Vet Med - Czech, 2006, 51(6):346-355 | DOI: 10.17221/5555-VETMED
Influence of increased lipid content in diet in the form of treated rapeseed meal on the metabolism and milk yield of dairy cows in the first third of lactation
- 1 Clinic of Diseases of Ruminants, University of Veterinary and Pharmaceutical Sciences, Brno, Czech Republic
- 2 Agricultural and Commercial Cooperative Society, Zichlinek, Czech Republic
The purpose of this study was to evaluate the influence of high lipid concentration in the diet, served as calcium salts of fatty acids from rape, on metabolism and the milk yield of dairy cows during the first third of lactation. 28 dairy cows were divided into experimental (E; n = 14) and control groups (C; n = 14) and monitored within 100 days of lactation since the day of parturition. The diet of both groups had a balanced content of energy and crude protein, while there was a difference in lipid content (C - 3.7% vs. E - 6.99% of dry matter in the diet). Blood and urine samples were taken at the end of 1st, 2nd and 3rd months of lactation. Evaluation of milk yield was carried out based on the results of monthly milk yield control, while the evaluation of reproduction was performed using data supplied by a farm livestock specialist. At the end of the first month, a higher degree of energetic metabolism disturbance was determined in group E in comparison with group C (beta-hydroxybutyrate 1.05 vs 0.51 mmol/l, P ≤ 0.05; nonesterified fatty acids 0.68 vs. 0.27 mmol/l, P ≤ 0.01), as well as a higher occurrence of liver damage (bilirubine 6.50 vs. 4.59 μmol/l, P ≤ 0,01; aspartate amino transferase 1.66 vs. 1.39 μkat/l, P≤ 0.05; lactate-dehydrogenase 45.2 vs. 34.3 μkat/l, P ≤ 0.05). During the entire experiment, the total concentration of cholesterol, HDL-cholesterol and vitamin E rose, and thus in the 3rd month, the values in the experimental group were almost double that of the control group (cholesterol 7.28 vs. 3.69 mmol/l, P ≤ 0.0001; HDL-cholesterol 5.43 vs. 3.26 mmol/l, P ≤ 0.0001; vitamin E 19.9 vs. 10.3 μmol/l, P ≤ 0.0001). The proportion of HDL-cholesterol was lower in group E (3rd month 76.1 vs. 88.8%, P ≤ 0.001). We also determined a higher total anti-oxidant status of serum in group E in the second (0.96 vs. 0.90 mmol/l, P ≤ 0.05) and third months of lactation (1.02 vs. 0.94 mmol/l, P ≤ 0.05), while other parameters of the anti-oxidation system (glutathionperoxidase, superoxiddismutase) did not differ between groups. The total production of milk within the 100 days of lactation in both monitored groups was similar. In group E the concentration of milk protein was lower (3.18 vs. 3.45%, P ≤ 0.01), while the concentration of fat was insignificantly higher (3.55 vs. 3.21%) than in group C. The results of effect on reproduction did not differ significantly either, but the total percentage of gravidity was higher in the experimental group. Our results revealed that feeding of higher doses of lipid (6.99 %) fed in bypass form during the first month after parturition creates the health risk of a fatty liver, but no negative impact on the health of dairy cows was demonstrated during the peak period of lactation.
Keywords: TAS; cholesterol; vitamin E; SOD; T3; T4; reproduction; blood
Published: June 30, 2006 Show citation
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References
- Bauman D.E., Griinari J.M. (2001): Regulation and nutritional manipulation of milk fat: low-fat milk syndrome. Livestock Production Science, 70, 15-29.
Go to original source...
- Berttics S.J., Grummer R.R. (1999): Effects of fat and methionine hydroxy analog on prevention or alleviation of fatty liver induced by feed restriction. Journal of Dairy Science, 82, 2731-2736.
Go to original source...
Go to PubMed...
- Bobe G., Young J.W., Beitz D.C. (2004): Pathology, etiology, prevention and treatment of fatty liver in dairy cows. Journal of Dairy Science, 87, 3105-3125.
Go to original source...
Go to PubMed...
- Bouda J., Jagos P. Dvorak V. (1980): Fluorometric determination of vitamins A and E in blood plasma, colostrum and the liver of cattle (in Czech). Czechoslovak Physiology, 29, 351.
- Castillo C., Hernandez J., Lopez-Alonzo M., Miranda M., Benedito J.L. (2003): Values of plasma lipid hydroperoxides and total antioxidant status in healthy dairy cows: preliminary observations. Archiv fur Tierzucht-Archives of Animal breeding, 46, 227-233.
Go to original source...
- Castillo C., Hernandez J., Bravo A., Lopez-Alonzo M., Pereiro V., Benedito J.L. (2005): Oxidative status during late pregnancy and early lactation in dairy cows. Veterinary Journal, 169, 286-292.
Go to original source...
Go to PubMed...
- Fry J.M., Smith G.M., McGrath M.C., Speijers E.J., Allen J.G. (1993): Plasma and tissue concentrations of alphatocopherol during vitamin-E depletion in sheep. British Journal of Nutrition, 69, 225-232.
Go to original source...
Go to PubMed...
- Garnsworthy P.C. (2002): Fats in dairy cow diets. In: Garnsworthy P.C, Wiseman J. (eds.): Recent Developments in Ruminant Nutrition. 4th ed. Nottingham University Press. 399-415.
- Ghiselli A., Serafini M., Natella F., Scaccini C. (2000): Total antioxidant capacity as a tool to assess redox status: critical view and experimental data. Free Radical Biology and Medicine, 29, 1106-1114.
Go to original source...
Go to PubMed...
- Grum D.E., Drackley J.K., Hansen L.R., Cremin J.D. (1996): Production, digestion, and hepatic lipid metabolism of dairy cows fed increased energy from fat or concentrate. Journal of Dairy Science, 79, 1836-1849.
