Influence of Varying Crude Protein Levels and Balanced Amino Acids on the Performance and Haematological Characteristics of Laying Hens at the Second Phase of Production

Abstract

Varying levels of dietary crude proteins and balanced amino acids were fed to layers for a period of eight weeks starting from the twenty-sixth week of age of birds and six weeks into egg production. Effects on performance and haematological characteristics were investigated at this second phase of production. Sixty Black Nera hens were randomly allotted into four (4) dietary treatments, containing the following levels of crude protein 14%, 15%, 16%, 17% and the metabolizable energy was iso-caloric for each treatment. The results showed that there were no significant differences (P > 0.05) observed for lymphocyte, Haemoglobin (Hb), Packed Cell Volume (PCV), Red Blood Cell (RBC) and White Blood Cell (WBC), these haematological parameters were within the range for healthy birds. Thus crude protein level of 14% can be used in diets of layers at the second phase of production provided that adequate amino acids are given, without adverse effect on egg laying, feed intake and measured blood parameters.

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G. Adeyemo, "Influence of Varying Crude Protein Levels and Balanced Amino Acids on the Performance and Haematological Characteristics of Laying Hens at the Second Phase of Production," Food and Nutrition Sciences, Vol. 4 No. 1, 2013, pp. 11-15. doi: 10.4236/fns.2013.41003.

Conflicts of Interest

The authors declare no conflicts of interest.

References

[1] O. O. Tewe, “Replacing Maize with Plantain Peels in Diets for Broilers,” Nutrition Reports International, Vol. 28, No. 1, 1983, pp. 23-29.
[2] S. Leeson and J. D. Summers, “Response of Leghorn Pullets to Protein and Energy in the Diet When Reared in Regular or Hot-Cyclic Environments,” Poultry Science, Vol. 68, No. 4, 1989, pp. 546-557. doi:10.3382/ps.0680546
[3] R. D. Miles and G. D. Butcher, “Prevention of Avian Polyomavirus Infections through Vaccination,” Avian Necropsy Techniques, 2000, p. 30.
[4] National Research Council, “Nutrient Requirements of Poultry,” 9th Edition, National Academies Press, Washington DC, 1994, p. 145.
[5] R. D. G. Steel and J. H. Torrie, “Principles and Procedures of Statistics,” McGraw-Hill Book Company, Inc., New York, 1990, p. 481.
[6] Http://www.zootecnicainternational.com/article-archive/nutrition/284-trace-mineral-balance-in-poultry.html
[7] K. Keshavarz and S. Nakajima, “The Effect of Dietary Manipulations of Energy, Protein, and Fat during the Growing and Laying Periods on Early Egg Weight and Egg Components,” Poultry Science, Vol. 74, No. 1, 1995, pp. 50-62. doi:10.3382/ps.0740050
[8] S. Grobas, J. Mendez, C. De Blas and G. G. Mateos, “Laying Hen Productivity as Affected by Energy, Supplemental Fat, and Linoleic Acid Concentration of the Diet,” Poultry Science, Vol. 78, No. 11, 1999, pp. 1542-1551.
[9] S. S. Sohail, M. M. Bryant and D. A. Roland Sr., “Influence of Dietary Fat on Economic Returns of Commercial Leghorns,” The Journal of Applied Poultry Research, Vol.12, No. 3, 2003, pp. 356-361.
[10] N. S. Ferguson, R. S. Gates, J. L. Taraba, A. H. Cantor, A. J. Pescatore M. L. Straw, M. J. Ford and D. J. Burnham, “The Effect of Dietary Protein and Phosphorus on Ammonia Concentration and Litter Composition in Broilers,” Poultry Science, Vol. 77, No. 8, 1998, pp. 1085-1093.
[11] B. M. Mitruka and H. M. Rawnsley, “Clinical, Biochemical and Haematological Reference Values in Normal Experimental Animals,” Masson Publishing Inc., New York, 1977, pp. 21-84.
[12] M. Veulterinor, “Nutrition and Erythropoiesis,” In: M. Rechcigi, Ed., CRC Handbook of Nutritional Requirements in Functional Context, CRC Press, Boca Ration, 1991, pp. 65-74.
[13] G. O. Adeyemo and O. G. Longe, “Effects of Graded Levels of Cottonseed Cake on Performance, Haematological and Carcass Characteristics of Broilers Fed from Day Old to 8 Weeks of Age,” African Journal of Biotechnology, Vol. 6, No. 8, 2007, pp. 1064-1071.
[14] M. L. Kakade, N. Simons and J. E. Liener, “An Evaluation of Natural versus Synthetic Substrates for Meas-Uring the Antitryptic Activety of Soybean Samples,” Ce-Real Chemistry, Vol. 46, 1969, pp. 518-526.

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