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Vitamin requirements: is there basis for re-evaluating dietary specifications?

Published online by Cambridge University Press:  25 June 2007

S. LEESON
Affiliation:
Department of Animal & Poultry Science, University of Guelph, Guelph, Ontario, CanadaN1G 2W1 E-mail: sleeson@uoguelph.ca
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Abstract

There has been little work conducted over the last 40 years on estimating vitamin requirements of poultry, and so consequently NRC (1994) values are still often quoted as standards. A review of this information indicates many values are estimates, or extrapolated from comparable species, or as with broiler breeders, simply not given. The current concern related to formulating vitamin levels in poultry diets is the assumption that change in genetic potential of layers and meat birds necessitates re-evaluation, and that parameters for assessing needs are now more complex than simple production metrics as used previously. Unfortunately information on maintenance needs for vitamins is lacking, and while there is now information available on vitamin content of eggs, comprehensive details of the vitamin level in poultry meat products is surprising lacking. With unprecedented egg output of modern layer strains, and ever improving feed efficiency in meat birds, vitamin intake per unit of output is continually declining. For layers the estimate is around a 1% yearly decline in vitamin intake per egg produced, while for meat birds there has been a 0.6-0.8% yearly decline per kg body gain. This reduced intake of vitamins is the basis for improved performance in layers and meat birds fed a higher than normal level of vitamins. However, an even more important basis for reevaluating vitamin needs is change in measurement criteria. Many vitamins and especially the fat soluble vitamins accumulate in eggs and meat in proportion to diet inclusion. Development of vitamin enriched designer poultry products therefore dictates elevated feeding levels of vitamins. Co-incidentally, increased levels of vitamin E in poultry products has led to the realization that increased antioxidant capacity of these tissues enhances shelf life and appearance. Of greatest impact in reevaluating diet vitamin specifications has been the effect of these nutrients on bird health and in particular immune response. For example dietary levels of vitamin E far in excess of NRC (1994) requirements have been shown to positively impact immune response in all ages of bird and also the performance of heat-stressed birds. Expectations of ever increasing performance dictate the need for continual reevaluation in determining vitamin levels within diet formulations as detailed in recent publications on optimum vitamin nutrition of poultry to improve health, welfare, performance and the quality of poultry products.

Type
Review Article
Copyright
Copyright © World's Poultry Science Association 2007

