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Effectiveness Evaluation of Use of Various Protein Feeds for Broiler Chicken Feeding

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Open Access
|Oct 2019

References

  1. Alaeldein M.A., Raed M.A., Rifat U.K. (2017). A survey of mycotoxin contamination and chemical composition of distiller’s dried grains with solubles (DDGS) imported from the USA into Saudi Arabia. Environ Sci. Pollut. Res., 24: 15401–15405.10.1007/s11356-017-9130-2
  2. AOAC (1990). Official Methods of Analysis of the Association of Official Analytical Chemists, 15th Ed. Chapter 32. Washington, DC.
  3. Baryłko-Pikielna N., Matuszewska I. (2014). Sensory Analysis of Food: Basics – Methods – Applications (in Polish). Wyd. II. Wyd. Nauk. PTTZ, Kraków, 375 pp.
  4. Berger M., Paulais A., Nourbakhsh-Rey M., Rooryck S., Labalette F., Maury P. (2015). Trypsin inhibitors in soybean seed: evaluation of genotypic variability in a core collection, effect of very early sowing and reduced irrigation. OCL – Oilseeds and fats Crops and Lipids, 22; Doi: 10.1051/ocl/2015037.10.1051/ocl/2015037
  5. Chatzifragkou A., Kosik O., Prabhakumari P.C., Lovegrove A., Frazier R.A., Shewry P.R., Charalampopoulos D. (2015). Biorefinery strategies for upgrading distillers’ dried grains with solubles (DDGS). Process Biochem., 50: 2194–2207.10.1016/j.procbio.2015.09.005
  6. Clarke E., Wiseman J. (2007). Effects of extrusion conditions on trypsin inhibitor activity of full fat soybeans and subsequent effects on their nutritional value for young broilers. Brit. Poultry Sci., 48: 703–712.10.1080/00071660701684255
  7. Commission Regulation (EC) (2009). High performance liquid chromatography method with fluorescence detection (HPLC-FLD). No 152/2009 (Annex III, G).
  8. Cortinas L., Villaverde C., Galobart J., Baucells M.D., Codony R., Barroeta A.C. (2004). Fatty acid content in chicken thigh and breast as affected by dietary polyunsaturation level. Poultry Sci., 83: 1155–1164.10.1093/ps/83.7.1155
  9. Corzo A., Schilling M.W., Loar R.E. II, Jackson V., Kin S., Radhakrishman V. (2009). The effects of feeding distillers dried grains with solubles on broiler meat quality. Poultry Sci., 88: 432–439.10.3382/ps.2008-00406
  10. Diaz D., Morlacchini M., Masoero M., Moschini M., Fusconi G., Piva G. (2006). Pea seeds (Pisum sativum), faba beans (Vicia faba var. minor) and lupin seeds (Lupinus albus var. multitalia) as protein sources in broiler diets: effect of extrusion on growth performance. Ital. J. Anim. Sci., 5: 43–53.10.4081/ijas.2006.43
  11. Domingo J.L., Bordonaba J.G. (2011). A literature review on the safety assessment of genetically modified plants. Environ. Int., 37: 734–742.10.1016/j.envint.2011.01.003
  12. Dzuman Z., Stranska-Zachariasova M., Vaclavikova M., Tomaniova M., Veprikova Z., Slavikova P., Hajslova J. (2016). Fate of free and conjugated mycotoxins within the production of distiller’s dried grains with solubles (DDGS). J. Agric. Food Chem., 64: 5085–5092.10.1021/acs.jafc.6b00304
  13. Egounlety M., Aworh O.C. (2003). Effect of soaking, dehulling, cooking and fermentation with Rhizopus oligosporus on the oligosaccharides, trypsin inhibitor, phytic acid and tannins of soybean (Glycine max Merr.), cowpea (Vigna unguiculata L. Walp) and groundbean (Macrotyloma geocarpa Harms). J. Food Eng., 56: 249–254.10.1016/S0260-8774(02)00262-5
  14. Emiola I.A., Ologhobo A.D., Gous R.M. (2007). Performance and histological responses of internal organs of broiler chickens fed raw, dehulled, and aqueous and dry-heated kidney bean meals. Poultry Sci., 86: 1234–1240.10.1093/ps/86.6.1234
  15. Erdaw M.M., Perez-Maldonado R.A., Iji P.A. (2018). Physiological and health-related response of broiler chickens fed diets containing raw, full-fat soya bean meal supplemented with microbial protease. J. Anim. Physiol. Anim. Nutr., 102: 533–544.10.1111/jpn.12785
  16. Grau R., Hamm R. (1953). Eine einfache Methode zur Bestimmung der Wasserbindung im Muskel. Naturwissenschaften, 40, 29.10.1007/BF00595734
  17. He L., Wu H., Chen W., Meng Q., Zhou Z. (2017). Influence of sulfur on the fermentation characteristics of corn distiller’s dried grains with solubles in in vitro culture. Czech J. Anim. Sci., 62: 417–425.10.17221/85/2016-CJAS
  18. Jahanian R., Rasouli E. (2016). Effect of extrusion processing of soybean meal on ileal amino acid digestibility and growth performance of broiler chicks. Poultry Sci., 95: 2871–2878.10.3382/ps/pew178
  19. Jiang W., Nie S., Qu Z., Bi C., Shan A. (2014). The effects of conjugated linoleic acid on growth performance, carcass traits, meat quality, antioxidant capacity, and fatty acid composition of broilers fed corn dried distillers grains with solubles. Poultry Sci., 93: 1202–1210.10.3382/ps.2013-03683
  20. Leontowicz H., Leontowicz M., Kostyra H., Gralak M.A., Kulasek G.W. (1999). The influence of extrusion or boiling on trypsin inhibitor and lectin activity in leguminous seeds and protein digestibility in rats. Pol. J. Food. Nutr. Sci., 8: 77–87.
