Pesticide Metabolism in Plants
65
Shimabukuro, R. H., Walsh, W. C., Stolzenberg, G. E., and Olson, P. A., 1975, Metabolism of ftuorodifen in peanuts, Weed Science Society of America, Abst. 171, Washington,
D.C.
Shimabukuro, R. H., Walsh, W. C., and Hoerauf, R. A., 19760, The role of coleoptile on ba...oan
selectivity between wild oat and wheat, Pestic. Biochem. Physiol. 6:115.
Shimabukuro, R. H., Walsh, W. C., Stolzenberg, G. E., and Olson, P. A., 1976b, Metabolism of
ftuorodifen to S-(2-nitro-4-triftuoromethylphenyl-N-malonylcysteine in peanuts, Weed Science
Society of America, Abstr. 196, Denver.
Shimabukuro, R. H., Lamoureux, G. L., and Frear, D. S., 19780, Glutathione conjugation: A
mechanism for herbicide detoxication and selectivity in plants, in: Chemistry and Action of
Herbicide Antidotes (F. M. Pallos and J. E. Casida, eds.), pp. 133-149, Academic Press, New
York.
Shimabukuro, M. A., Shimabukuro, R. H., Nord, W. S., and Hoerauf, R. A., 1978b, Physiological
effects of methyl 2-(4-[2,4-dichlorophenoxy]phenoxy)propanoate on oat, wild oat and wheat,
Pestic. Biochem. Physiol. 8:199.
Shimabukuro, R. H., Walsh, W. C., and Hoerauf, R. A., 1979, Metabolism and selectivity of
diclofop-methyl in wild oat and wheat, J. Agric. Food Chem. 27:615.
Still, G. G., 1968, Metabolism of 3,4-dichloropropionanilide in plants: The metabolic fate of the
3,4-dichloroaniline moiety, Science 159:992.
Still, G. G., and Kuzerian, 0., 1967, Enzyme detoxication of 3' ,4'-dichloropropionanilide in rice
and barnyard grass, a factor in herbicide selectivity, Nature (London) 216:799.
Still, G. G., and Mansager, E. R., 1972, Aryl hydroxylation of isopropyl-3-chlorocarbanilate by
soybean plants, Phytochemistry 11:515.
Still, G. G., and Mansager, E. R., 1973, Soybean shoot metabolism of isopropyl-3-chlorocarbanilate:
Ortho and para aryl hydroxylation, Pestic. Biochem. Physiol. 3:87.
Still, G. G., and Rusness, D. G., 1977, S-cysteinyl-hydroxychlorpropham: Formation of the Scysteinyl conjugate of isopropyl-3' -chloro-4' -hydroxycarbanilate in oat (Avena sativa L.), Pestic. Biochem. Physiol. 7:210.
Still, G. G., Rusness, D. G., and Mansager, E. R., 1974, Carbanilate herbicides and their metabolic
products: Their effect on plant metabolism, in: Mechanism of Pesticide Action (G. K. Kohn,
ed.), pp. 117-129, ACS Symposium Series 2, American Chemical Society, Washington, D.C.
Strang, R. H., and Rogers, R. L., 1974, Behavior and fate of two phenylpyridazinone herbicides
in cotton, com and soybean, J. Agric. Food Chem. 22:1119.
Sumner, D. D., Cassidy, J. E., and Marco, G. J., 1976, Metabolism of profturalin in soybeans,
Weed Science Society of America, Abst. 33, Denver.
Swanson, C. R., and Swanson, H. R., 1968, Inhibition of degradation of monuron in cotton leaf
tissue by carbamate insecticides, Weed Sci. 16:481.
Thiman, K. Y., 1977, Hormone Action in the Whole Life of Plants, University of Massachusetts
Press, Amherst, Mass.
Thomas E. W., Loughman, B. C., and Powell, R. G., 1964, Metabolic fate of some chlorinated
phenoxyacetic acids in the stem tissue of Avena sativa, Nature (London) 204:286.
Thompson, R. P., 1974, A comparative study on the fate of cyanazine and atrazine in plants, Ph.D.
Thesis, University of Illinois, Xerox University Microfilms, Ann Arbor, Michigan.
United States Department of Agriculture, 1977, Agricultural Stabilization and Conservation Service,
Pestic. Rev., July 1976.
Upshall, D. G., and Goodwin, T. W., 1964, Biochemical investigations into the susceptibility of
barley varieties of DDT, J. Sci. Food Agric. 15:846.
Wain, R. L., and Smith, M. S., 1976, Selectivity in relation to metabolism, in: Herbicides: Physiology, Biochemistry, Ecology (L. J. Audus, ed.), pp. 279-302, Academic Press, New York.