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References

ALLEN, P. C. and FETTERER, R. H. (2002) Interaction of dietary vitamin E with Eimeria maxima infections in chickens. Poultry Science 81: 4148.CrossRefGoogle ScholarPubMed
ASLAM, S. M., GARLICH, J. D. and QURESHI, M. A. (1998) Vitamin D deficiency alters the immune responses of broiler chicks. Poultry Science 77: 842849.CrossRefGoogle ScholarPubMed
ATENCIO, A., EDWARDS, H. M. Jr. and PESTI, G. (2005) Effects of vitamin D3 dietary supplementation of broiler breeder hens on the performance and bone abnormalities of the progeny. Poultry Science 84: 10581068.CrossRefGoogle ScholarPubMed
BARTOV, I. and FRIGG, M. (1992) Effect of high concentrations of dietary vitamin E during various age periods on performance, plasma vitamin E and meat stability of broiler chicks at 7 weeks of age. British Poultry Science 33: 393402.CrossRefGoogle ScholarPubMed
BOA-AMPONSEM, K., PRICE, S. E., PICARD, M., GERAERT, P. A. and SIEGEL, P. B. (2000) Vitamin E and immune responses of broiler pureline chickens. Poultry Science 79: 466470.CrossRefGoogle ScholarPubMed
BOLLENGIER-LEE, S., MITCHELL, M. A., UTOMO, D. B., WILLIAMS, P. E. and WHITEHEAD, C. C. (1998) Influence of high dietary vitamin E supplementation on egg production and plasma characteristics in hens subjected to heat stress. British Poultry Science 39: 106112.CrossRefGoogle ScholarPubMed
CASTAING, J, LARROUDÉ, P, PEYHORGUE, A, HAMELIN, C, MAAROUFI, C. (2003) The impact of two levels of vitamin supplements on the performances of broilers. Proceedings of the 5th Poultry Farming Research Conference Tours, France. 26-27 Mar.Google Scholar
COMBS, G. F. Jr. (1992) Contribution of animal products to the vitamin intake of Americans. Proceedings of the Cornell Nutrition Conference. Rochester, New York, U.S.A. 13-15 Oct.Google Scholar
COSKUN, B., INAL, F., CELIK, I., ERGANIS, O., TIFTIK, A. M., KURTOGLU, F., KUYUCUOGLU, Y. and OK, U. (1998) Effects of dietary levels of vitamin A on the egg yield and immune responses of laying hens. Poultry Science 77: 542546.CrossRefGoogle ScholarPubMed
DEYHIM, F., STOECKER, B. J. and TEETER, R. G. (1996) Vitamin and trace mineral withdrawal effects on broiler breast tissue riboflavin and thiamin content. Poultry Science 75: 201202.CrossRefGoogle ScholarPubMed
DSM (2006) Poultry Fortification Guidelines. DSM Nutrition Products Inc., Parsippany, NJ, USA.Google Scholar
ERF, G. F., BOTTJE, W. G., BERSI, T. K., HEADRICK, M. D. and FRITTS, C. A. (1998) Effects of dietary vitamin E on the immune system in broilers: altered proportions of CD4 T cells in the thymus and spleen. Poultry Science 77: 529537.CrossRefGoogle ScholarPubMed
FRANCHINI, A., SIRRI, F., TALLARICO, N., MINELLI, G., IAFFALDANO, N. and MELUZZI, A. (2002) Oxidative stability and sensory and functional properties of eggs from laying hens fed supranutritional doses of vitamins E and C. Poultry Science 81: 17441750.CrossRefGoogle ScholarPubMed
FRITTS, C. A., ERF, G. F., BERSI, T. K. and WALDROUP, P. W. (2004) Effect of source and level of vitamin D on immune function in growing broilers. Journal of Applied Poultry Research 13: 263273.CrossRefGoogle Scholar
FRITTS, C. A. and WALDROUP, P. W. (2003) Effect of source and level of vitamin D on live performance and bone development in growing broilers. Journal of Applied Poultry Research 12: 4552.CrossRefGoogle Scholar
GORE, A. B. and QURESHI, M. A. (1997) Enhancement of humoral and cellular immunity by vitamin E after embryonic exposure. Poultry Science 76: 984991.CrossRefGoogle ScholarPubMed
HERNANDEZ, J. M., PÉREZ-VENDRELL, A. M. and BRUFAU, J. (2002) Effect of vitamin level in broiler diets on productive parameters and meat deposition. Proceedings of the 11th European Poultry Conference. Bremen, Germany. 6-10 Sept.Google Scholar
LEESON, S. (2006) Defining and predicting changes in nutrient requirements. XII European Poultry Conference Verona, Italy. 10-14 Sept.Google Scholar
LEESON, S. and CASTON, L. J. (2003) Vitamin enrichment of eggs. Journal of Applied Poultry Research 12: 2426.CrossRefGoogle Scholar
LEESON, S. and SUMMERS, J. D. (2001) Nutrition of the Chicken. University Books, Guelph, Ontario, Canada.Google Scholar
LEESON, S. and SUMMERS, J. D. (2005) Commercial Poultry Nutrition. University Books, Guelph, Ontario, Canada.Google Scholar
LESHCHINSKY, T. V. and KLASING, K. C. (2001) Relationship between the level of dietary vitamin E and the immune response of broiler chickens. Poultry Science 80: 15901599.CrossRefGoogle ScholarPubMed
MATTILA, P., VALAJA, J., ROSSOW, L., VENALAINEN, E. and TUPASELA, T. (2004) Effect of vitamin D2- and D3-enriched diets on egg vitamin D content, production, and bird condition during an entire production period. Poultry Science 83: 433440.CrossRefGoogle ScholarPubMed
