152
Hugh D. Sisler
EBDC, Fungicide Assessment Team, U.S. Department of Agriculture, 1977, Assessment of ethylenebisdithiocarbamate (EBDC) fungicide uses in agriculture. I. An analysis of uses and their
relationship to exposure, U.S. Department of Agriculture, Washington, D.C.
Engst, R., and Raab, M., 1973, Zum Metabolismus fungizider phthalimid-Derivate in
lebensmittelchemischtoxikologischer Sicht, Nahrung 17:731.
Erwin, D. C., 1977, Control of vascular pathogens, in: Antifungal Compounds, Vol. 1 (M. R. Siegel
and H. D. Sisler, eds.), pp. 163-224, Marcel Dekker, New York.
Fielding, M. J., and Rhodes, R. C., 1967, Studies with C l4 -labeled chloroneb fungicides in plants,
Cotton Dis. Counc. Proc. 27:56.
Fishbein, L., 1977, Toxicological aspects of fungicides, in: Antifungal Compounds, Vol. 1 (M. R.
Siegel and H. D. Sisler, eds.), pp. 537-598, Marcel Dekker, New York.
Fleeker, J. R., Lacy, H. M., Schultz, I. R., and Houkom, E. C., 1974, Persistence and metabolism
of thiophanate-methyl in soil, J. Agric. Food Chem. 22:592.
Fuchs, A., and Bollen, G. J., 1975, Benomyl after seven years, in: Systemic Fungicides (H. Lyr
and C. Polter, eds.), pp. 121-136, Akademie-Verlag, Berlin.
Fuchs, A., Van den Berg, G. A., and Davidse, L. C., 1972, A comparison of benomyl and
thiophanates with respect to some chemical and systemic fungitoxic characteristics, Pestic.
Biochem. Physiol. 2:192.
Gardiner, J. A., Kirkland, J. J., Klopping, H. L., and Sherman, H., 1974, Fate of benomyl in
animals, J. Agric. Food Chem. 22:419.
Go~yr, J., 1955, The effect of some dithiocarbamyl compounds on the metabolism of fungi,
Physiol. Plant. 8:719.
Gorbach, S., and Wagner, U., 1967, Pentachloronitrobenzene residues in potatoes, J. Agric. Food
Chem. 15:654.
Gutenmann, W. H., and Lisk, D. J., 1969, Metabolic studies with chloroneb fungicide in a lactating
cow, J. Agric. Food Chem. 17:1008.
Helwig, A., 1972, Microbial breakdown of the fungicide benomyl, Soil Bioi. Biochem. 4:377.
Hoagland, R. E., and Frear, D. S., 1976, Behavior and fate of ethylenethiourea in plants, J. Agric.
Food Chem. 24:129.
Hock, W. K., and Sisler, H. D., 1969, Metabolism of chloroneb by Rhizoctonia solani and other
fungi, J. Agric. Food Chem. 17:123.
Janutolo, D. B., and Stipes, R. J., 1978, Benzimidazole fungitoxicants in Virginia soils: Movement,
disappearance and effect on microorganisms, Va. Wat. Res. Cent. Bull. No. 113.
Johnston, C. D., 1953, The in vitro reaction between tetraethylithiuram disulfide (Antabuse) and
glutathione, Arch. Biochem. Biophys. 44:249.
Kaars Sijpesteijn, A., and van der Kerk, G. J. M., 1954, Investigations on organic fungicides. vm.
The biochemical mode of action of bisdithiocarbamates and diisothiocyanates, Biochim. Biophys. Acta 13:545.
Kaars Sijpesteijn, A., Dekhuijzen, H. M., Kaslander, J., Pluijger, C. W., and van der Kerk, G. J.
M., 1963, Metabolism of sodium dimethyldithiocarbarnate by plants and microorganisms,
Meded. Landbouwhogesch. Gent. 28:597.
Kaars Sijpesteijn, A., Luijten, J. G. A., and van der Ker, G. J. M., 1969, Organometallic fungicides,
in: Fungicides, Vol. 2 (D. C. Torgeson, ed.), pp. 331-366, Academic Press, New York.
Kaars Sijpesteijn, A., Dekhuijzen, H. M., and Vonk, J. W., 1977, Biological conversion of fungicides in plants and microorganism, in: Antifungal Compounds, Vol. 2 (M. R. Siegel and H.
D. Sisler, eds.), pp. 91-147, Marcel Dekker, New York.
Kaufman, D. D., 1972, Degradation of pesticide combinations, Pestic. Chem. 6:175.
Kaufman, D. D., 1977, Soil-fungicide interactions, in: Antifungal Compounds, Vol. 2 (M. R. Siegel
and H. D. Sisler, eds.), pp. 1-49, Marcel Dekker, New York.
