Czech J. Anim. Sci., 2015, 60(12):542-549 | DOI: 10.17221/8596-CJAS

Effects of a low-phosphorus diet and exogenous phytase on performance, egg quality, and bacterial colonisation and digestibility of minerals in the digestive tract of laying hensOriginal Paper

M. Englmaierová1, M. Skřivan1, E. Skřivanová1,2, I. Bubancová1, L. Čermák1, J. Vlčková1
1 Department of Nutrition Physiology and Animal Product Quality, Institute of Animal Science, Prague-Uhříněves, Czech Republic
2 Department of Microbiology, Nutrition and Dietetics, Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences Prague, Prague, Czech Republic

The objective of the experiment was to determine the effects of different levels of phytase (0, 150, 250, and 350 phytase units (FTU)/kg; F) produced by Aspergillus niger in the diets of hens fed decreased contents of non-phytate phosphorus (1.8 and 2.1 g/kg; NPP) on the hen performance, egg quality, digestibility of calcium and phosphorus in the ileum, and representation of bacterial species in the ileum and caecum. The diet with 2.1 g/kg of NPP and 350 FTU/kg significantly decreased egg weight (P < 0.001) and egg mass production (P < 0.001). However, this treatment had the highest values for shell percentage (P = 0.002), shell thickness (P = 0.006), and shell index (P = 0.003). The supplementation with F at 350 FTU/kg to the diet with 1.8 g/kg of NPP increased the shell quality to a level that was comparable with the eggs from the hens fed the diet with only 2.1 g/kg of NPP. With the addition of F (350 FTU/kg) to the mixed feed with 1.8 g/kg of NPP, the digestibility of calcium and phosphorus in the ileum increased by 6.1% and 7.4%, respectively, although the increases were not significant. Additionally, the frequency of Lactobacillus spp. was higher in the ileum and caecum of hens fed the diet enriched with F than in those fed a diet without F addition. The dietary manipulations with NPP and F improved some performance and shell quality characteristics, and the addition of 3-phytase at a level of 350 FTU per kg to the low-P diet increased the digestibility of minerals and changed the microflora of the digestive tract.

Keywords: layers; eggshell; microbial 3-phytase; ileum; caecum; Lactobacillus spp.

Published: December 31, 2015  Show citation

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Englmaierová M, Skřivan M, Skřivanová E, Bubancová I, Čermák L, Vlčková J. Effects of a low-phosphorus diet and exogenous phytase on performance, egg quality, and bacterial colonisation and digestibility of minerals in the digestive tract of laying hens. Czech J. Anim. Sci. 2015;60(12):542-549. doi: 10.17221/8596-CJAS.
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References

