[en] Summary: This study investigated whether offspring from n-3-supplemented breeders have an enhanced performance and immune organ weight when fed a post-hatch n-3-enriched diet in comparison with their control-fed counterparts and the importance of timing of omega-3 supplementation. Therefore, 480 Ross-308 broiler breeder hens were fed one of four different diets (120/treatment). The control diet (CON) was a basal diet, rich in n-6 fatty acids (FA). The three other diets were enriched in n-3 FA, formulated to obtain a different EPA/DHA ratio of 1/1 (EPA = DHA), 1/2 (DHA) or 2/1 (EPA). At 33 weeks of age, eggs were incubated to obtain 1440 offspring. They were set up according to their maternal diet and sex in 48 pens of 30 chicks each (12 pens per maternal treatment: six male and six female). Half of the offspring were given a post-hatch control diet, whereas to other half received an n-3-supplemented diet. Zootechnical performance was followed for starter, grower and finisher phase, and at the end of each phase two, chicks per pen were sacrificed to determine the weight of the immune organs. No interaction was found between maternal and post-hatch n-3 treatment for zootechnical performance. An interaction arose between the maternal and post-hatch n-3 supplementation for proportional bursa weight at day 1 and day 14 and proportional liver weight at day 14, but effects on immune organ weight were rather limited. Offspring post-hatch n-3 supplementation did not enhance maternal n-3 supplementation. � 2015 Blackwell Verlag GmbH.
Disciplines :
Animal production & animal husbandry
Author, co-author :
Koppenol, A.; Department of Biosystems Laboratory of Livestock Physiology KU Leuven Leuven Belgium, Institute for Agricultural and Fisheries Research (ILVO) Animal Sciences Unit Melle Belgium
Delezie, E.; Institute for Agricultural and Fisheries Research (ILVO) Animal Sciences Unit Melle Belgium
Buyse, J.; Department of Biosystems Laboratory of Livestock Physiology KU Leuven Leuven Belgium
Everaert, Nadia ; Université de Liège > Agronomie, Bio-ingénierie et Chimie (AgroBioChem) > Zootechnie
Language :
English
Title :
The interaction between maternal and post-hatch n-3 fatty acid supplementation in broiler diets
Al-Khalifa, H.; Givens, D. I.; Rymer, C.; Yaqoob, P., 2012: Effect of n-3 fatty acids on immune function in broiler chickens. Poultry Science 91, 74-88.
Berghof, T. V. L.; Parmentier, H. K.; Lammers, A., 2013: Transgenerational epigenetic effects on innate immunity in broilers: an underestimated field to be explored. Poultry Science 92, 2904-2913.
Cherian, G., 2011: Essential fatty acids and early life programming in meat-type birds. World's Poultry Science Journal 67, 599-614.
Ellis, N. K.; Young, M. R.; Nikcevich, D. A.; Newby, M.; Plioplys, R.; Wepsic, H. T., 1986: Stimulation of prostaglandin-dependent macrophage suppressor cells by the subcutaneous injection of polyunsaturated fatty acids. Cellular Immunology 102, 251-260.
Ferket, P. R., 2012: Embryo epigenomic response to breeder management and nutrition. World's Poultry Congress (Abstr.)
Grasman, K. A., 2002: Assessing immunological function in toxicological studies of avian wildlife. Integrative and Comparative Biology 42, 34-42.
Hasselquist, D.; Nilsson, J. A., 2009: Maternal transfer of antibodies in vertebrates: trans-generational effects on offspring immunity. Philosophical Transactions of the Royal Society B 364, 51-60.
Hulet, R.; Gladys, G.; Hill, D.; Meijerhof, R.; El-Shiekh, T., 2007: Influence of eggshell embryonic incubation temperature and broiler breeder flock age on posthatch growth performance and carcass characteristics. Poultry Science 86, 408-412.
Innis, S. M., 1991: Essential fatty acids in growth and development. Progress in Lipid Research 30, 39-103.
Iseri, V. J.; Klasing, K. C., 2013: Dynamics of the systemic components of the chicken (Gallus gallus domesticus) immune system following activation by Escherichia coli; implications for the costs of immunity. Developmental and Comparative Immunology 40, 248-257.
Kelley, D. S.; Daudu, P. A., 1993: Fat intake and immune response. Progress in Food and Nutrition Science 17, 41-63.
Koppenol, A.; Delezie, E.; Aerts, J.; Willems, E.; Wang, Y.; Franssens, L.; Everaert, N.; Buyse, J., 2014: Effect of the ratio of dietary omega-3 fatty acids EPA and DHA on broiler breeder performance, egg quality and yolk fatty acid composition at different breeder ages. Poultry Science 93, 564-573.
Koppenol, A.; Delezie, E.; Wang, Y.; Franssens, L.; Willems, E.; Ampe, B.; Buyse, J.; Everaert, N., in press: Effects of maternal dietary EPA and DHA supplementation and Breeder age on performance of offspring. Journal of Animal Physiology and Animal Nutrition (In press).
Lemke, H.; Coutinho, A.; Lange, H., 2004: Lamarckian inheritance by somatically acquired maternal IgG phenotypes. Trends in Immunology 25, 180-186.
March, B. E.; MacMillan, C., 1990: Linoleic acid as a mediator of egg size. Poultry Science 69, 634-639.
Marshall, D. J.; Uller, T., 2007: When is a maternal effect adaptive? Oikos 116, 1957-1963.
Moller, A. P.; Erritzoe, J., 2000: Predation against birds with low immunocompetence. Oecologia 122, 500-504.
Simopoulos, A. P.; Kifer, R.; Martin, R. E., 1986: Health Effects of Polyunsaturated Fatty Acids in Seafoods. Academic Press, Orlando.
Smith, K. G.; Hunt, J. L., 2004: On the use of spleen mass as a measure of avian immune system. Oecologia 138, 28-31.
Turchen, B.; Jamieson, J. C.; Huebner, E.; Van Caeseele, L., 1977: The acute phase response to injury and its relationship to changes in endoplasmic reticulum of rat liver. Canadian Journal of Zoology 55, 1567-1571.
Wang, Y. W.; Field, C. J.; Sim, J. S., 2000: Dietary polyunsaturated fatty acids alter lymphocyte subset proportion and proliferation, serum immunoglobulin G concentration, and immune tissue development in chicks. Poultry Science 79, 1741-1748.
Wang, Y. W.; Ajuyah, A. O.; Sunwoo, H. H.; Cherian, G.; Sim, J. S., 2002: Maternal dietary n-3 fatty acids alter the spleen fatty acid composition and bovine serum albumin-induced wing web swelling in broilers. Poultry Science 81, 1722-1727.
Wilson, H. R., 1991: Interrelationship of egg size, chick size, posthatching growth, and hatchability. World's Poultry Science Journal 47, 5-20.
Zhou, L.; Nilsson, A., 2001: Sources of eicosanoid precursor fatty acid pools in tissues. Journal of Lipid Research 42, 1521-1542.