60
Richard H. Shimabukuro et al.
Bull, D. L., Whitten, C. J., and Ivie, G. W., 1976, Fate of O-ethyl-[4-(methylthio)phenyIJ-S-propyl
phosporodithioate (BAY NTN 9306) in cotton plants and soil, J. Agric. Food Chem. 24:601.
Casida, 1. E., and Lykken, L., 1969, Metabolism of organic pesticide chemicals in higher plants,
Annu. Rev. Plant Physiol. 20:607.
Casida, 1. E., Kimmel, E. C., Ohkawa, H., and Ohkawa, R., 1975, Sulfoxidation ofthiocarbamate
herbicides and the metabolism of thiocarbamate sulfoxides in living mice and liver enzyme
systems, Pestic. Biochem. Physiol. 5:1.
Chen, Y. S., and Casida, 1. E., 1978, Thiocarbamate herbicide metabolism: Microsomal oxygenase
metabolism of EPfC involving mono- and dioxygenation at the sulfur and hydroxylation at
each alkyl carbon, J. Agric. Food Chem. 26:263.
Collett, G. F., and Pont, V., 1978, Le role de la cysteine dans la de toxification d'un herbicide,
C.R. Acad. Sci. Ser. D 286:681.
Crafts, A. S., and Crisp, C. E., 1971, Phloem Transport in Plants, W. H. Freeman, San Francisco.
Crayford, 1. V., and Hutson, D. H., 1972, The metabolism of the herbicide, 2-chloro-4-(ethylamino)6-(l-cyano-l-methylethylamino)-s-triazine, in the rat, Pestic. Biochem. Physiol. 2:295.
Crosby, D. G., 1973, The fate of pesticides in the environment, Annu. Rev. Plant Physiol. 24:467.
Dauterman, W. C., Viado, G. B., Casida, J. E., and O'Brien, R. D., 1960, Persistence of dime tho ate
and metabolites following foliar application to plants, J. Agric. Foad Chem. 8:115.
Davis, D. G., Hodgson, R. H., Dusbabek, K. E., and Hoffer, B. L., 1978, The metabolism of the
herbicide diphenamid (N,N-dimethyl-2,2-diphenylacetamide) in cell suspensions of soybean
(Glycine max), Physiol. Plant 44:87.
Donald, W. W., and Shimabukuro, R. H., 1980, Selectivity of diclofop-methyl between wheat and
wild oat: Growth and herbicide metabolism, Physiol. Plant 49:459.
Dorough, H. W., Whitacre, D. M., and Cardona, R. A., 1973a, Metabolism of the herbicide
methazole in cotton and beans, and fate of certain of its polar metabolites in rats, J. Agric.
Food Chem. 21:7.
Dorough, H. W., 1976, Biological activity of pesticide conjugates, in: Bound and Conjugated
Pesticide Residues (D. D. Kaufman, G. G. Still, G. D. Paulson, and S. K. Bandal, eds.), pp.
11-34, ACS Symposium Series 29, American Chemical Society, Washington, D.C.
Dutton, A. J., Roberts, T. R., and Wright, A. N., 1976, Characterization of acidic conjugates of
ftamprop in wheat, Chemosphere 3:195.
Dutton, A. J., Roberts, T. R., and Wright, A. N., 1976, Characterization of acidic conjugates of
ftamprop in wheat, Chemosphere 3: 195.
Earl, J. W., and Kennedy, I. R., 1975, Aldrin epoxidase from pea roots, Phytochemistry 14:1507.
Eastin, E. F., 1971, Fate of ftuorodifen in resistant peanut seedlings, Weed Sci. 19:261.
El Zorgani, G. A., 1975, Residues of DDT in cottonseed after spraying with DDT and torbidan,
Pestic. Sci. 6:457.
Esser, H. 0., Dupuis, G., Ebert, E., Marco, G., and Vogel, C., 1975, S-triazines, in: Herbicides:
Chemistry, Degradation, and Mode of Action, Vol. 1 (P. C. Keamey and D. D. Kaufman,
eds.), pp. 129-208, Marcel Dekker, New York.
Eto, M., 1974, Organophosphorous Pesticides: Organic and Biological Chemistry, CRC Press,
Cleveland.
Fedtke C., and Schmidt, R. R., 1977, Chlorfenprop-methyl: Its hydrolysis in vivo and in vitro and
a new principle for selective herbicidal action, Weed Res. 17:233.
Feung, C. S., Hamilton, R. H., and Witham, F. H., 1971, Metabolism of2,4-dichlorophenoxyacetic
acid by soybean cotyledon callus tissue cultures, J. Agric. Food Chem. 19:475.
Feung, C. S., Hamilton, R. H., and Mumma, R. 0., 1973, Metabolism of 2,4-dichlorophenoxyacetic
acid. V. Identification of metabolites in soybean callus tissue cultures, J. Agric. Food Chem.
21:637.