Hugh D. Sisler
EBDC, Fungicide Assessment Team, U.S. Department of Agriculture, 1977, Assessment of ethylenebisdithiocarbamate (EBDC) fungicide uses in agriculture. I. An analysis of uses and their
relationship to exposure, U.S. Department of Agriculture, Washington, D.C.
Engst, R., and Raab, M., 1973, Zum Metabolismus fungizider phthalimid-Derivate in
lebensmittelchemischtoxikologischer Sicht, Nahrung 17:731.
Erwin, D. C., 1977, Control of vascular pathogens, in: Antifungal Compounds, Vol. 1 (M. R. Siegel
and H. D. Sisler, eds.), pp. 163-224, Marcel Dekker, New York.
Fielding, M. J., and Rhodes, R. C., 1967, Studies with C l4 -labeled chloroneb fungicides in plants,
Cotton Dis. Counc. Proc. 27:56.
Fishbein, L., 1977, Toxicological aspects of fungicides, in: Antifungal Compounds, Vol. 1 (M. R.
Siegel and H. D. Sisler, eds.), pp. 537-598, Marcel Dekker, New York.
Fleeker, J. R., Lacy, H. M., Schultz, I. R., and Houkom, E. C., 1974, Persistence and metabolism
of thiophanate-methyl in soil, J. Agric. Food Chem. 22:592.
Fuchs, A., and Bollen, G. J., 1975, Benomyl after seven years, in: Systemic Fungicides (H. Lyr
and C. Polter, eds.), pp. 121-136, Akademie-Verlag, Berlin.
Fuchs, A., Van den Berg, G. A., and Davidse, L. C., 1972, A comparison of benomyl and
thiophanates with respect to some chemical and systemic fungitoxic characteristics, Pestic.
Biochem. Physiol. 2:192.
Gardiner, J. A., Kirkland, J. J., Klopping, H. L., and Sherman, H., 1974, Fate of benomyl in
animals, J. Agric. Food Chem. 22:419.
Go~yr, J., 1955, The effect of some dithiocarbamyl compounds on the metabolism of fungi,
Physiol. Plant. 8:719.
Gorbach, S., and Wagner, U., 1967, Pentachloronitrobenzene residues in potatoes, J. Agric. Food
Chem. 15:654.
Gutenmann, W. H., and Lisk, D. J., 1969, Metabolic studies with chloroneb fungicide in a lactating
cow, J. Agric. Food Chem. 17:1008.
Helwig, A., 1972, Microbial breakdown of the fungicide benomyl, Soil Bioi. Biochem. 4:377.
Hoagland, R. E., and Frear, D. S., 1976, Behavior and fate of ethylenethiourea in plants, J. Agric.
Food Chem. 24:129.
Hock, W. K., and Sisler, H. D., 1969, Metabolism of chloroneb by Rhizoctonia solani and other
fungi, J. Agric. Food Chem. 17:123.
Janutolo, D. B., and Stipes, R. J., 1978, Benzimidazole fungitoxicants in Virginia soils: Movement,
disappearance and effect on microorganisms, Va. Wat. Res. Cent. Bull. No. 113.
Johnston, C. D., 1953, The in vitro reaction between tetraethylithiuram disulfide (Antabuse) and
glutathione, Arch. Biochem. Biophys. 44:249.
Kaars Sijpesteijn, A., and van der Kerk, G. J. M., 1954, Investigations on organic fungicides. vm.
The biochemical mode of action of bisdithiocarbamates and diisothiocyanates, Biochim. Biophys. Acta 13:545.
Kaars Sijpesteijn, A., Dekhuijzen, H. M., Kaslander, J., Pluijger, C. W., and van der Kerk, G. J.
M., 1963, Metabolism of sodium dimethyldithiocarbarnate by plants and microorganisms,
Meded. Landbouwhogesch. Gent. 28:597.
Kaars Sijpesteijn, A., Luijten, J. G. A., and van der Ker, G. J. M., 1969, Organometallic fungicides,
in: Fungicides, Vol. 2 (D. C. Torgeson, ed.), pp. 331-366, Academic Press, New York.
Kaars Sijpesteijn, A., Dekhuijzen, H. M., and Vonk, J. W., 1977, Biological conversion of fungicides in plants and microorganism, in: Antifungal Compounds, Vol. 2 (M. R. Siegel and H.
D. Sisler, eds.), pp. 91-147, Marcel Dekker, New York.
Kaufman, D. D., 1972, Degradation of pesticide combinations, Pestic. Chem. 6:175.
Kaufman, D. D., 1977, Soil-fungicide interactions, in: Antifungal Compounds, Vol. 2 (M. R. Siegel
and H. D. Sisler, eds.), pp. 1-49, Marcel Dekker, New York.
