Czech J. Anim. Sci., 2007, 52(12):463-468 | DOI: 10.17221/2331-CJAS
Feed input and excreta collection time in metabolisable energy assays for ducks
- 1 State Key Laboratory of Animal Nutrition, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing, China
- 2 College of Life Science, Xuzhou Normal University, Xuzhou, China
- 3 College of Animal Science and Technology, Northwest A and F University, Yangling, China
Three experiments were conducted to determine the optimal feed input and excreta collection time by a bioassay of dietary true metabolisable energy (TME) for ducks. In experiment 1 and experiment 2, the time for the unabsorbed feed passage through the alimentary canal was determined by measuring the DM and energy of excreta and feed residues in the alimentary canal at different periods. In experiment 3, the feed input of force-feeding was studied and a total of 70 mature Pekin drakes were allotted to 7 groups, each group containing 10 birds. After fasting for 36 h, one group served as a negative control to measure metabolic faecal energy plus endogenous urinary energy and the drakes of the other 6 groups were force-fed pelleted feed 30 g, 50 g, 70 g, 90 g, 110 g, and 150 g per bird, respectively. Energy excretion of the periods of 16-28 h after force-feeding was significantly higher than that of the periods after 32 h, and the total energy excretion of the periods after 32 h (P < 0.05). When the feed input increased from 30 g to 70 g, the value of TME was constant (P > 0.05). Metabolisable energy decreased significantly with an increase in feed input when the feed input was higher than 70 g (P < 0.05). It was concluded that the optimal time of feed withdrawal before tube-feeding and during excreta collection would be 32-36 h. The optimal feed input was 50 g to 70 g per drake.
Keywords: metabolisable energy; bioassay method; force-feeding
Published: December 31, 2007 Show citation
References
- Adeola O., Ragland D., King D. (1997): Feeding and excreta collection techniques in metabolisable energy assays for ducks. Poult. Sci., 76, 728-732.
Go to original source...
Go to PubMed...
- AOAC (1984): Official methods of analysis 14th ed. Association of Official Analytical Chemists, Inc., Arlington, VA, USA.
- Elkin R.G. (1987): A review of duck nutrition research. Worlds Poult. Sci. J., 43, 84-254.
Go to original source...
- Guillaume J., Summers J.D. (1970): Maintenance energy requirement of rooster and influence of plane of nutrition on metabolisable energy. Can. J. Anim. Sci., 50, 363-369.
Go to original source...
- Han Y.W., Wu C.K. (1984): Metabolisable energy studies for poultry feeds: VI. empting of alimentary canal and amount of endogenous excreta by chickens and waterfowls. J. Northeast Agric. College, 4, 9-13.
- Hong D., Ragland D., Adeola O. (2002): Additivity and associative effects of metabolisable energy and amino acid digestibility of corn, soybean meal, and wheat red dog for White Pekin ducks. J. Anim. Sci., 80, 3222- 3229.
Go to original source...
Go to PubMed...
- Li J., Li L. (1984): Metabolisable energy studies for poultry feeds: V. comparison of metabolisable energy of diet and wheat bran for chickens and waterfowls. J. Northeast Agric. College, 3, 91-95.
- Mohamed K., Leclercq B., Anwar A., El-Alaily H., Soliman H. (1984): A comparative study of metabolisable energy in ducklings and domestic chicks. Food Sci. Technol., 11, 199-209.
Go to original source...
- Muztar A.J., Slinger S.J., Bueton J.H. (1977): Metabolisable energy content of fresh water plants in chicken and ducks. Poult. Sci., 56, 1893-1899.
Go to original source...
- Ostrowski-Meissner H.T. (1983): A method of simultaneous measurement of apparent (AME) and true (TME) metabolisable energy with ducks and comparisons of data obtained with drakes and cockerels. Nutr. Rep. Int., 29, 1239-1248.
- SAS (1996): SAS User's Guide Statistics. SAS Institute Inc., Cary, NC. USA.
- Shi Y.H., Zhang S.R., Yue G.W. (1993): Bioassay for metabolisable energy in ducks: I. the effect of duration of starvation and excreta collection time on the true metabolisable energy. J. Sichuan Agril. University, 11, 377-387.
- Sibbald I.R. (1975): The effect of level of feed intake on metabolisable energy values measured with adult roosters. Poult. Sci., 54, 1990-1997.
Go to original source...
Go to PubMed...
- Sibbald I.R. (1976): A bioassay for true metabolisable energy in feedstuffs. Poult. Sci., 55, 303-308.
Go to original source...
Go to PubMed...
- Sibbald I.R., Morse P.M. (1982): The effects of feed input and excreta collection time on estimates of metabolic plus endogenous energy losses in the bioassay for true metabolisable energy (chickens). Poult. Sci., 62, 68-76.
Go to original source...
- Siregar A.P., Farrell D.J. (1980a): A comparison of the energy and nitrogen metabolism of starved ducklings and chickens. Brit. Poult. Sci., 21, 203-211.
Go to original source...
Go to PubMed...
- Siregar A.P., Farrell D.J. (1980b): A comparison of the energy and nitrogen metabolism of fed ducklings and chickens. Brit. Poult. Sci., 21, 213-227.
Go to original source...
Go to PubMed...
- Yaghobfar A., Boldaji A. (2002): Influence of level of input and procedure on metabolisable energy and endogenous energy loss (EEL) with adult cockerels. Brit. Poult. Sci., 43, 696-704.
Go to original source...
Go to PubMed...
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