  1. Ahmadi H., Rodehutscord M. (2012): A meta-analysis of responses to dietary nonphytate phosphorus and phytase in laying hens. Poultry Science, 91, 2072-2078. Go to original source... Go to PubMed...
  2. Ahmed A.M.H., Rodriguez-Navarro A.B., Vidal M.L., Gautron J., Garcia-Ruiz J.M., Nys Y. (2005): Changes in eggshell mechanical properties, crystallographic texture and in matrix proteins induced by moult in hens. British Poultry Science, 46, 268-279. Go to original source... Go to PubMed...
  3. Altschul S.F., Madden T.L., Schaffer A.A., Zhang J., Zhang Z., Miller W., Lipman D.J. (1997): Gapped BLAST and PSI-BLAST: a new generation of protein database search programs. Nucleic Acids Research, 25, 3389-3402. Go to original source... Go to PubMed...
  4. Aydin A., Pekel A.Y., Issa G., Demirel G., Patterson P.H. (2010): Effects of dietary copper, citric acid, and microbial phytase on digesta pH and ileal and carcass microbiota of broiler chickens fed a low available phosphorus diet. Journal of Applied Poultry Research, 19, 422-431. Go to original source...
  5. Boling S.D., Douglas M.W., Shirley R.B., Parsons C.M., Koelkebeck K.W. (2000): The effects of various dietary levels of phytase and available phosphorus on performance of laying hens. Poultry Science, 79, 535-538. Go to original source... Go to PubMed...
  6. Bougouin A., Appuhamy J.A.D.R.N., Kebreab E., Dijkstra J., Kwakkel R.P., France J. (2014): Effects of phytase supplementation on phosphorus retention in broilers and layers: a meta-analysis. Poultry Science, 93, 1981-1992. Go to original source... Go to PubMed...
  7. Cowieson A.J., Acamovic T., Bedford M.R. (2006): Supplementation of corn-soy-based diets with high concentrations of an Escherichia coli-derived phytase: effects on broiler chick performance and the digestibility of amino acids, minerals, and energy. Poultry Science, 85, 1389-1397. Go to original source... Go to PubMed...
  8. Dibner J.J., Buttin P. (2002): Use of organic acids as a model to study the impact of gut microflora on nutrition and metabolism. Journal of Applied Poultry Research, 11, 453-463. Go to original source...
  9. Englmaierova M., Dlouha G., Marounek M., Skrivan M. (2012): Efficacy of contrast levels of non-phytate phosphorus and Aspergillus niger phytase in hens fed wheatmaize-based diets. Czech Journal of Animal Science, 57, 499-505. Go to original source...
  10. Englmaierova M., Skrivanova V., Skrivan M. (2014a): The effect of non-phytate phosphorus and phytase levels on performance, egg and tibia quality, and pH of the digestive tract in hens fed higher-calcium-content diets. Czech Journal of Animal Science, 59, 107-115. Go to original source...
  11. Englmaierova M., Tumova E., Charvatova V., Skrivan M. (2014b): Effects of laying hens housing system on laying. performance, egg quality characteristics, and egg microbial contamination. Czech Journal of Animal Science, 59, 345-352. Go to original source...
  12. Gao C.Q., Ji C., Zhang J.Y., Zhao L.H., Ma Q.G. (2013): Effect of a novel plant phytase on performance, egg quality, apparent ileal nutrient digestibility and bone mineralization of laying hens fed corn-soybean diets. Animal Feed Science and Technology, 186, 101-105. Go to original source...
  13. Haugh R.R. (1937): The Haugh unit for measuring egg quality. US Egg and Poultry Magazine, 43, 552-555, 572-573.
  14. Jalal M.A., Scheideler S.E. (2001): Effect of supplementation of two different sources of phytase on egg production parameters in laying hens and nutrient digestibility. Poultry Science, 80, 1463-1471. Go to original source... Go to PubMed...
  15. Kozlowski K., Jeroch H. (2011): Efficacy of different levels of Escherichia coli phytase in hens fed maize-soyabean meal based diets with a decreased non-phytase phosphorus content. Journal of Animal and Feed Sciences, 20, 224-235. Go to original source...
  16. Lim H.S., Namkung H., Paik I.K. (2003): Effects of phytase supplementation on the performance, egg quality, and phosphorous excretion of laying hens fed different levels of dietary calcium and nonphytate phosphorous. Poultry Science, 82, 92-99. Go to original source... Go to PubMed...
  17. Liu N., Liu G.H., Li F.D., Sands J.S., Zhang S., Zheng A.J., Ru Y.J. (2007): Efficacy of phytases on egg production and nutrient digestibility in layers fed reduced phosphorus diets. Poultry Science, 86, 2337-2342. Go to original source... Go to PubMed...
  18. Lu M., Li D., Gong L., Ru Y., Ravindran V. (2009): Effects of supplemental microbial phytase and xylanase on the performance of broilers fed diets based on corn and wheat. Journal of Poultry Science, 46, 217-223. Go to original source...