Go to original source...
Go to PubMed...
- Grummer R.R., Carroll D.J. (1991): Effects of dietary fat on metabolic disorders and reproductive performance of dairy cattle. Journal of Animal Science, 69, 3838-3852.
Go to original source...
Go to PubMed...
- Huszenica G., Kulcsar M., Nagy P., Milhaly K., Fekete S., Zoldag L., Trenti F. (1994): Ovarian and metabolic characteristics of repeat breeding dairy cows and heifers and the effect of intrauterine lugol treatment on their fertility. In: Proceedings 18th World Buiatric Congress, Bologna, Italy, 281-285.
- Huszenica G., Kulcsar M., Rudas P. (2002): Clinical endocrinology of thyroid gland function in ruminants. Veterinarni Medicina, 47, 199-210.
Go to original source...
- Illek J., Pechova A., Suchy P. (1995): Effect of liver steatosis on the composition of cow milk. In: Proceedings of the 9th International Conference on Production Diseasees in farm Animals, Berlin, Proceeding's, 160.
- Jones R.A., Mustafa A.F., Ghristensen D.A., McKinnon J.J. (2001): Effects of untreated and heat-treated canola prescake on milk yield and composition of dairy cows. Animal Feed Science and Technology, 89, 97-111.
Go to original source...
- Kampl B., Zdelar F., Alegro A., Dasovic N., Spiranec M. (1990): Levels of total cholesterol and its fractions in the blood serum of cows with reproductive disorders. Veterinarny Glasnik, 44, 955-959.
- Kampl B., Zdelar F., Pracny G., Martincic T. (1995): Relationship between concentrations of fat in milk and very low density lipoproteins cholesterol fraction in blood and incidence of productive diseases in dairy cows. Veterinarski Arhiv, 65, 149-154.
- Kokkonen T., Taponen J., Tuori M., Lohenoja S., Kulcsar M., Delavaud C., Chilliard Y., Tesfa A.T. (2004): Effects of fat supplementation in early lactation dairy cows. Journal of Animal and Feed Science, 13, Suppl. 1, 499-502.
Go to original source...
- Komprda T., Dvorak R., Suchy P., Fialova M., Sustova K. (2000): Effect of heat-treated rapeseed cakes in dairy cow diet on yield, composition and fatty acid pattern of milk. Czech Journal of Animal Science, 45, 325-332.
- Koper S., Ziolo T., Malinowski E., Trenti F. (1994): Arteriosclerosis of the uterus arteries as a possible reason of fertility disturbances in cows. In: Proceedings 18th World Buiatric Congress, Bologna, Italy, 407-410.
- Lubojacka V., Pechova A., Dvorak R., Drastich P., Kummer V., Poul J. (2005): Liver steatosis following supplementation with fat in dairy cow diets. Acta Veterinaria Brno, 74, 217-224.
Go to original source...
- Onetti S.G., Grummer R.R. (2004): Response of lactating cows to three supplemental fat sources as affected by forage in the diet and stage of lactation: a meta-analysis of literature. Animal Feed Science and Technology, 115, 65-82.
Go to original source...
- Patent Czech Republic No. 285 745. The technique of production feed additives for ruminants (in Czech), Vojtisek B.,Vacek F., Poul J., Urban L., Kratky J., Dvorak R., Simek M. (1999).
- Pechova A., Illek J., Halouzka R. (1997): Diagnosis and control of the development of hepatic steatosis in dairy cows in the postparturient period. Acta Veterinaria Brno, 66, 235-243.
Go to original source...
- Pechova A., Pavlata L., Dvorak R., Podhorsky A., Lubojacka V., Drastich P. (2004): T3 and T4 concentrations in dairy cows in relation to selected parameters of metabolism and iodine supply. In: Report's of the V. Central European Buiatric Congress, Hajduszoboszlo, Hungary, 369-374.
- Ruegg P.L., Goodger W.J., Holmberg C.A., Weaver L.D., Huffman E.M. (1992): Relation among body codition score, serum urea nitrogen and cholesterol concentrations, and reproductive performance in high-producing Holstein dairy cows in early lactation. American Journal of Veterinary Research, 53, 10-14.
Go to original source...
- Skaar T.C., Grummer R.R., Dentine M.R., Stauffacher R.H. (1989): Seasonal effects of pre- and postpartum fat and niacin feeding on lactation performance and lipid metabolism. Journal of Dairy Science, 72, 2028- 2038.
Go to original source...
Go to PubMed...
- Staples C.R., Burke J.M., Thatcher W.W. (1998): Influence of supplemental fats on reproductive tissues and performance of lactating cows. Journal of Dairy Science, 81, 856-871.
Go to original source...
Go to PubMed...
- Thompson S.Y., Erdody P., Maxwell W.B. (1973): Simultaneus fluorometric determinations of vitamins A and E in human serum and plasma. Biochemical Medicine, 8, 403-414.
Go to original source...
- Vrzgula L. et al. (1990): Poruchy latkoveho metabolizmu hospodarskych zvierat a ich prevencia. 2nd ed. Priroda, Bratislava. 503 pp.
- Wehrman M.E., Welsh T.H., Williams G.L. (1991): Dietinduced hyperlipidemia in catle modifies the intrafollicular cholesterol enviroment, modulates ovarian follicular dynamics, and hastens the onset of postpartum luteal activity. Biology of Reproduction, 45, 514-522.
Go to original source...
Go to PubMed...
- Weiss W.P., Wyatt D.J. (2003): Effect of dietary fat and vitamin E on α-tocopherol in milk from dairy cows. Journal of Dairy Science, 86, 3582-6891.
Go to original source...
Go to PubMed...
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