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Effect of Measured Energy Restriction and Age Intervals on Growth, Nutrient Digestibility, Carcass Parameters, Bone Characteristics and Stress in Broiler Breeders during the Rearing Period

  • Sunder, G. Shyam (Project Directorate on Poultry, Rajendranagar) ;
  • Kumar, Ch. Vijaya (Project Directorate on Poultry, Rajendranagar) ;
  • Panda, A.K. (Project Directorate on Poultry, Rajendranagar) ;
  • Gopinath, N.C.S. (Project Directorate on Poultry, Rajendranagar) ;
  • Raju, M.V.L.N. (Project Directorate on Poultry, Rajendranagar) ;
  • Rao, S.V. Rama (Project Directorate on Poultry, Rajendranagar) ;
  • Reddy, M.R. (Project Directorate on Poultry, Rajendranagar)
  • 투고 : 2007.09.25
  • 심사 : 2008.01.03
  • 발행 : 2008.07.01

초록

This study aimed at targeting fixed increases in body weight (100 g/wk) by quantitatively regulating energy allowances (ME) in broiler breeders from 5 to 20 wks of age. Four energy regimes were tested: 1. The energy required for maintenance, activity and growth was calculated for 100 g increases in body weight/wk and a measured quantity of grower diet (160 g protein and 2,600 kcal ME/kg) was offered to the control group (ME-100) to achieve the anticipated weight gain. The energy allowances increased with age from 132 to 294 kcal/d. 2. Additionally, three energy regimes were considered, quantitatively reducing ME by 10% (ME-90) or 20% (ME-80) and increasing by10% (ME-110) over the control group. Each test group had 23 replicates5 female chicks housed in cages. The influence of energy regimes and age on growth, nutrient digestibility, carcass attributes, bone parameters and stress was evaluated at 4 wk intervals. Quantitative ME restriction by 10% (119-265 kcal/d) produced an average weight gain of 98.1 g/wk, which was closer to the targeted increase of 100 g/wk, whereas the control group attained it nine days earlier. Restriction of energy by 10 or 20% produced better conversion efficiency of feed, energy and protein and apparent digestibility of protein, Ca and P than 10% excess ME. Energy regimes did not influence eviscerated meat yield, but higher energy allowances (ME-110) significantly increased abdominal fat pad and liver weights and decreased giblet weight, percent muscle protein and tibia ash. Relatively higher stress was recorded in ME-restricted groups, as reflected by wider heterophil and lymphocyte ratios and increased bursa weight. Early age (5-12 wk) significantly influenced bone mineralization, conversion efficiency of feed, energy and protein and apparent digestibility of protein, Ca and P, while later ages (13-20 wk) increased eviscerated meat yield, abdominal fat, tibia weight and muscle protein and reduced stress. Energy regime x age interactions were significant and are discussed. In conclusion, the synthetic broiler line used in our study responded positively to controlled energy feeding during the rearing period. Breeders offered 119-265 kcal/d, a reduction of 10% energy over the control group, were more effective in regulating grower performance than the latter. In addition to energy regimes, age intervals also exhibited significant influence on specific parameters during the grower phase.

