Pesticide Metabolism in Plants
59
Andreae, W. A. , and Good, N. E., 1955, The formation of indole-acetylaspartic acid in pea seedlings,
Plant Physiol. 30:380.
Andreev, G. K., and Amrhein, N., 1976, Mechanism of action of the herbicide 2-chloro-3(4chlorophenyl)propionate and its methyl ester: Interaction with cell responses mediated by auxin,
Physiol. Plant 37:175.
Appleton, H. T., and Nakatsugawa, T., 1977, The toxicological significance of paraoxon deethylation, Pestic. Biochem. Physiol. 7:451.
Arias, J. M., and Jacoby, W. B., 1976, Glutathione Metabolism and Function, Kroc Foundation
Series, Vol. 6, Raven Press, New York.
Arjmand, M., Hamilton, R. H., and Mumma, R. 0., 1978, Metabolism of 2,4,5-trichlorophenoxyacetic acid. Evidence for amino acid conjugates in soybean callus tissue, J. Agric. Food
Chem.26:1125.
Bakke, J. E., Larsen, J. D., and Price, C. E., 1972a, Metabolism of atrazine and 2-hydroxyatrazine
by the rat, J. Agric. Food Chem. 20:602.
Bakke, J. E., Shimabukuro, R. H., Davison, K. L., and Lamoureux, G. L., 1972b, Sheep and rat
metabolism of the insoluble l"C-residues present in 14C-atrazine treated sorghum, Chemosphere
1:21.
Balba, H. M., and Still, G. G., 1977, Studies of bound residues of chloroanilines in plants, Abstract,
174th National Meeting, American Chemical Society, Chicago.
Baldwin, B. C., 1977, Xenobiotic metabolism in plants, in: Drug Metabolism: From Microbe to
Man (D. V. Parke and R. L. Smith, eds.), pp. 191-217, Taylor and Francis, London.
Bandurski, R. S., and Schulze, A., 1977, Concentration of indole-3-acetic acid and its derivatives
in plants, Ptant Physiol 60:211.
Bandurski, R. S., Schulze, A., and Cohen, J. D., 1977, Photoregulation of the ratio of ester to free
indole-3-acetic acid, Biochem. Biophys. Res. Commun. 79:1219.
Beynon, K. I., Stoydin, G., and Wright, A. N., 1972a, A comparison of the breakdown of the
triazine herbicides cyanazine, atrazine and simazine in soils and maize, Pestic. Biochem.
Physiol. 2:153.
Beynon, K. I., Stoydin, G., and Wright, A. N., 1972b, The breakdown of the triazine herbicide
cyanazine in wheat and potatoes grown under indoor conditions in treated soils, Pestic. Sci.
3:379.
Beynon, K. I., Hutson, D. H., and Wright, A. N., 1973, The metabolism and degradation of vinyl
phosphate insecticides, Res. Rev. 47:55.
Beynon, K. I., Roberts, T. R., and Wright, A. N., 1974, The degradation of the herbicide benzoylprop ethyl following its application to wheat, Pestic. Sci. 5:429.
Biswas, P. K., and Hamilton, W., Jr., 1969, Metabolism oftrifturalin in peanuts and sweet potatoes,
Weed Sci. 17:206.
Bowes, G. W., 1972, Uptake and metabolism of 2,2-bis(p-chlorophenyl)-I,I,I-trichloroethane
(DDT) by marine phytoplankton and its effect on growth and chloroplast electron transport,
Plant Physiol. 49:172.
Boyland, E., and Chasseaud, L. F., 1969, The role of glutathione and glutathione S-transferases
in mercapturic acid biosynthesis, Adv. Enzymol. 32:173.
Brain, K. R., and Lines, D. S., 1977, Uptake and metabolism of aldrin in plant tissue culture, in:
Plant Tissue Culture and Its Bio-Technical Application (W. Barz, E. Reinhard, and M. W.
Zenk, eds.), pp. 197-203, Springer-Verlag, New York.
Brooks, G. T., 1974, Chlorinated Insecticides. Vol. II, CRC Press, Cleveland.
Bukovac, M. T., 1976, Herbicide entry into plants, in: Herbicides: Physiology, Biochemistry,
Ecology, Vol. 1 (L. J. Audus, ed.), pp. 335-364, Academic Press, New York.
Bull, D. L., 1972, Metabolism of organophosphorus insecticides in animals and plants, Res. Rev.
