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Effect of breed of cow (Friesian and Montbéliarde) on spontaneous and induced lipolysis in milk

Published online by Cambridge University Press:  01 June 2009

Marie-Paule Chazal
Affiliation:
Laboratoire de la Lactation, INRA, Theix 63122 Ceyrat, France
Yves Chilliard
Affiliation:
Laboratoire de la Lactation, INRA, Theix 63122 Ceyrat, France

Summary

Levels of free fatty acids (FFA) were determined immediately after milking (initial FFA), and after 22 h storage at 4 °C, either without (FFA-22) or with a mechanical induction of lipolysis (FFA-22I), in milk from Friesian and Montbéliarde cows in the same herd, at identical stages of lactation and pregnancy and receiving the same feeding regimes. There was no difference between the two breeds in initial FFA and FFA-22 contents whatever the lactation period. This was also true during late lactation when lipolysis was further increased after feeding a poor quality grass silage. The observation that milk FFA-22I content from the Montbéliarde cows was higher than that from Friesian cows in summer, but not in winter, requires cautious interpretation as the activation treatments were not comparable, owing to the different ambient temperatures during activation in these two periods.

Type
Original Articles
Copyright
Copyright © Proprietors of Journal of Dairy Research 1987

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References

REFERENCES

Chazal, M. P. & Chilliard, Y. 1986 Effect of stage of lactation, stage of pregnancy, milk yield and herd management on seasonal variation in spontaneous lipolysis in bovine milk. Journal of Dairy Research 53 529538CrossRefGoogle ScholarPubMed
Chilliard, Y. 1982 [Physiological variations in lipase activity and in spontaneous lipolysis in cow, goat and human milks: bibliographic review.] Lait 62 1–31, 126154CrossRefGoogle Scholar
Deeth, H. C. & Fitz-Gerald, C. H. 1976 Lipolysis in dairy products: a review. Australian Journal of Dairy Technology 31 5364Google Scholar
Deeth, H. C. & Fitz-Gerald, C. H. 1977 Some factors involved in milk lipase activation by agitation. Journal of Dairy Research 44 569583CrossRefGoogle Scholar
Deeth, H. C. & Fitz-Gerald, C. H. 1978 Effects of mechanical agitation of raw milk on the milk-fat globule in relation to the level of induced lipolysis. Journal of Dairy Research 45 373380CrossRefGoogle Scholar
Downey, W. K. 1980 Review of the progress of Dairy Science: Flavour impairment from pre- and post-manufacture lipolysis in milk and dairy products. Journal of Dairy Research 47 237252CrossRefGoogle Scholar
Herpington, B. L. & Krukovsky, V. N. 1939 Studies of lipase action. III. Lipase action in the milk of individual cows. Journal of Dairy Science 22 149152CrossRefGoogle Scholar
Jarrige, R. (ED.) 1978 Alimentation des ruminants. Versailles: Institut National de la Recherche AgronomiqueGoogle Scholar
Roahen, D. C. & Sommer, H. H. 1940 Lipolytic activity in milk and cream. Journal of Dairy Science 23 831841CrossRefGoogle Scholar
Stobbs, T. H., Deeth, H. C. & Fitz-Gerald, C. H. 1973 Effect of energy intake on spontaneous lipolysis in milk from cows in late lactation. Australian Journal of Dairy Technology 28 170172Google Scholar