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A century of progress in waterfowl production, and a history of the WPSA Waterfowl Working Group

Published online by Cambridge University Press:  31 July 2012

J.F. HUANG*
Affiliation:
Ilan Branch, Livestock Research Institute, Council of Agriculture, Executive Yuan, Taiwan
H. PINGEL
Affiliation:
Institute of Animal Science, University of Halle (Saale), Halle (Saale), Germany
G. GUY
Affiliation:
INRA, UE89 Palmipèdes à Foie Gras, Domaine d'Artiguères, F-40280 Benquet, France and UMR1289 Tissus Animaux Nutrition Digestion Ecosystème et Métabolisme, F-31326 Castanet-Tolosan, France
E. ŁUKASZEWICZ
Affiliation:
Wrocław University of Environmental and Life Sciences, Institute of Animal Breeding, Division of Poultry Breeding, Wrocław, Poland
E. BAÉZA
Affiliation:
INRA, UR83 Recherches Avicoles, F-37380 Nouzilly, France
S.D. WANG
Affiliation:
Changhua Animal Propagation Station, Livestock Research Institute, Council of Agriculture, Executive Yuan, Taiwan
*
Corresponding author: [email protected]
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Abstract

Waterfowl production has been on an upward trend and has become increasingly important around the world over time. The production of ducks worldwide in 2010 was 6-fold greater that of 1961, and that of geese was 9.8-fold over the same period. The progress in waterfowl production represents not only an increase in the quantity of the product, but also in quality. Waterfowl performance progress, genetics and breeding, reproduction, nutrition, management and housing, and product quality and utilisation are discussed in this article, alongside a review of the history of the Waterfowl Working Group (WWG) which was established in 1969 as Working Group 8 under the European Federation (EF). After moving to the Asian Pacific Federation (APF) in 2011, it became Working Group 2.

Type
Centenary Papers
Copyright
Copyright © World's Poultry Science Association 2012

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References

ADEOLA, A. (2005) Progress in duck nutrition. Proceedings of the 3rd World Waterfowl Conference, Guangzhou, China, pp. 5-26.Google Scholar
BAÉZA, E., DE CARVILLE, H., SALICHON, M.R., MARCHÉ, G. and LECLERCQ, B. (1997) Effects of selection, over three and four generations, on meat yield and fatness in Muscovy ducks. British Poultry Science 38: 359-365.CrossRefGoogle ScholarPubMed
BAÉZA, E., DESSAY, C., WACRENIER, N., MARCHÉ, G. and LISTRAT A., (2002) Effect of selection for improved body weight and composition on muscle and meat characteristics in Muscovy duck. British Poultry Science 43: 560-568.CrossRefGoogle ScholarPubMed
BLESBOIS, E. (2007) Current status in avian semen cryopreservation. World's Poultry Science Journal 63: 213-222.CrossRefGoogle Scholar
BOGENFÜRST, F. (2005) Effect of nutrition on the reproductive parameters of geese. Proceedings of the 15th European Symposium on poultry nutrition, Balatonfüred, pp. 64-73.Google Scholar
BIELINSKI, K., BIELINSKA, K. and KASZYNSKI, J. (1970) Weight and slaughter value of broiler-type geese. Zeszyty Problemowe Postepow Nauk Rolniczych 106: 83-89.Google Scholar
BRAINE, A. (2010) Le marché français et international du canard. Journée nationale des professionnels du canard à rôtir, Angers, France, 18/03/10, Ed. ITAVI (Paris, France), 12p.Google Scholar
CHARTRIN, P., MÉTEAU, K., JUIN, H., BERNADET, M.D., GUY, G., LARZUL, C., RÉMIGNON, H., MOUROT, J., DUCLOS, M.J. and BAÉZA, E. (2006) Effects of intramuscular fat levels on sensory characteristics of duck breast meat. Poultry Science 85: 914-922.CrossRefGoogle ScholarPubMed
