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3. Uluslararası Beyaz Et Kongresi

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Kaynaklar<br />

1. Cosgrove, D.J., 1980. Inositol Phosphates: Their Chemistry, Biochemistry and Physiology.<br />

Elsevier Publication Scientific Publishing Co., New York, NY.<br />

2. NRC (1994) Nutrient Requirements of Poultry (Washington, DC, National Academy Press)<br />

<strong>3.</strong> Maddaiah, V.T., Kumick, A.A., Hullet, B.J., Reid, B.L., 1964. Nature of intestinal phytase<br />

activity. Proc. Soc. Exp. Biol. Med. 115:1054-1057<br />

4. Denbow, L.M., Ravindran, V., Kornegay, E.T., Yi, Z., Hulet, R.M., 1995. Improving<br />

phosphorus availability in soybean meal for broilers by supplemental phytase. Poultry<br />

Science 74:1831–1842<br />

5. Rutherfurd, S.M., Chung, T.K., Thomas, D.V., Zou, M.L., Moughan, P.J., 2012. Effect of a<br />

novel phytase on growth performance, apparent metabolizable energy, and the availability<br />

of minerals and amino acids in a low-phosphorus corn-soybean meal diet for broilers.<br />

Poultry Science 91 :1118–1127<br />

6. Amerah, AM., Plumstead, P.W., Barnard, L.P, Kumari, A., 2014. Effect of calcium level and<br />

phytase addition on ileal phytate degradation and amino acid digestibility of broilers fed<br />

corn-based diets. Poultry Science 93 :906–915<br />

7. Selle, P.H., Ravindran, V., Partridge, G.G., 2009. Beneficial effects of xylanase and/or<br />

phytase inclusions on ileal amino acid digestibility, energy utilisation, mineral retention and<br />

growth performance in wheat-based broiler diets. Animal Feed Science and Technology<br />

153:303–313<br />

8. 8. Rutherfurd, S.M., Chung, T.K., Morel, P.C.H., Moughan, P.J., 2004. Effect of Microbial<br />

Phytase on Ileal Digestibility of Phytate Phosphorus, Total Phosphorus, and Amino Acids<br />

in a Low-Phosphorus Diet for Broilers. Poultry Science 83:61–68<br />

9. Pirgozliev, V., Bedford, M.R., Acamovic, T., Mares, P., Allymehr, M., 2011. The effects of<br />

supplementary bacterial phytase on dietary energy and total tract amino acid digestibility<br />

when fed to young chickens. British Poultry Science 52:245-254<br />

10. Ravindran, V., Selle, P.H., Ravindran, G., Morel, P.C.H., Kies, A.K., Bryden, W.L., 2001.<br />

Microbial Phytase Improves Performance, Apparent Metabolizable Energy, and Ileal Amino<br />

Acid Digestibility of Broilers Fed a Lysine-Deficient Diet. Poultry Science 80:338–344<br />

11. Zaefarian, F., Romero, L.F., Ravindran, V., 201<strong>3.</strong> Influence of a microbial phytase on the<br />

performance and the utilisation of energy, crude protein and fatty acids of young broilers fed<br />

on phosphorusadequate maize- and wheat-based diets. British Poultry Science 54:653-660<br />

12. Liu, S.Y., Cadogan, D.J., Peron, A., Truong, H.H., Selle, P.H., 2014. Effects of phytase<br />

supplementation on growth performance,nutrient utilization and digestive dynamics of<br />

starch andprotein in broiler chickens offered maize-, sorghum- andwheat-based diets.<br />

Animal Feed Science and Technology 197:164-175<br />

1<strong>3.</strong> Ravindran, V., Cowieson, A.J., Selle, P.H., 2008. Influence of Dietary Electrolyte Balance<br />

and Microbial Phytase on Growth Performance, Nutrient Utilization, and Excreta Quality<br />

of Broiler Chickens. Poultry Science 87:677–688<br />

14. Ravindran, V., Morel, P.C.H., Partridge, G.G., Hruby, M., Sands, J.S., 2006. Influence of<br />

an Escherichia coli-Derived Phytase on Nutrient Utilization in Broiler Starters Fed Diets<br />

Containing Varying Concentrations of Phytic Acid. Poultry Science 85:82–89<br />

15. Emami, N.K., Naeini, S.Z., Ruiz-Feria, C.A., 201<strong>3.</strong> Growth performance, digestibility,<br />

immune response and intestinal morphology of male broilers fed phosphorus deficient diets<br />

supplemented with microbial phytase and organic acids. Livestock Science 157:506-513<br />

16. Ayoola, A.A., 2014. Impact of Dietary Exogenous Enzyme Supplementation on Endogenous<br />

Secretion, Gastrointestinal Health, Nutrients Digestibility and Growth Performance of<br />

688

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