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Systemic acquired resistance is an important component of the disease resistance repertoire of plants. A novel syntheticchemical, Benzo (1,2,3) thiadiazole-7-carbothioic acid S-methyl ester (BTH), was shown to induce acquired resistance in wheat.BTH protected wheat systemically against powdery mildew infection by afecting multiple steps in the life cycle of the pathogen.In this study, protein extracts from the whole leaves were analyzed on high resolution two-dimensional gels electrophoresis. Theincluding genes encoding a lipoxygenase, putative pollen specific protein, ATP binding/kinase/protein kinase, cysteine proteinaseinhibitor clade B ovalbumin and selenium-binding protein-like. Compared with treated and untreated control plants, two proteinsfound in abundance under infection conditions were expressed and identified as β-1, 3-glucanase and glucan endo-1,3-β-D-glu-cosidase, a pathogenesis-related (PR-2) protein involved in protein degradation. Thus in infected powdery mildew of wheat, theincreased β-1, 3-glucanase and glucan endo-1,3-β-D-glucosidase may play a part in the loss of proteins. Therefore, BTH was themost potent inducer of both resistance and gene induction.

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