CHEN, M.J. (1999) Utilization of waterfowl products. Proceedings of the 1st World Waterfowl Conference, Taichung, Taiwan. pp. 32-37.Google Scholar
CHENG, Y.S., HUANG, H.C. and ROUVIER, R. (1999) Selection experiment for the maximum duration of fertility in brown Tsaiya bred for mule duck. Proceedings of the 1st World Waterfowl Conference, Taichung, Taiwan, pp. 115-121.Google Scholar
CHERRY, P. and MORRIS, T. (2008a) History and biology of the domestic duck, in: CHERRY, P. & MORRIS, T. (Eds) Domestic Duck Production Science and Practice. pp. 1-14 (Oxfordshire, CAB International).Google Scholar
CHERRY, P. and MORRIS, T. (2008b) Rearing of parent stock, in: CHERRY, P. & MORRIS, T. (Eds) Domestic Duck Production Science and Practice. pp. 133-191 (Oxfordshire, CAB International).Google Scholar
CIFOG, (2011) Rapport économique de l'année 2010. Assemblée générale du CIFOG, Dax, France, 24/06/10, 75p.Google Scholar
COUNCIL OF AGRICULTURE, (2011) Livestock Production, in: 2010 Agricultural Statistics Yearbook. pp. 117-129 (Taipei, Taiwan, Council of Agriculture).Google Scholar
CRAWFORD, R.D. (1990) Origin and history of poultry species, in: CRAWFORD, R.D. (Ed) Poultry Breeding and Genetics, pp. 1-41 (Elsevier Amsterdam, Science Publishers B.V.).Google Scholar
ELMINOWSKA-WENDA, G. (1988) Reproduction results of white Italian geese kept in 8-hours light. Proceedings of the International Symposium On Waterfowl Production, The Satellite Conference for the XVIII W.P.C., Beijing, China, pp. 279-280.Google Scholar
FAOSTAT, (2012) http://faostat.fao.org/site/569/DesktopDefault.aspx?PageID=569# ancor (accessed on 9 April, 2012)Google Scholar
GAUDRY, D. (1987) Working Group No. 8-waterfowl. World's Poultry Science Journal 43: 70.Google Scholar
GRUNDER, A.A., CAVE, N.A.G., PAWLUCZUK, B., BUTLER, G. and POSTE, L.M. (1991) Influence of breed, finisher diet, age and sex on live weight and carcass traits of broiler geese. Archiv für Geflügelkunde 55: 148-152.Google Scholar
GUÉMENÉ, D., SHI, Z.D. and GUY, G. (2012) Production system for waterfowl, in: SANDILANDS, V. & HOCKING, P.M. (Eds) Alternative Systems for Poultry Health, Welfare and Productivity, pp. 128-154 (Oxfordshire, UK, CAB International).CrossRefGoogle Scholar
GUERDER, F., CHINZI, D. and KOEHL, P.F. (2000) Bilan de 12 ans de gestion technico-économique des élevages de palmipèdes à foie gras dans le sud-ouest : principaux résultats et évolution. 4èmes Journées de la Recherche sur les Palmipèdes à Foie Gras, Arcachon, France, 4-5/10/00, Ed. ITAVI (Paris, France), 195-202.Google Scholar
GUY, G. (2009) How actual research can optimize waterfowl production in accordance with sustainability. Proceedings of the 4th World Waterfowl Conference, Kerala, India, pp. 21-27.Google Scholar
HSU, T.W., CHUANG, H.J., HSIAO, M.C., WEI, L.Y., LIU, H.C. and HUANG, J.F. (2010) effect of diluents on fertility rate of Muscovy duck semen after cold-storage. Journal of Chinese Society of Animal Science 39(suppl.): 222.Google Scholar
HUANG, J.F., HU, Y.H. and HSU, J.C. (2008) Waterfowl production in hot climates, in: DAGHIR, N.J. (Ed) Poultry Production in Hot Climates, pp. 330-375 (Oxfordshire, UK, CBA International).Google Scholar
HUANG, J.F., LEE, S.R., LIN, C.C., LIN, T.Y., LIU, H.C., LIN, J.H., HSIAO, M.C. and WANG, C.T. (2007) Duck production and research in Taiwan. Proceedings of the ‘Improved Duck Production of Small-scale Farmers in ASPAC’, Hanoi, Vietnam, pp. 26-40.Google Scholar