  19. Marounek M., Skrivan M., Dlouha G., Brenova N. (2008): Availability of phytate phosphorus and endogenous phytase activity in the digestive tract of laying hens 20 and 47 weeks old. Animal Feed Science and Technology, 146, 353-359. Go to original source...
  20. Mertens K., Bamelis F., Kemps B., Kamers B., Verhoelst E., de Ketelaere B., Bain M., Decuypere E., De Baerdemaeker J. (2006): Monitoring of eggshell breakage and eggshell strength in different production chains of consumption eggs. Poultry Science, 85, 1670-1677. Go to original source... Go to PubMed...
  21. Michiels J., Skrivanova E., Missotten J., Ovyn A., Mrazek J., De Smet S., Dierick N. (2012): Intact brown seaweed (Ascophyllum nodosum) in diets of weaned piglets: effects on performance, gut bacteria and morphology and plasma oxidative status. Journal of Animal Physiology and Animal Nutrition, 96, 1101-1111. Go to original source... Go to PubMed...
  22. Mrazek J., Strosova L., Fliegerova K., Kott T., Kopecny J. (2008): Diversity of insect intestinal microflora. Folia Microbiologica, 53, 229-233. Go to original source... Go to PubMed...
  23. Muyzer G., Dewaal E.C., Uitterlinden A.G. (1993): Profiling of complex microbial populations by denaturing gradient gel electrophoresis analysis of polymerase chain reactionamplified genes coding for 16S rRNA. Applied and Environmental Microbiology, 59, 695-700. Go to original source... Go to PubMed...
  24. Myers W.D., Ludden P.A., Nayigihugu V., Hess B.W. (2004): Technical note: a procedure for the preparation and quantitative analysis of samples for titanium dioxide. Journal of Animal Science, 82, 179-183. Go to original source... Go to PubMed...
  25. Nair V.C., Laflamme J., Duvnjak Z. (1991): Production of phytase by Aspergillus ficuum and reduction of phytic acid content in canola meal. Journal of the Science of Food and Agriculture, 54, 355-365. Go to original source...
  26. National Research Council (1994): Nutrient Requirements of Poultry. 9th Ed. The National Academies Press, Washington, USA.
  27. Simons P.C., Versteegh H.A., Jongbloed A.W., Kemme P.A., Slump P., Bos K.D., Wolters M.G., Beudeker R.F., Verschoor G.J. (1990): Improvement of phosphorus availability by microbial phytase in broilers and pigs. British Journal of Nutrition, 64, 525-540. Go to original source... Go to PubMed...
  28. Singh P.K. (2008): Significance of phytic acid and supplemental phytase in chicken nutrition: a review. World's Poultry Science Journal, 64, 553-580. Go to original source...
  29. Skrivan M., Englmaierova M., Skrivanova V. (2010): Effect of different phosphorus levels on the performance and egg quality of laying hens fed wheat- and maize-based diets. Czech Journal of Animal Science, 55, 420-427. Go to original source...
  30. Skrivan M., Englmaierova M., Skrivanova E., Bubancova I. (2015): Increase in lutein and zeaxanthin content in the eggs of hens fed marigold flower extract. Czech Journal of Animal Science, 60, 89-96. Go to original source...
  31. Sohail S.S., Roland D.A. (2002): Influence of dietary phosphorus on performance of Hy-Line W36 hens. Poultry Science, 81, 75-83. Go to original source... Go to PubMed...
  32. Tumova E., Gous R.M., Tyler N. (2014): Effect of hen age, environmental temperature, and oviposition time on egg shell quality and egg shell and serum mineral contents in laying and broiler breeder hens. Czech Journal of Animal Science, 59, 435-443. Go to original source...
  33. Um J.S., Paik I.K. (1999): Effects of microbial phytase supplementation on egg production, eggshell quality, and mineral retention of laying hens fed different levels of phosphorus. Poultry Science, 78, 75-79. Go to original source... Go to PubMed...
  34. Underwood E.J., Suttle N.F. (1999): The Mineral Nutrition of Livestock. CABI Publishing, Wallingford, UK. Go to original source...
  35. Venglovska K., Gresakova L., Placha I., Ryzner M., Cobanova K. (2014): Effects of feed supplementation with manganese from its different sources on performance and egg parameters of laying hens. Czech Journal of Animal Science, 59, 147-155. Go to original source...
  36. Wu G., Liu Z., Bryant M.M., Roland D.A. (2006): Comparison of Natuphos and Phyzyme as phytase sources for commercial layers fed corn-soy diet. Poultry Science, 85, 64-69. Go to original source... Go to PubMed...
  37. Yan L., Zhou T.X., Jang H.D., Hyun Y., Kim H.S., Kim I.H. (2009): Comparative effects of phytase derived from Escherichia coli and Aspergillus niger in sixty eight-week-old laying hens fed corn-soy diet. Asian-Australasian Journal of Animal Sciences, 22, 1391-1399. Go to original source...

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