Plant Physiol. Illumina
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First published online August 16, 2002; 10.1104/pp.005801

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Plant Physiol, September 2002, Vol. 130, pp. 179-189

Engineering Herbicide Metabolism in Tobacco and Arabidopsis with CYP76B1, a Cytochrome P450 Enzyme from Jerusalem Artichoke1

Luc Didierjean,23 Laurence Gondet,2 Roberta Perkins, Sze-Mei Cindy Lau, Hubert Schaller, Daniel P. O'Keefe, and Danièle Werck-Reichhart*

Departments of Plant Stress Response (L.D., L.G., D.W.-R.) and Isoprenoids (H.S.), Institute of Plant Molecular Biology, Centre National de la Recherche Scientifique Unité Propre de Recherche 2357, Université Louis Pasteur, 67083 Strasbourg cedex, France; and E.I. DuPont de Nemours and Company, Central Research and Development, DuPont Experimental Station, Wilmington, Delaware 19880-0328 (R.P., S.-M.C.L., D.P.O.)

The Jerusalem artichoke (Helianthus tuberosus) xenobiotic inducible cytochrome P450, CYP76B1, catalyzes rapid oxidative dealkylation of various phenylurea herbicides to yield nonphytotoxic metabolites. We have found that increased herbicide metabolism and tolerance can be achieved by ectopic constitutive expression of CYP76B1 in tobacco (Nicotiana tabacum) and Arabidopsis. Transformation with CYP76B1 conferred on tobacco and Arabidopsis a 20-fold increase in tolerance to linuron, a compound detoxified by a single dealkylation, and a 10-fold increase in tolerance to isoproturon or chlortoluron, which need successive catalytic steps for detoxification. Two constructs for expression of translational fusions of CYP76B1 with P450 reductase were prepared to test if they would yield even greater herbicide tolerance. Plants expressing these constructs had lower herbicide tolerance than CYP76B1 alone, which is apparently a consequence of reduced stability of the fusion proteins. In all cases, increased herbicide tolerance results from more extensive metabolism, as demonstrated with exogenously fed phenylurea. Beside increased herbicide tolerance, expression of CYP76B1 has no other visible phenotype in the transgenic plants. Our data indicate that CYP76B1 can function as a selectable marker for plant transformation, allowing efficient selection in vitro and in soil-grown plants. Plants expressing CYP76B1 may also be a potential tool for phytoremediation of contaminated sites.


1 This work was supported by E.I. DuPont de Nemours and Company (grant to L.D.).

2 These authors contributed equally to the paper.

3 Present address: Tepral Research-Kronenbourg Breweries, 68, route d'Oberhausbergen, 67037 Strasbourg cedex, France.

* Corresponding author; e-mail daniele.werck{at}ibmp-ulp.u-strasbg.fr; fax 33-3-90-24-18-84.

© 2002 American Society of Plant Physiologists






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