43:1.
59
Andreae, W. A. , and Good, N. E., 1955, The formation of indole-acetylaspartic acid in pea seedlings,
Plant Physiol. 30:380.
Andreev, G. K., and Amrhein, N., 1976, Mechanism of action of the herbicide 2-chloro-3(4chlorophenyl)propionate and its methyl ester: Interaction with cell responses mediated by auxin,
Physiol. Plant 37:175.
Appleton, H. T., and Nakatsugawa, T., 1977, The toxicological significance of paraoxon deethylation, Pestic. Biochem. Physiol. 7:451.
Arias, J. M., and Jacoby, W. B., 1976, Glutathione Metabolism and Function, Kroc Foundation
Series, Vol. 6, Raven Press, New York.
Arjmand, M., Hamilton, R. H., and Mumma, R. 0., 1978, Metabolism of 2,4,5-trichlorophenoxyacetic acid. Evidence for amino acid conjugates in soybean callus tissue, J. Agric. Food
Chem.26:1125.
Bakke, J. E., Larsen, J. D., and Price, C. E., 1972a, Metabolism of atrazine and 2-hydroxyatrazine
by the rat, J. Agric. Food Chem. 20:602.
Bakke, J. E., Shimabukuro, R. H., Davison, K. L., and Lamoureux, G. L., 1972b, Sheep and rat
metabolism of the insoluble l"C-residues present in 14C-atrazine treated sorghum, Chemosphere
1:21.
Balba, H. M., and Still, G. G., 1977, Studies of bound residues of chloroanilines in plants, Abstract,
174th National Meeting, American Chemical Society, Chicago.
Baldwin, B. C., 1977, Xenobiotic metabolism in plants, in: Drug Metabolism: From Microbe to
Man (D. V. Parke and R. L. Smith, eds.), pp. 191-217, Taylor and Francis, London.
Bandurski, R. S., and Schulze, A., 1977, Concentration of indole-3-acetic acid and its derivatives
in plants, Ptant Physiol 60:211.
Bandurski, R. S., Schulze, A., and Cohen, J. D., 1977, Photoregulation of the ratio of ester to free
indole-3-acetic acid, Biochem. Biophys. Res. Commun. 79:1219.
Beynon, K. I., Stoydin, G., and Wright, A. N., 1972a, A comparison of the breakdown of the
triazine herbicides cyanazine, atrazine and simazine in soils and maize, Pestic. Biochem.
Physiol. 2:153.
Beynon, K. I., Stoydin, G., and Wright, A. N., 1972b, The breakdown of the triazine herbicide
cyanazine in wheat and potatoes grown under indoor conditions in treated soils, Pestic. Sci.
3:379.
Beynon, K. I., Hutson, D. H., and Wright, A. N., 1973, The metabolism and degradation of vinyl
phosphate insecticides, Res. Rev. 47:55.
Beynon, K. I., Roberts, T. R., and Wright, A. N., 1974, The degradation of the herbicide benzoylprop ethyl following its application to wheat, Pestic. Sci. 5:429.
Biswas, P. K., and Hamilton, W., Jr., 1969, Metabolism oftrifturalin in peanuts and sweet potatoes,
Weed Sci. 17:206.
Bowes, G. W., 1972, Uptake and metabolism of 2,2-bis(p-chlorophenyl)-I,I,I-trichloroethane
(DDT) by marine phytoplankton and its effect on growth and chloroplast electron transport,
Plant Physiol. 49:172.
Boyland, E., and Chasseaud, L. F., 1969, The role of glutathione and glutathione S-transferases
in mercapturic acid biosynthesis, Adv. Enzymol. 32:173.
Brain, K. R., and Lines, D. S., 1977, Uptake and metabolism of aldrin in plant tissue culture, in:
Plant Tissue Culture and Its Bio-Technical Application (W. Barz, E. Reinhard, and M. W.
Zenk, eds.), pp. 197-203, Springer-Verlag, New York.
Brooks, G. T., 1974, Chlorinated Insecticides. Vol. II, CRC Press, Cleveland.
Bukovac, M. T., 1976, Herbicide entry into plants, in: Herbicides: Physiology, Biochemistry,
Ecology, Vol. 1 (L. J. Audus, ed.), pp. 335-364, Academic Press, New York.
Bull, D. L., 1972, Metabolism of organophosphorus insecticides in animals and plants, Res. Rev.
43:1.