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참고문헌

  1. AOAC. 1995. Official Methods of Analysis, 16th edn. Association of Official Analytical Chemists Washington, DC.
  2. Bennett, C. D. and S. Lesson. 1990. Body composition of the broiler-breeder pullet. Poult. Sci. 69:715-720. https://doi.org/10.3382/ps.0690715
  3. Bokkers, E. A. M. and P. Koene. 2003. Eating behavior, and preprandial and postprandial correlation in male broilers and layer chickens. Br. Poult. Sci. 44:538-544. https://doi.org/10.1080/00071660310001616165
  4. Bowmaker, J. E. E. and R. M. Gous. 1989. Quantification of reproductive changes and nutrient requirements of broiler breeder pullets at sexual maturity. Br. Poult. Sci. 30:663-675. https://doi.org/10.1080/00071668908417189
  5. Bruggeman, V., O. Onagbesan, E. Hondt, N. Buys, M. Safi, D. Vanmontfort, L. Berghman, F. Vandesande and E. Decuypere. 1999. Effects of timing and duration of feed restriction during rearing on reproductive characteristics in broiler breeder females. Poult. Sci. 78:1424-1434. https://doi.org/10.1093/ps/78.10.1424
  6. de Jong, I. C., H. Enting, A. Van Voorst and H. J. Blokhuis. 2005. Do low-density diets improve broiler breeder welfare during rearing and laying. Poult. Sci. 84:194-203. https://doi.org/10.1093/ps/84.2.194
  7. Duncan, D. B. 1955. Multiple range and multiple F tests. Biometrics 11:1-42. https://doi.org/10.2307/3001478
  8. Fiske, C. H. and Y. Subbarow. 1925. The colorimetric determination of phosphorus. J. Biol. Chemist. 66:375-400.
  9. Gross, W. B. and P. B. Siegel. 1983. Evaluation of the heterophil to lymphocyte ratio as a measure of stress in chickens. Avian Dis. 27:972-979. https://doi.org/10.2307/1590198
  10. Gross, W. B. and P. B. Siegel. 1993. General principles of stress and welfare. In livestock, handling and transport (Ed. T. Grandin), CAB International Wallingford, UK, pp. 21-34.
  11. Hocking, P. M. 1993. Welfare of broiler breeder and layer females subjected to food and water control during rearing: Quantifying the degree of restriction. Br. Poult. Sci. 34:53-64. https://doi.org/10.1080/00071669308417562
  12. Hocking, P. M., M. H. Maxwell and M. A Mitchell. 1996. Relationships between the degree of food restriction and welfare indices in broiler breeder females. Br. Poult. Sci. 37:263-278. https://doi.org/10.1080/00071669608417858
  13. Hudson, H. A., J. L. Wilson, G. N. Rowland, R. J. Buhr and W. M. Britton. 1999. Feed restriction affects bone properties of the broiler breeder pullet femur. J. Appl. Poult. Res. 8:400-407. https://doi.org/10.1093/japr/8.4.400
  14. Katanbaf, M. N., E. A. Dunnington and P. B. Siegel. 1989a. Restricted feeding in early and late-feathering chickens. 1. Growth and physiological responses. Poult. Sci. 68:344-351. https://doi.org/10.3382/ps.0680344
  15. Katanbaf, M. N., E. A. Dunnington and P. B. Siegel. 1989b. Restricted feeding in early and late-feathering chickens. 3. Organ size and carcass composition. Poult. Sci. 68:359-368. https://doi.org/10.3382/ps.0680359
  16. Lilburn, M. S. and D. J. Myers-Miller. 1990. Dietary effects on body composition and subsequent production characteristics in broiler breeder hens. Poult. Sci. 69:1126-1132. https://doi.org/10.3382/ps.0691126
  17. Mench, J. A. 2002. Broiler breeders: feed restriction and welfare. World's Poult. Sci. J. 58:23-29. https://doi.org/10.1079/WPS20020004
  18. Nir, I., Z. Nitsan, E. A. Dunnington and P. B. Siegel. 1996. Aspects of food intake restriction in young domestic fowl: metabolic and PB genetic considerations. World's Poult. Sci. J. 52:251-266. https://doi.org/10.1079/WPS19960019
  19. Pinchasov, Y. and D. Galili. 1990 Energy requirement of feedrestricted broiler breeder pullets. Poult. Sci. 69:1792-1795. https://doi.org/10.3382/ps.0691792
  20. Prader, A., J. M. Tanner and G. A. Von Harnack. 1963. Catch-up growth following illness or starvation: An example of developmental canalization in man. J. Pediatrics. 62:646-659. https://doi.org/10.1016/S0022-3476(63)80035-9
  21. Rama Rao, S. V., M. V. L. N. Raju, A. K. Panda and M. R. Reddy. 2006. Sunflower seed meal as a substitute for soybean meal in commercial broiler chicken diets. Br. Poult. Sci. 47:592-598. https://doi.org/10.1080/00071660600963511
  22. Renema, R. A., F. E. Robinson, M. Newcomb and R. I. Mckay. 1999. Effects of body weight and feed allocation during sexual maturation in broiler breeder hens, 1. Growth and carcass characteristics. Poult. Sci. 78:619-628. https://doi.org/10.1093/ps/78.5.619
  23. Richards, M. P. 2003. Genetic regulation of feed intake and energy balance in poultry. Poult. Sci. 82:907-916. https://doi.org/10.1093/ps/82.6.907
  24. Robinson, F. E., N. A. Robinson and T. A. Scott. 1991. Reproductive performance, growth and body composition of full-fed versus feed restricted broiler breeder hens. Canadian J. Anim. Sci. 71:549-556. https://doi.org/10.4141/cjas91-065
  25. Robinson, F. E., N. A. Robinson and R. T. Hardin. 1995. The effects of 20-week body weight and feed allocation during early lay on female broiler breeders. J. Appl. Poult. Res. 4:203-210. https://doi.org/10.1093/japr/4.2.203
  26. Robinson, F. E., J. L. Wilson, M. W. Yu, G. M. Fasenko and T. Hardin. 1993. The relationship between body weight and reproductive efficiency in meat-type chickens. Poult. Sci. 72:912-922. https://doi.org/10.3382/ps.0720912
  27. SAS Institute. 1994. SAS User's Guide, Version 6.12 SAS Institute Inc., Cary, NC.
  28. Scott, M. L., M. C. Nesheim and R. J. Young. 1982. Energy chapter II. Nutrition of the chicken. pp. 7-57 (M.L. Scott and Associates, Publishers Ithaca, New York).
  29. Shyam Sunder, G., Ch. Vijaya Kumar, A. K. Panda, M. V. L. N. Raju, S. V. Rama Rao, N. C. S. Gopinath and M. R. Reddy. 2007. Restriction of metabolizable energy in broiler grower and breeder performance. Asian-Aust. J. Anim. Sci. 20:1258-1265. https://doi.org/10.5713/ajas.2007.1258
  30. Sun, J. M., M. P. Richards, R. W. Rosebrough, C. M. Ashwell, J. P. Mc Murtry and C. N. Coon. 2006. The relationship of body composition, feed intake and metabolic hormones for broiler breeder females. Poult. Sci. 85:1173-1184. https://doi.org/10.1093/ps/85.7.1173
  31. Whitehead, C. C. 2000. Nutrition: the integrative science. Br. Poult. Sci. 41:5-15.
  32. Yu, M. W., F. E. Robinson and A. R. Rubble. 1992. Effect of feed allowance during rearing and breeding of female broiler breeders. 1. Growth and carcass characteristics. Poult. Sci. 71:1739-1749. https://doi.org/10.3382/ps.0711739

피인용 문헌

  1. Enhancing Growth Performance, Organ Development, Meat Quality, and Bone Mineralisation of Broiler Chickens through Multi-Enzyme Super-Dosing in Reduced Energy Diets vol.11, pp.10, 2008, https://doi.org/10.3390/ani11102791