65
Shimabukuro, R. H., Walsh, W. C., Stolzenberg, G. E., and Olson, P. A., 1975, Metabolism of ftuorodifen in peanuts, Weed Science Society of America, Abst. 171, Washington,
D.C.
Shimabukuro, R. H., Walsh, W. C., and Hoerauf, R. A., 19760, The role of coleoptile on ba...oan
selectivity between wild oat and wheat, Pestic. Biochem. Physiol. 6:115.
Shimabukuro, R. H., Walsh, W. C., Stolzenberg, G. E., and Olson, P. A., 1976b, Metabolism of
ftuorodifen to S-(2-nitro-4-triftuoromethylphenyl-N-malonylcysteine in peanuts, Weed Science
Society of America, Abstr. 196, Denver.
Shimabukuro, R. H., Lamoureux, G. L., and Frear, D. S., 19780, Glutathione conjugation: A
mechanism for herbicide detoxication and selectivity in plants, in: Chemistry and Action of
Herbicide Antidotes (F. M. Pallos and J. E. Casida, eds.), pp. 133-149, Academic Press, New
York.
Shimabukuro, M. A., Shimabukuro, R. H., Nord, W. S., and Hoerauf, R. A., 1978b, Physiological
effects of methyl 2-(4-[2,4-dichlorophenoxy]phenoxy)propanoate on oat, wild oat and wheat,
Pestic. Biochem. Physiol. 8:199.
Shimabukuro, R. H., Walsh, W. C., and Hoerauf, R. A., 1979, Metabolism and selectivity of
diclofop-methyl in wild oat and wheat, J. Agric. Food Chem. 27:615.
Still, G. G., 1968, Metabolism of 3,4-dichloropropionanilide in plants: The metabolic fate of the
3,4-dichloroaniline moiety, Science 159:992.
Still, G. G., and Kuzerian, 0., 1967, Enzyme detoxication of 3' ,4'-dichloropropionanilide in rice
and barnyard grass, a factor in herbicide selectivity, Nature (London) 216:799.
Still, G. G., and Mansager, E. R., 1972, Aryl hydroxylation of isopropyl-3-chlorocarbanilate by
soybean plants, Phytochemistry 11:515.
Still, G. G., and Mansager, E. R., 1973, Soybean shoot metabolism of isopropyl-3-chlorocarbanilate:
Ortho and para aryl hydroxylation, Pestic. Biochem. Physiol. 3:87.
Still, G. G., and Rusness, D. G., 1977, S-cysteinyl-hydroxychlorpropham: Formation of the Scysteinyl conjugate of isopropyl-3' -chloro-4' -hydroxycarbanilate in oat (Avena sativa L.), Pestic. Biochem. Physiol. 7:210.
Still, G. G., Rusness, D. G., and Mansager, E. R., 1974, Carbanilate herbicides and their metabolic
products: Their effect on plant metabolism, in: Mechanism of Pesticide Action (G. K. Kohn,
ed.), pp. 117-129, ACS Symposium Series 2, American Chemical Society, Washington, D.C.
Strang, R. H., and Rogers, R. L., 1974, Behavior and fate of two phenylpyridazinone herbicides
in cotton, com and soybean, J. Agric. Food Chem. 22:1119.
Sumner, D. D., Cassidy, J. E., and Marco, G. J., 1976, Metabolism of profturalin in soybeans,
Weed Science Society of America, Abst. 33, Denver.
Swanson, C. R., and Swanson, H. R., 1968, Inhibition of degradation of monuron in cotton leaf
tissue by carbamate insecticides, Weed Sci. 16:481.
Thiman, K. Y., 1977, Hormone Action in the Whole Life of Plants, University of Massachusetts
Press, Amherst, Mass.
Thomas E. W., Loughman, B. C., and Powell, R. G., 1964, Metabolic fate of some chlorinated
phenoxyacetic acids in the stem tissue of Avena sativa, Nature (London) 204:286.
Thompson, R. P., 1974, A comparative study on the fate of cyanazine and atrazine in plants, Ph.D.
Thesis, University of Illinois, Xerox University Microfilms, Ann Arbor, Michigan.
United States Department of Agriculture, 1977, Agricultural Stabilization and Conservation Service,
Pestic. Rev., July 1976.
Upshall, D. G., and Goodwin, T. W., 1964, Biochemical investigations into the susceptibility of
barley varieties of DDT, J. Sci. Food Agric. 15:846.
Wain, R. L., and Smith, M. S., 1976, Selectivity in relation to metabolism, in: Herbicides: Physiology, Biochemistry, Ecology (L. J. Audus, ed.), pp. 279-302, Academic Press, New York.