HUANG, J.F. and LIN, C. C. (2011) Production, composition and quality of duck eggs, in: NYS, Y., MAIN, M. & VAN IMMERSEEL F. (Eds) Improving the Safety and Quality of Eggs and Egg Products Volume 1: Egg Chemistry, Production and Consumption, pp. 487-508 (Cambridge, UK, Woodhead Publishing Limited)Google Scholar
HUANG, H.H. (1972) Propagation, in: The Duck Industry of Taiwan. pp. 16-20 (Taipei, Chinese-American Joint Commission on Rural Reconstruction. Animal Industry Series No. 8).Google Scholar
HUTT, F.B. (1952) The Jansen Khaki Campbell ducks. Journal of Heredity 43: 277-281.CrossRefGoogle Scholar
JALALUDEEN, A., CHURCHILL, A., JOSEPH, L. and ANITHA, P. (2009) Duck meat, egg, and their products. Souvenir of the IV World Waterfowl Conference, pp. 57-64 (Thrissur, India, Kerala Agricultural University and World's Poultry Science Association (India Branch).Google Scholar
JALALUDEEN, A., PEETHAMBARAN, P.A., LEO, J. and MANOMOHAN, C.B. (2004) Duck production in Kerala (Ebenezer Thrissur, Kerala Agriculture University). 44p.Google Scholar
KOZÁK, J., GARA, I. and KAWADA, T. (2010) Production and welfare aspects of goose down and feather harvesting. World's Poultry Science Journal 66: 767-778.CrossRefGoogle Scholar
KOZÁK, J. (2012) Foie gras production: pros and cons in the light of animal protection. Animal Welfare, Ethology and Housing Systems 7: 200-209.Google Scholar
LECLERCQ, B., BLUM, J.C., SAUVEUR, B. and STEVENS, P. (1987) Nutrition of ducks, in: Feeding of Non-ruminant Livestock, pp. 102-109 (London, Butterworths)(translation of INRA (1984) L'Alimentation des animaux monogastriques by Julian Wiseman).CrossRefGoogle Scholar
LECLERCQ, B. and DE CARVILLE, H. (1985) Dietary energy, protein and phosphorus requirements of Muscovy ducks, in: FARRELL, D.J. & STAPLETON, P. (Eds) Duck Production Science and World Practice, pp. 58-69 (Amidale, Australia, University of New England).Google Scholar
LECLERCQ, B., DE CARVILLE, H. and GUY, G. (1990) Calcium requirement of male Muscovy ducklings. British Poultry Science 31: 331-337.CrossRefGoogle Scholar
LEE, H.W. (2003) Duck Meat Products: 696 Recipes (Beijing, China, Scientific and Technical Documents Publishing House). 411p.Google Scholar
LEESON, S. and SUMMERS, J.D. (1997) Feeding programs for waterfowl, in: Commercial Poultry Nutrition. Second edition, pp. 332-340 (Ontario, University Books).Google Scholar
LITT, J. (2010) Résultats technico-économiques 2009 des éleveurs et gaveurs de canards gras (Programme RENAPALM). 9èmes Journées de la Recherche sur les Palmipèdes à Foie Gras, Bordeaux, France, 7-8/10/10, Ed. ITAVI (Paris, France), 159-164.Google Scholar
ŁUKASZEWICZ, E. (2010) Artificial insemination in geese. World's Poultry Science Journal 66: 647-657.CrossRefGoogle Scholar
ŁUKASZEWICZ, E., ADAMSKI, M. and KOWALCZYK, A. (2008) Correlations between body measurements and tissue composition of oat-fattened White Koluda geese at 17 weeks of age. British Poultry Science 49: 21-27.CrossRefGoogle ScholarPubMed
NING, C.S. and QU, W.S. (1988) The selection and breeding of Huoyan goose. Proceedings of the International Symposium on Waterfowl Production, Beijing, China, pp. 61-65.Google Scholar
NRC (NATIONAL RESEARCH COUNCIL), (1971) Nutrient Requirements of Poultry, 6th revised edition (Washington, D. C., National academy of Science). 54p.Google Scholar
NRC (NATIONAL RESEARCH COUNCIL), (1977) Nutrient Requirements of Poultry, 7th revised edition (Washington, D. C., National academy of Science). 62p.Google Scholar
NRC (NATIONAL RESEARCH COUNCIL), (1984) Nutrient Requirements of Poultry, 8th revised edition (Washington, D. C., National academy of Science). 71p.Google Scholar