  21. Loeffler T., Shim M.Y., Beckstead R.B., Batal A.B., Pesti G.M. (2013). Amino acid digestibility and metabolizable energy of genetically selected soybean products. Poultry Sci., 92: 1790–1798.10.3382/ps.2012-02299
  22. Lukaszewicz E., Kowalczyk A. (2014). Slaughter yield and breast meat quality of chicken broilers in relation to sex and level of dietary maize distillers dried grains with solubles (DDGS). Revue Méd. Vét., 165: 176–182.
  23. Lumpkins B.S., Batal A.B., Dale N.M. (2004). Evaluation of distillers dried grains with solubles as a feed ingredient for broilers. Poultry Sci., 83: 1891–1896.10.1093/ps/83.11.1891
  24. Milczarek A., Osek M. (2016). Partial replacement of soya bean with low-tannin faba bean varieties (Albus or Amulet): effects on growth traits, slaughtering parameters and meat quality of Puławska pigs. Ann. Anim. Sci., 16: 477–487.10.1515/aoas-2015-0076
  25. Mir N.A., Tyagi P.K., Biswas A.K., Tyagi P.K., Mandal A.B., Kumar F., Sharma D., Biswas A. (2018). Inclusion of flaxseed, broken rice, and distillers dried grains with solubles (DDGS) in broiler chicken ration alters the fatty acid profile, oxidative stability, and other functional properties of meat. Eur. J. Lipid Sci. Technol., 120; https://doi.org/10.1002/ejlt.201700470.10.1002/ejlt.201700470
  26. Mohamed A.A., Rayas-Duarte P. (1995). Composition of Lupinus albus. Cereal Chem., 72: 643–647.
  27. Moschini M., Masoero F., Prandini A., Fusconi G., Morlacchini M., Piva G. (2005). Raw Pea (Pisum sativum) raw Faba bean (Vicia faba var. minor) and raw Lupin (Lupinus albus var. multitalia) as alternative protein sources in broiler diets. Ital. J. Anim. Sci., 4: 59–69.10.4081/ijas.2005.59
  28. Nossacka A.C., Vilegasa J.H.Y., von Baerb D., Lancasa F.M. (2000). Supercritical fluid extraction and chromatographic analysis (HRGC-FID and HRGC-MS) of Lupinus spp. alkaloids. J. Braz. Chem. Soc., 11: 495–501.10.1590/S0103-50532000000500011
  29. Olkowski B., Charuta A., Radzki R., Bienko M., Toczko R. (2016). Skeletal response to diet with soya bean seeds used as primary source of protein in growing broiler chickens. J. Anim. Physiol. Anim. Nutr. 100: 731–737.10.1111/jpn.12450
  30. Pacheco W.J., Stark C.R., Ferket P.R., Brake J. (2014). Effects of trypsin inhibitor and particle size of expeller-extracted soybean meal on broiler live performance and weight of gizzard and pancreas. Poultry Sci., 93: 2245–2252.10.3382/ps.2014-03986
  31. Palliyeguru M.W.C.D., Rose S.P., Mackenzie A.M. (2011). Effect of trypsin inhibitor activity in soya bean on growth performance, protein digestibility and incidence of sub-clinical necrotic enteritis in broiler chicken flocks. Brit. Poult. Sci., 52: 359–367.10.1080/00071668.2011.577054
  32. Pohja M.S., Niinivaara F.P. (1957). Die Bestimmung der Wasserbindung des Fleisches mittels der Konstantdruckmethode. Fleischwirtschaft. 9: l93–195.
