyPlant ImmunityProtein Kinase SystemNatural SciencesInduced ResistanceMedicinePlant PhysiologySalicylic Acid
Combinations of ethylene and methyl jasmonate (E/MeJA) synergistically induced members of both groups 1 and 5 of the pathogenesis-related (PR) superfamily of defense genes. E/MeJA caused a synergistic induction of PR-1b and osmotin (PR-5) mRNA accumulation in tobacco seedlings. E/MeJA also synergistically activated the osmotin promoter fused to a [beta]-glucuronidase marker gene in a tissue-specific manner. The E/MeJA responsiveness of the osmotin promoter was localized on a -248 to +45 fragment that exhibited responsiveness to several other inducers. E/MeJA induction also resulted in osmotin protein accumulation to levels similar to those induced by osmotic stress. Of the several known inducers of the osmotin gene, including salicylic acid (SA), fungal infection is the only other condition known to cause substantial osmotin protein accumulation in Wisconsin 38, a tobacco cultivar that does not respond hypersensitively to tobacco mosaic virus. Based on the ability of the protein kinase C inhibitor 1-(5-isoquinolinylsulfonyl)-2-methylpiperazine to block ethylene induction of PR-1b mRNA accumulation and its inability to block osmotin mRNA induction by ethylene, these two PR gene groups appeared to have at least partially separate signal transduction pathways. Stimulation of osmotin mRNA accumulation by okadaic acid indicated that another protein kinase system is involved in regulation of the osmotin gene. SA, which is known to induce pathogen resistance in tobacco, could not induce the osmotin gene as much as E/MeJA and neither could it induce PR-1b as much as SA and MeJA combined.
26
Requirement of Salicylic Acid for the Induction of Systemic Acquired Resistance
Thomas Gaffney, Leslie Friedrich, Bernard Vernooij et al. · Science · 1993 · 1.8K citations
Engineering, Botany, Genetics +17
Coordinate Gene Activity in Response to Agents That Induce Systemic Acquired Resistance.
E. R. Ward, Scott Uknes, S. C. Williams et al. · The Plant Cell · 1991 · 1.3K citations · Full text
Transgenic Plants with Enhanced Resistance to the Fungal Pathogen <i>Rhizoctonia solani</i>
Karen Brogue, I. Chet, Mark Holliday et al. · Science · 1991 · 980 citations
Molecular Responses to Water Deficit
Elizabeth A. Bray · PLANT PHYSIOLOGY · 1993 · 842 citations · Full text