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Multiple resistance to sulfonylureas and imidazolinones conferred by an acetohydroxyacid synthase gene with separate mutations for selective resistance
Authors:Jiro Hattori  Robert Rutledge  Hélène Labbé  Douglas Brown  Glen Sunohara and Brian Miki
Institution:(1) Plant Research Centre, Agriculture Canada, K1A 0C6 Ottawa, Canada;(2) Present address: Petawawa National Forestry Institute, Forestry Canada, K0J 1J0 Chalk River, Ontario, Canada;(3) Present address: Biology Department, Bishop's University, JIM 1Z7 Lennoxville, Quebec, Canada
Abstract:Summary The acetohydroxyacid synthase (AHAS) gene from the Arabidopsis thaliana mutant line GH90 carrying the imidazolinone resistance allele imr1 was cloned. Expression of the AHAS gene under the control of the CaMV 35S promoter in transgenic tobacco resulted in selective imidazolinone resistance, confirming that the single base-pair change found near the 3prime end of the coding region of this gene is responsible for imidazolinone resistance. A chimeric AHAS gene containing both the imr1 mutation and the csr1 mutation, responsible for selective resistance to sulfonylurea herbicides, was constructed. It conferred on transgenic tobacco plants resistance to both sulfonylurea and imidazolinone herbicides. The data illustrate that a multiple-resistance phenotype can be achieved in an AHAS gene through combinations of separate mutations, each of which individually confers resistance to only one class of herbicides.
Keywords:Acetohydroxyacid synthase  Arabidopsis  Imidazolinone  Sulfonylurea  Transgenic tobacco
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