MCILROY, S. G., GOODALL, E. A., RICE, D. A., MCNULTY, M. S. and KENNEDY, D. G. (1993) Improved performance in commercial broiler flocks with subclinical Infectious Bursal Disease when fed diets containing increased concentrations of vitamin E. Avian Pathology 22: 8194 (not cited)CrossRefGoogle ScholarPubMed
MORI, A. V., MENDAICA, L. X., ALMEIDA, C. R. M. and PITA, M. C. G. (2003) Supplementing hen diets with vitamins A and E affects egg yolk retinol and α-tocopherol levels. Journal of Applied Poultry Research 12: 106114.CrossRefGoogle Scholar
NABER, E. C. (1993) Modifying vitamin composition of eggs: A review. Journal of Applied Poultry Research 2: 385393.CrossRefGoogle Scholar
National Research Council (1994) Nutrient Requirements of Poultry, 9th Ed. NAS-NRC, Washington D.C.Google Scholar
PAL, L., DUBLECZ, K., HUSVETH, F., WAGNER, L., BARTOS, A. and KOVACS, G. (2002) Effect of dietary fats and vitamin E on fatty acid composition, vitamin A and E content and oxidative stability of egg yolk. Archiv für Geflügelkunde 66: 251257.Google Scholar
PATEL, K. P., EDWARDS, H. M. and BAKER, D. H. (1997) Removal of vitamin and trace mineral supplements from broiler finisher diets. Journal of Applied Poultry Research 6: 191198.CrossRefGoogle Scholar
PÉREZ-VENDRELL, A. M., HERNANDEZ, J. M., LLAURADO, L. L. and BRUFAU, J. (2003) Improving the nutritive value of eggs by feeding laying hens an optimum vitamin nutrition (OVNTM). XVIth European Symposium on Quality of Poultry Meat, 23-26 September.Google Scholar
PHILLIPE, L., CASTAING, J., CALHERINE, H. and BALL, A. (2005) Effect and supplémentassions on Hy-D pour deux niveaux d'apports en vitamines sur les performances, le développement oiseux et les troubles locomotives des dindons. 6th J de la Res Avi. St Malo, France. 30-31 Mar.Google Scholar
PUTHPONGSIRIPORN, U., SCHEIDELER, S. E., SELL, J. L. and BECK, M. M. (2001) Effects of vitamin E and C supplementation on performance, in vitro lymphocyte proliferation, and antioxidant status of laying hens during heat stress. Poultry Science 80: 11901200.CrossRefGoogle Scholar
REINHARDT, T. A., STABEL, J. R. and GOFF, J. P. (1999) 1,25-dihydroxyvitamin D3 enhances milk antibody titers to Escherichia coli J5 vaccine. Dairy Science 82: 19041909.CrossRefGoogle ScholarPubMed
SELL, J. L., SOTO-SALANOVA, M. F., PALO, P. and JEFFREY, M. (1997) Influence of supplementing corn-soybean meal diets with vitamin E on performance and selected physiological traits of male turkeys. Poultry Science 76: 14051417.CrossRefGoogle ScholarPubMed
SHEEHY, P. J., MORRISSEY, P. A. and FLYNN, A. (1991) Influence of dietary α-tocopherol on tocopherol concentrations in chick tissues. British Poultry Science 32: 391397.CrossRefGoogle ScholarPubMed
SHEEHY, P. J. A., MORRISSEY, P. A. and BUCKLEY, D. J. (1994) Advances in research and application of vitamin E and antioxidant for poultry meat. p 425–436. XII European Symposium on the Quality of Poultry Meat, Zaragoza, Spain.Google Scholar
SIJBEN, J. W., SCHRAMA, J. W., NIEUWLAND, M. G., HOVENIER, R., BEYNEN, A. C., VERSTEGEN, M. W. and PARMENTIER, H. K. (2002) Interactions of dietary polyunsaturated fatty acids and vitamin E with regard to vitamin E status, fat composition and antibody responsiveness in layer hens. British Poultry Science 43: 297305.CrossRefGoogle ScholarPubMed
SOTO-SALANOVA, M. F. and SELL, J. L. (1996) Efficacy of dietary and injected vitamin E for poults. Poultry Science 75: 13931403.CrossRefGoogle ScholarPubMed
SQUIRES, M. W. and NABER, E. C. (1992) Vitamin profiles of eggs as indicators of nutritional status in the laying hen: vitamin B12 study. Poultry Science 71: 20752082.CrossRefGoogle ScholarPubMed
SQUIRES, M. W. and NABER, E. C. (1993) Vitamin profiles of eggs as indicators of nutritional status in the laying hen: vitamin A study. Poultry Science 72: 154164.CrossRefGoogle ScholarPubMed
SURAI, P. F., KUKLENKO, T. V., IONOV, I. A., NOBLE, R. C. and SPARKS, N. H. (2000) Effect of vitamin Aon the antioxidant system of the chick during early postnatal development. British Poultry Science. 41: 454458.CrossRefGoogle Scholar
VAN ETTEN, E., DECALLONNE, B. and MATHIEU, C. (2002) 1,25-dihydroxycholecalciferol: endocrinology meets the immune system. Proceedings of the Nutrition Society 61: 375380.CrossRefGoogle ScholarPubMed
WARD, N. E. (1993) Vitamin supplementation rates for U.S. commercial broilers, turkeys and layers. Journal of Applied Poultry Research 2: 286296.CrossRefGoogle Scholar
WHITEHEAD, C. C., BOLLENGIER-LEE, S., MITCHELL, M. A. and WILLIAMS, P. E. (1998) Vitamin E can alleviate the depressed egg production of heat-stressed laying hens. British Poultry Science 39: S4446.CrossRefGoogle ScholarPubMed
WHITEHEAD, C. C., MCCORMACK, H. A., MCTEIR, L. and FLEMING, R. H. (2004) The maximum legal limit for vitamin D3 in broiler diets may need to be increased. British Poultry Science 45(S1): S2426.CrossRefGoogle ScholarPubMed
WHITEHEAD, C. C. (2001) Update on vitamin and trace mineral requirements for poultry. Proceedings of the Animal Feed Manufacturing Association. Sun City, South Africa. 21-23 Feb.Google Scholar