Czech J. Anim. Sci., 2010, 55(10):420-427 | DOI: 10.17221/1699-CJAS
Effect of different phosphorus levels on the performance and egg quality of laying hens fed wheat- and maize-based diets
- Department of Nutrition Physiology and Animal Product Quality, Institute of Animal Science, Prague-Uhĝínìves, v.v.i., Czech Republic
The effects of diet type (wheat- or maize-based) and concentration of available phosphorus (AP; about 4, 3 and 2 g/kg) on the parameters of hen performance and egg quality as well as shell calcium (Ca) and phosphorus (P) contents were examined. Two experiments were carried out in which 240 and 120, respectively, older ISA Brown hens were housed in enriched cages. The interaction of diet type and AP concentration was ascertained for all evaluated characteristics except the amount of Ca and P deposited in shells in the first experiment. In the second experiment, the interaction of diet type and AP concentration was found for feed intake, egg weight, shell thickness and weight as well as the albumen quality parameters. Furthermore, Ca deposition in shells increased (P < 0.001) with the wheat diet. Hens fed a maize-based diet (P < 0.001) laid heavier eggs. The highest level of AP (4.1 g/kg) in the wheat-based diet significantly (P < 0.001) decreased albumen height, albumen index and Haugh units (HU). These trends were the same in both experiments. The results indicate that 0.27% AP in wheat-based diet and 0.30% AP in maize-based diet are adequate for hens with the intake 115 g of feed with 3.5% of Ca without a negative impact on performance or egg quality.
Keywords: available phosphorus; brown-egg laying hen; wheat; maize
Published: October 31, 2010 Show citation
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References
- AOAC (2005): Official Methods of Analysis. 18th ed., AOAC International, Gaithersburg, USA.
- Ballam G.C., Nelson T.S., Kirby L.K. (1985): Effect of different dietary levels of calcium and phosphorus on phytate hydrolysis by chicks. Nutrition Reports International, 32, 909-913.
- Bar A., Hurwitz S. (1984): Egg shell quality, medullary bone ash, intestinal calcium and phosphorus absorption and calcium binding protein in phosphate-deficient hens. Poultry Science, 63, 1975-1979.
Go to original source...
Go to PubMed...
- Eeckhout W., Depaepe M. (1994): Total phosphorus, phytate-phosphorus and phytase activity in plant feedstuffs. Animal Feed Science and Technology, 47, 19-29.
Go to original source...
- Harms R.H. (1982): The influence of nutrition on egg shell quality. Part II. Phosphorus. Feedstuffs, 54, 25-27.
- Haugh R.R. (1937): The Haugh unit for measuring egg quality. US Egg Poultry Mag., 43, 552-555, 572-573.
- Keener K.M., McAvoy K.C., Foegeding J.B., Curtis P.A., Anderson K.E., Osborne J.A., Bush D.J. (2006): Effect of testing temperature on internal egg quality measurements. Poultry Science, 85, 550-555.
Go to original source...
Go to PubMed...
- Lichovníková M., Zeman L. (2008): Effect of housing system on the calcium requirement of laying hens and on eggshell quality. Czech Journal of Animal Science, 53, 162-168.
Go to original source...
- Marounek M., Skĝivan M., Dlouhá G., Bĝezina P. (2008): Digestibility of phosphorus in laying hens fed a wheatmaize soybean diet and the excreta phosphorus fractions. Journal of Animal Feed Science, 17, 579-587.
Go to original source...
- Mathur C.R., Reddy C.V., Siddiqui S.M. (1982): Determination of calcium and phosphorus requirements for caged layers. Indian Journal of Animal Science, 52, 768-771.
- National Research Council (1984): Nutrient Requirements of Poultry. 8th rev. ed., National Academy Press, Washington, USA.
- National Research Council (1994): Nutrient Requirements of Poultry. 9th rev. ed., National Academy Press, Washington, USA.
- Nys Y. (1999): Nutritional factors affecting eggshell quality. Czech Journal of Animal Science, 44, 135-143.
- Owings W.J., Sell J.L., Balloun S.L. (1977): Dietary phosphorus needs of laying hens. Poultry Science, 56, 2056-2060.
Go to original source...
Go to PubMed...
- Rao S.V.R., Reddy V.R., Reddy V.R. (1999): Non-phytin phosphorus requirements of commercial broilers and White Leghorn layers. Animal Feed Science and Technology, 80, 1-10.
Go to original source...
- Salman A.J., Ali M.S., McGinnis J. (1969): Effect of level and source of phosphorus and different calcium levels on productivity and phosphorus utilization by laying hens. Poultry Science, 48, 1001-1009.
Go to original source...
Go to PubMed...
- SAS (2001): Release 8.2 (TS2MO) of the SAS® System for Microsoft® Windows®. SAS Institute Inc., Cary, NC, USA.
- Scott T.A., Kampen R., Silversides F.G. (1999): The effect of phosphorus, phytase enzyme, and calcium on the performance of layers fed corn-based diets. Poultry Science, 78, 1742-1749.
Go to original source...
Go to PubMed...
- Summers J.D. (1995): Reduced dietary phosphorus levels for layers. Poultry Science, 74, 1977-1983.
Go to original source...
Go to PubMed...
- Usayran N., Balnave D. (1995): Phosphorus requirements of laying hens fed on wheat-based diets. British Poultry Science, 36, 285-301.
Go to original source...
Go to PubMed...
- Vandepopuliere J.M., Lyons J.J. (1992): Effect of inorganic phosphate source and dietary phosphorus level on laying hen performance and egg shell quality. Poultry Science, 71, 1022-1031.
Go to original source...
Go to PubMed...
- Viveros A., Centeno C., Brenes A., Canales R., Lozano A. (2000): Phytase and acid phosphatase activities in plant feedstuffs. Journal of Agricultural and Food Chemistry, 48, 4009-4013.
Go to original source...
Go to PubMed...
- Yao J.H., Han J.C., Wu S.Y., Xu M., Zhong L.L., Liu Y.R., Wang Y.J. (2007): Supplemental wheat bran and microbial phytase could replace inorganic phosphorus in laying hen diets. Czech Journal of Animal Science, 52, 407-413.
Go to original source...
- Zelenka J., Zeman L., Heger J. (2007): Nutrient requirements and nutritive values of feeds for poultry. MZLU, CR, 77 pp. (in Czech)
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