Richard H. Shimabukuro et al.
Bull, D. L., Whitten, C. J., and Ivie, G. W., 1976, Fate of O-ethyl-[4-(methylthio)phenyIJ-S-propyl
phosporodithioate (BAY NTN 9306) in cotton plants and soil, J. Agric. Food Chem. 24:601.
Casida, 1. E., and Lykken, L., 1969, Metabolism of organic pesticide chemicals in higher plants,
Annu. Rev. Plant Physiol. 20:607.
Casida, 1. E., Kimmel, E. C., Ohkawa, H., and Ohkawa, R., 1975, Sulfoxidation ofthiocarbamate
herbicides and the metabolism of thiocarbamate sulfoxides in living mice and liver enzyme
systems, Pestic. Biochem. Physiol. 5:1.
Chen, Y. S., and Casida, 1. E., 1978, Thiocarbamate herbicide metabolism: Microsomal oxygenase
metabolism of EPfC involving mono- and dioxygenation at the sulfur and hydroxylation at
each alkyl carbon, J. Agric. Food Chem. 26:263.
Collett, G. F., and Pont, V., 1978, Le role de la cysteine dans la de toxification d'un herbicide,
C.R. Acad. Sci. Ser. D 286:681.
Crafts, A. S., and Crisp, C. E., 1971, Phloem Transport in Plants, W. H. Freeman, San Francisco.
Crayford, 1. V., and Hutson, D. H., 1972, The metabolism of the herbicide, 2-chloro-4-(ethylamino)6-(l-cyano-l-methylethylamino)-s-triazine, in the rat, Pestic. Biochem. Physiol. 2:295.
Crosby, D. G., 1973, The fate of pesticides in the environment, Annu. Rev. Plant Physiol. 24:467.
Dauterman, W. C., Viado, G. B., Casida, J. E., and O'Brien, R. D., 1960, Persistence of dime tho ate
and metabolites following foliar application to plants, J. Agric. Foad Chem. 8:115.
Davis, D. G., Hodgson, R. H., Dusbabek, K. E., and Hoffer, B. L., 1978, The metabolism of the
herbicide diphenamid (N,N-dimethyl-2,2-diphenylacetamide) in cell suspensions of soybean
(Glycine max), Physiol. Plant 44:87.
Donald, W. W., and Shimabukuro, R. H., 1980, Selectivity of diclofop-methyl between wheat and
wild oat: Growth and herbicide metabolism, Physiol. Plant 49:459.
Dorough, H. W., Whitacre, D. M., and Cardona, R. A., 1973a, Metabolism of the herbicide
methazole in cotton and beans, and fate of certain of its polar metabolites in rats, J. Agric.
Food Chem. 21:7.
Dorough, H. W., 1976, Biological activity of pesticide conjugates, in: Bound and Conjugated
Pesticide Residues (D. D. Kaufman, G. G. Still, G. D. Paulson, and S. K. Bandal, eds.), pp.
11-34, ACS Symposium Series 29, American Chemical Society, Washington, D.C.
Dutton, A. J., Roberts, T. R., and Wright, A. N., 1976, Characterization of acidic conjugates of
ftamprop in wheat, Chemosphere 3:195.
Dutton, A. J., Roberts, T. R., and Wright, A. N., 1976, Characterization of acidic conjugates of
ftamprop in wheat, Chemosphere 3: 195.
Earl, J. W., and Kennedy, I. R., 1975, Aldrin epoxidase from pea roots, Phytochemistry 14:1507.
Eastin, E. F., 1971, Fate of ftuorodifen in resistant peanut seedlings, Weed Sci. 19:261.
El Zorgani, G. A., 1975, Residues of DDT in cottonseed after spraying with DDT and torbidan,
Pestic. Sci. 6:457.
Esser, H. 0., Dupuis, G., Ebert, E., Marco, G., and Vogel, C., 1975, S-triazines, in: Herbicides:
Chemistry, Degradation, and Mode of Action, Vol. 1 (P. C. Keamey and D. D. Kaufman,
eds.), pp. 129-208, Marcel Dekker, New York.
Eto, M., 1974, Organophosphorous Pesticides: Organic and Biological Chemistry, CRC Press,
Cleveland.
Fedtke C., and Schmidt, R. R., 1977, Chlorfenprop-methyl: Its hydrolysis in vivo and in vitro and
a new principle for selective herbicidal action, Weed Res. 17:233.
Feung, C. S., Hamilton, R. H., and Witham, F. H., 1971, Metabolism of2,4-dichlorophenoxyacetic
acid by soybean cotyledon callus tissue cultures, J. Agric. Food Chem. 19:475.
Feung, C. S., Hamilton, R. H., and Mumma, R. 0., 1973, Metabolism of 2,4-dichlorophenoxyacetic
acid. V. Identification of metabolites in soybean callus tissue cultures, J. Agric. Food Chem.
21:637.
