Comparison of Energy Values Estimated by Direct and Indirect Methods for Broiler Chickens


Authors

  • J. Lee Ecology and Environmental Research Institute, Kyungpook National University, Sangju 37224, Republic of Korea
  • C. Kong Department of Animal Science, Kyungpook National University, Sangju 37224, Republic of Korea

DOI:

https://doi.org/10.3923/ijps.2019.244.248

Keywords:

Barley, broiler diet, direct method, metabolizable energy, regression method, wheat

Abstract

Objective: The objective of this study was to compare energy values of wheat or barley derived from the direct and regression methods for broiler chickens. Materials and Methods: Seven diets consisted of a corn-soybean meal-based basal diet, 2 semi-purified diets mixed to contain wheat or barley as the sole source of energy and 4 test diets prepared by supplementing the basal diet with wheat or barley at 15 or 30%, respectively. Chromic oxide was used as an indigestible index to calculate the metabolizability. A total of 504 21-days-old male Ross 308 broiler chickens were allocated based on body weight into 7 treatments with 6 replicate cages and 12 birds per cage by using a randomized complete block design. From d 21, birds were fed the experimental diets for 5-d and excreta samples were collected from d 24-26. Results: The apparent metabolizable energy (AME) of the wheat using the direct method (2,934 kcal kg–1 DM) was not different from the value (3,026 kcal kg–1 DM) derived from the regression method. However, the AME of barley obtained from the direct method (2,730 kcal kg–1 DM) differed from the value (2,970 kcal kg–1 DM) measured by the regression method. Conclusion: The direct and regression methods gave different estimates of the AME in barley but not in wheat fed to broiler chickens.

References

Kong, C. and O. Adeola, 2014. Evaluation of amino acid and energy utilization in feedstuff for swine and poultry diets. Asian Aust. J. Anim. Sci., 27: 917-925.

Farrell, D.J., 1981. An assessment of quick bioassays for determining the true metabolizable energy and apparent metabolizable energy of poultry feedstuffs. World's Poult. Sci. J., 37: 72-83.

Bolarinwa, O.A. and O. Adeola, 2012. Energy value of wheat, barley and wheat dried distillers grains with solubles for broiler chickens determined using the regression method. Poult. Sci., 91: 1928-1935.

Roudi, P.S., A. Golian and M. Sedghi, 2012. Metabolizable energy and digestible amino acid prediction of wheat using mathematical models. Poult. Sci., 91: 2055-2062.

NRC, BA and SPN, 1994. Nutrient Requirements of Poultry: Ninth Revised Edition. 9th Edn., National Academy Press, Washington, DC, United State, ISBN-13: 978-0309048927, Pages: 176.

AOAC., 2005. Official Methods of Analysis. 18th Edn., AOAC., Washington, DC., USA.

Fenton, T.W. and M. Fenton, 1979. An improved procedure for the determination of chromic oxide in feed and feces. Can. J. Anim. Sci., 59: 631-634.

Hew, L.I., V. Ravindran, Y. Mollah and W.L. Bryden, 1998. Influence of exogenous xylanase supplementation on apparent metabolisable energy and amino acid digestibility in wheat for broiler chickens. Anim. Feed Sci. Technol., 75: 83-92.

Pedersen, C., M.G. Boersma and H.H. Stein, 2007. Energy and nutrient digestibility in NutriDense corn and other cereal grains fed to growing pigs. J. Anim. Sci., 85: 2473-2483.

Bolarinwa, O.A. and O. Adeola, 2016. Regression and direct methods do not give different estimates of digestible and metabolizable energy values of barley, sorghum and wheat for pigs. J. Anim. Sci., 94: 610-618.

Sauvant, D., J.M. Perez and G. Tran, 2004. Tables of Composition and Nutritional Value of Feed Materials: Pigs, Poultry, Cattle, Sheep, Goats, Rabbits, Horses, Fish. 1st Edn., Wageningen Academic Publishers, The Netherlands, ISBN-13: 9789076998411, Pages: 304.

Jaworski, N.W., H.N. Laerke, K.E.B. Knudsen and H.H. Stein, 2015. Carbohydrate composition and in vitro digestibility of dry matter and non-starch polysaccharides in corn, sorghum, and wheat, and coproducts from these grains. J. Anim. Sci., 93: 1103-1113.

NRC, DELS, BA, NR and CNRS, 2012. Nutrient Requirements of Swine. 11th Edn., National Academies Press, Washington, DC, United State, ISBN-13: 9780309224239, Pages: 420.

Lee, J., D.S. Nam and C. Kong, 2016. Variability in nutrient composition of cereal grains from different origins. Springerplus, Vol. 5.

Friesen, O.D., W. Guenter, R.R. Marquardt and B.A. Rotter, 1992. The effect of enzyme supplementation on the apparent metabolizable energy and nutrient digestibilities of wheat, barley, oats and rye for the young broiler chick. Poult. Sci., 71: 1710-1721.

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Published

2019-04-15

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Section

Research Article

How to Cite

Lee, J., & Kong , C. (2019). Comparison of Energy Values Estimated by Direct and Indirect Methods for Broiler Chickens. International Journal of Poultry Science, 18(5), 244–248. https://doi.org/10.3923/ijps.2019.244.248

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