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Thiomolybdates and the copper–molybdenum–sulphur interaction in ruminant nutrition

Published online by Cambridge University Press:  27 March 2009

A. T. Dick
Affiliation:
C.S.I.R.O., Division of Nutritional Biochemistry, Kintore Avenue, Adelaide, South Australia 5000
D. W. Dewey
Affiliation:
C.S.I.R.O., Division of Nutritional Biochemistry, Kintore Avenue, Adelaide, South Australia 5000
J. M. Gawthorne
Affiliation:
C.S.I.R.O., Division of Nutritional Biochemistry, Kintore Avenue, Adelaide, South Australia 5000

Extract

In 1945 we reported (Dick & Bull, 1945) the first observations on the effects of molybdenum in the diet of ruminants in limiting the accumulation of copper in their tissues.

Further observations (Dick, 1952) indicated that there was a third factor which materially altered the control by molybdenum of copper accumulation and this factor, present in lucerne hay, was identified as inorganic sulphate (Dick, 1953a). It was also shown that sulphate regulated molybdenum excretion (Dick, 1953b) in the urine and hence the level of molybdenum in circulating blood (Dick, 1953c).

Type
Short Note
Copyright
Copyright © Cambridge University Press 1975

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References

REFERENCES

Aymonino, P. J., Ranade, A. C., Diemann, E. & Müller, A. (1969). Study of formation and relative reaction rates of different thioanions of molybdenum and tungsten. Zeitschrift fur anorganische und allgemeine Chemie 371, 300–5.Google Scholar
Dick, A. T. (1952). The effect of diet and of molybdenum on copper metabolism in sheep. Australian Veterinary Journal 28, 30–3.CrossRefGoogle Scholar
Dick, A. T. (1953a). The control of copper storage in the liver of sheep by inorganic sulphate and molybdenum. Australian Veterinary Journal 29, 233–9.CrossRefGoogle Scholar
Dick, A. T. (1953b). The effect of inorganic sulphate on the excretion of molybdenum in the sheep. Australian Veterinary Journal 29, 1826.CrossRefGoogle Scholar
Dick, A. T. (1953c). Influence of inorganic sulphate on the copper-molybdenum interrelationship in sheep. Nature, London 172, 637.CrossRefGoogle Scholar
Dick, A. T. (1956). Molybdenum and copper relationships in animal nutrition. In Inorganic Nitrogen Metabolism (ed. McElroy, W. D. and Glass, B.), pp. 445–73. Baltimore: The Johns Hopkins Press.Google Scholar
Dick, A. T. & Bull, L. B. (1945). Some preliminary observations on the effect of molybdenum on copper metabolism in herbivorous animals. Australian Veterinary Journal 21, 70–2.CrossRefGoogle ScholarPubMed
Dowdy, R. P. & Matrone, G. (1968). Copper-molybdenum interaction in sheep and chicks. Journal of Nutrition 95, 191–6.CrossRefGoogle ScholarPubMed
Ferguson, W. S., Lewis, A. H. & Watson, S. J. (1943). The teart pastures of Somerset. 1. The cause and cure of teartness. Journal of Agricultural Science, Cambridge 33, 4451.CrossRefGoogle Scholar
Halverson, A. W., Phifer, J. H. & Monty, K. (1960). A mechanism for the copper-molybdenum interrelationship. Journal of Nutrition 71, 95100.CrossRefGoogle ScholarPubMed
Huisingh, J., Gomez, G. G. & Matrone, G. (1973). Interactions of copper, molybdenum and sulfate in ruminant nutrition. Federation Proceedings 32, 1921–4.Google ScholarPubMed
Kruss, G. (1884). Ueber die schwefelverbingungen des molybdäns. Liebig's Annalen der Chemie 225, 157.CrossRefGoogle Scholar
Mellor, J. W. (1931). Sulphomolybdates and oxisulphomolybdates. Comprehensive Treatise in Inorganic and Theoretical Chemistry XI, 650–2. London: Longmans Green and Co.Google Scholar
Mills, C. F. (1960). Comparative studies of copper, molybdenum and sulphur metabolism in the ruminant and the rat. Proceedings of the Nutrition Society 19, 162–9.CrossRefGoogle ScholarPubMed
Muller, A., Diemann, E., Krebs, B. & Leroy, M. J. F. (1968). Trithiomolybdates. Angewandte Chemie, International Edition 7, 817.CrossRefGoogle Scholar
Tompsett, S. L. (1934). The copper content of blood. The Biochemical Journal 28, 1544–9.CrossRefGoogle ScholarPubMed