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The effects of copper deficiency and of chronic overdosage with copper on Border-Leicester and Merino sheep

Published online by Cambridge University Press:  27 March 2009

Hedley R. Marston
Affiliation:
From the Division of Biochemistry and General Nutrition of the Council for Scientific and Industrial Research, University of Adelaide, South Australia
Hector John Lee
Affiliation:
From the Division of Biochemistry and General Nutrition of the Council for Scientific and Industrial Research, University of Adelaide, South Australia

Summary

The effects of copper deficiency and of copper excess on mature Merino and Border-Leicester ewes were studied experimentally over a period of 3½ years with five evenly matched groups of each breed which were all depastured together as one flock on terrain where sheep develop cobalt and copper deficiency. All were treated with the equivalent of 1 mg. Co/day. Copper was administered thrice weekly in doses which provided for individuals of the respective groups the equivalent of nil, 1, 5, 50 and 100 mg. Cu/day.

All of the individuals that received only cobalt became anaemic; they lost weight and developed marked symptoms of copper deficiency.

The supplement of 1 mg. Cu/day was sufficient to delay the onset of these symptoms, but it failed to increase significantly the concentration of copper in the blood and it was insufficient to ensure normal myelin formation in the central nervous system of lambs born of the ewes which had received this treatment for 2 years prior to mating.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1948

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References

REFERENCES

Adair, G. S. (1925). Proc. Roy. Soc. A, 108, 627.Google Scholar
Albiston, H. E., Bull, L. B., Dick, A. T. & Keast, J. C. (1940). Aust. vet. J. 16, 233.Google Scholar
Beijebs, J. A. (1932). Tijdschr. Diergeneesk. 59, 1317.Google Scholar
Boughton, I. B. & Hardy, W. T. (1934). Bull. Tex. agric. Exp. Sta.. 499.Google Scholar
Eden, A. (1940). J. Oomp. Path. Therap. 53, 90.CrossRefGoogle Scholar
Hüfner, G. (1894). Archiv f. Anat. u. Phys., Physiol. Abt., 130.Google Scholar
Marston, H. R. (1946). Proc. Symposium on Fibrous Proteins, Leeds. (Soc. Dyers and Colourists.)Google Scholar
Marston, H. R., Lee, H. J. & McDonald, I. W. (1948a). J. Agric. Sci. 38, 216.Google Scholar
Marston, H. R., Lee, H. J. & McDonald, I. W. (1948b). J. Agric. Sci. 38, 222.CrossRefGoogle Scholar