NRC (NATIONAL RESEARCH COUNCIL), (1994a) Nutrient requirements of ducks, in: Nutrient Requirements of Poultry, 9th revised edition, pp. 42-43 (Washington, National Academic Press).Google Scholar
NRC (NATIONAL RESEARCH COUNCIL), (1994b) Nutrient requirements of Geese, in: Nutrient Requirements of Poultry, 9th revised edition, pp. 40-41 (Washington, National Academic Press).Google Scholar
PINGEL, H. (1990a) Genetics of growth and meat production in waterfowl, in: CRAWFORD, R.D. (Ed) Poultry Breeding and Genetics, pp. 691-704 (Elsevier Amsterdam, Science Publishers B.V.).Google Scholar
PINGEL, H. (1990b) Genetics of egg production and reproduction in waterfowl, in: CRAWFORD, R.D. (Ed) Poultry Breeding and Genetics, pp. 771-780 (Elsevier Amsterdam, Science Publishers B.V.).Google Scholar
PINGEL, H. (2001) Selection for breast meat percentage and feed conversion ratio in ducks. Proceedings of the International Workshop on Waterfowl, Wermsdorf , Germany, pp. 41-48.Google Scholar
PINGEL, H. (2008) Enten und Gänse. Eugen Ulmer K., Stuttgart, Germany. 182p.Google Scholar
PINGEL, H. and HEIMPOLD, M. (1983) Efficiency of selection for growth and percentage of breast muscle in Pekin ducks. Archiv für Tierzucht 26: 435-444. (in German).Google Scholar
POWELL, J.C. (1985) The possibilities for genetic improvement of commercial production characteristics and carcass quality in the meat duck, in: FARRELL, D.J. & STAPLETON, P. (Eds) Duck Production Science and World Practice, pp. 184-192 (Amidale, Australia, University of New England).Google Scholar
RODENBURG, T.B., BRACKE, M.B.M., BERCK, J., COOPER, J., FAURE, J.M., GUÉMENÉ, D., GUY, G., HARLANDER, A., JONES, T., KNIERIM, U., KUHNT, K., PINGEL, H., REITER, K., SERVIÈRE, J. and RUIS, M.A.W. (2005) Welfare of ducks in European duck husbandry systems. World's Poultry Science Journal 61: 633-646.CrossRefGoogle Scholar
ROUVIER, R. (1999) Genetics and physiology of waterfowl. Proceedings of the 1st World Waterfowl Conference, Taichung, Taiwan, pp. 1-18.Google Scholar
SAUVEUR, B. and DE CARVILLE, H. (1985) Recent studies on the management of Muscovy breeding ducks in France, in: FARRELL, D.J. & STAPLETON, P. (Eds) Duck Production Science and World Practice, pp. 293-305 (Amidale, Australia, University of New England).Google Scholar
SHEN, T.F. (1988) Manual of Nutrient Requirements for Ducks (Taipei, Department of Animal Husbandry, National Taiwan University).Google Scholar
STASKO, J. (1978) Development of waterfowl production and W.P.S.A. Proceedings of the Seminar on Genetics and Keeping of Geese, Bratislava, Slovakia, pp. 7-20.Google Scholar
TAI, L.J.J. and TAI, C. (1991) Artificial insemination of ducks, in: Mule Duck Production in Taiwan, pp. 1-6 (Taipei, Taiwan, Food & Fertilizer Technology Center. Extension Bulletin No. 328).Google Scholar
TAI, C., CHENG, Y.S., LEE, S.R. and WANG, C.T. (1997) The status of duck researches in the Republic of China on Taiwan. Proceedings of the 11th European Symposium on Waterfowl, Nantes, France, pp. 43-57.Google Scholar
VARADI, L. (1995) Ecological aspects in integrated duck and fish production. Proceedings of the 10th European Symposium on Waterfowl, Halle, pp. 8-19.Google Scholar
WEI, L.Y., CHUANG, H.J., LIU, S.C., LEE, S.R. and HUANG, J.F. (2011) The influence of artificial long photo-periods for Muscovy duck sperm characteristics during off-breeding season in Taiwan. Proceedings of the 9th Asia Pacific Poultry Conference, Taipei, Taiwan, p. 375.Google Scholar