A Sulfhydryl Reagent Modulates Systemic Signaling for Wound-Induced and Systemin-Induced Proteinase Inhibitor Synthesis
Open Access
- 1 June 1994
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 105 (2) , 725-730
- https://doi.org/10.1104/pp.105.2.725
Abstract
The sulfhydryl group reagent p-chloromecuribenzene sulfonic acid (PCMBS), an established inhibitor of active apoplastic phloem loading of sucrose in several plant species, is shown to be a powerful inhibitor of wound-induced and systemin-induced activation of proteinase inhibitor synthesis and accumulation in leaves of tomato plants (Lycopersicon esculentum cv Castlemart). PCMBS, supplied to young tomato plants through their cut stems, blocks accumulation of proteinase inhibitors in leaves in response to wounding. The application of systemin directly to fresh wounds enhances systemic accumulation of proteinase inhibitors to levels higher than wounding alone. Placed on fresh wounds, PCMBS severely inhibits systemic induction of proteinase inhibitors, in both the presence and absence of exogenous systemin. PCMBS inhibition can be reversed by cysteine, dithiothreitol, and glutathione. Radiolabeled systemin placed on fresh wounds is readily transported from the wounded leaves to upper leaves. However, in the presence of PCMBS, radiolabeled systemin is not transported away from wound sites. Induction of proteinase inhibitor I synthesis by oligouronides (degree of polymerization [almost equal to] 20), linolenic acid, or methyl jasmonate was not inhibited by PCMBS. The cumulative data support a possible role for sulfhydryl groups in mediating the translocation of systemin from wound sites to distal receptor sites in tomato plants and further support a role for systemin as a systemic wound signal.Keywords
This publication has 13 references indexed in Scilit:
- Octadecanoid-redived signals in plantsTrends in Cell Biology, 1992
- Phloem Loading in Coleus blumei in the Absence of Carrier-Mediated Uptake of Export Sugar from the ApoplastPlant Physiology, 1990
- Glutathione Causes a Massive and Selective Induction of Plant Defense GenesPlant Physiology, 1988
- Different Patterns of Vein Loading of Exogenous [14C]Sucrose in Leaves of Pisum sativum and Coleus blumeiPlant Physiology, 1988
- Inhibition and Labeling of the Plant Plasma Membrane H+-ATPase with N-EthylmaleimidePlant Physiology, 1987
- Evidence for Sulfhydryl Involvement in Regulation of Phytoalexin Accumulation in Trifolium repens Callus Tissue CulturesPlant Physiology, 1981
- Essential Sulfhydryl Group in the Transport-catalyzing Protein of the Hexose-Proton Cotransport System of ChlorellaPlant Physiology, 1978
- Evidence for Phloem Loading from the ApoplastPlant Physiology, 1976
- Chemical Modification of MembranesThe Journal of general physiology, 1971
- Effect of some organometallic compounds on the permeability of chloroplast membranesFEBS Letters, 1970