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Acetolactate Synthase Is the Site of Action of Two Sulfonylurea Herbicides in Higher Plants

R. S. Chaleff, C. Jeffry Mauvais

Open publisher page 442 citations

Abstract

Biochemical and genetic studies of a tobacco mutant resistant to the herbicides chlorsulfuron and sulfometuron methyl have demonstrated that these sulfonylurea herbicides inhibit acetolactate synthase, the first enzyme specific to the branched chain amino acid biosynthetic pathway. Resistance of this mutant is accomplished by production of a form of the enzyme that is insensitive to inhibition by the two herbicides.

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What this paper is about

Biochemical and genetic studies of a tobacco mutant resistant to the herbicides chlorsulfuron and sulfometuron methyl have demonstrated that these sulfonylurea herbicides inhibit acetolactate synthase, the first enzyme specific to the branched chain amino acid biosynthetic pathway. Resistance of this mutant is accomplished by production of a form of the enzyme that is insensitive to inhibition by the two herbicides.

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OpenAlex reports 442 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Biochemical and genetic studies of a tobacco mutant resistant to the herbicides chlorsulfuron and sulfometuron methyl have demonstrated that these sulfonylurea herbicides inhibit acetolactate synthase, the first enzyme specific to the branched chain amino acid biosynthetic pathway. Resistance of this mutant is accomplished by production of a form of the enzyme that is insensitive to inhibition by the two herbicides.

Key concepts: Acetolactate synthase, Sulfonylurea, Mutant, Enzyme, Site of action, Biosynthesis, Biochemistry, Chemistry

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