  33. Recknagel J. (2015). Le soja local en Allemagne, une demande soutenue, une offre qui s’étoffe. OCL – Oilseeds and fats Crops and Lipids, 22: D508.10.1051/ocl/2015033
  34. Rutkowski A., Kaczmarek S.A., Hejdysz M., Jamroz D. (2016). Effect of extrusion on nutrients digestibility, metabolizable energy and nutritional value of yellow lupine seeds for broiler chickens. Ann. Anim. Sci., 16: 1059–1072.10.1515/aoas-2016-0025
  35. Rybiński W., Święcicki W., Bocianowski J., Borner A., Starzycka-Korbas E., Starzycki M. (2018). Variability of fat content and fatty acids profiles in seeds of a Polish white lupin (Lupinus albus L.) collection. Genet. Resour. Crop Evol., 65: 417–431.10.1007/s10722-017-0542-0
  36. Salim H.M., Kruk Z.A., Lee B.D. (2010). Nutritive value of corn distillers dried grains with solubles as an ingredient of poultry diets: a review. World Poultry Sci. J., 66: 411–432.10.1017/S0043933910000504
  37. Sariozkan S., Konca Y., Guclu B.K., Kara K., Ildiz N., Kirkpinar F., Beyzi S.B., Kaliber M. (2015). Effects of dietary supplementation of dried distillers grain with solubles (DDGS) and yucca (Yucca schidigera) on broiler performance, carcass traits, intestinal viscosity and marketing. J. Poultry Res., 12: 5–11.
  38. Shim Y.H., Kim J.S., Hosseindoust A., Choi Y.H., Kim M.J., Oh S.M., Ham H. B., Kumar A., Kim K.Y., Jang A., Chae B.J. (2018). Investigating meat quality of broiler chickens fed on heat processed diets containing corn distillers dried grains with solubles. Korean J. Food Sci. Anim. Resour., 38: 629–635.
  39. Smith C., Van Megen W., Twaalfhoven L, Hitchcock C. (1980). The determination of trypsin inhibitor levels in foodstuffs. J. Sci. Food Agric., 31: 341–350.10.1002/jsfa.2740310403
  40. Standards and Recommendations of Poultry Nutrition (2005). Recommended allowances and nutritive value of feedstuffs. In: Poultry Feeding Standards, S. Smulikowska, A. Rutkowski (eds). 4th edn. The Kielanowski Institute of Animal Physiology and Nutrition, PAS, Jablonna (Poland) and Polish Branch of WPSA.
  41. StatSoft, Inc. (2015). Statistica (data analysis software system), version 12.5.
  42. Su B.C., Wang L.S., Wang H., Shi B.M., Shan A.S., Li Y.Z. (2013). Conjugated linoleic acid and betain prevent pork quality issues from diets containing distillers dried grains with solubles. Can. J. Anim. Sci., 93: 477–485.10.4141/cjas2013-056
  43. Szarek J., Fabczak J., Zimnoch L., Koncicki A. (2000). Impact of feed additives on the morphological picture of internal organs of broiler chickens (in Polish). Zesz. Nauk. PTZ Prz. Hod., 49: 65–76.
  44. Świątkiewicz S., Koreleski J. (2003). An attempt to use dried corn distillers grains as a component of diets for broiler chickens (in Polish). Rocz. Nauk. Zoot., 30: 367–379.
  45. Świątkiewicz S., Koreleski J. (2008). The use of distillers dried grains with solubles (DDGS) in poultry nutrition. World Poultry Sci. J., 64: 257–265.10.1017/S0043933908000044
  46. Tomaszewska E., Muszyński S., Dobrowolski P., Kwiecień M., Klebaniuk R., Szymańczyk S., Tomczyk A., Kowalik S., Milczarek A., Świetlicka I. (2018). The influence of dietary replacement of soybean meal with high-tannin faba beans on gut-bone axis and metabolic response in broiler chickens. Ann. Anim. Sci., 18: 801–824.10.2478/aoas-2018-0019
  47. Wang Z., Cerrate S., Coto C., Yan F., Waldroup P.W (2007). Utilization of distillers dried grains with solubles (DDGS) in broiler diets using a standardized nutrient matrix. Int. J. Poult. Sci., 6: 470–477.10.3923/ijps.2007.470.477
  48. Woyengo T.A., Patterson R., Levesque C.L. (2016). Nutritive value of extruded or multienzyme supplemented cold-pressed soybean cake for pigs. J. Anim. Sci., 94: 5230–5238.10.2527/jas.2016-0822
  49. WPSA (1989). European Tables of Energy Values for Poultry Feedstuffs. Spelderholt Centre Poult. Res., Beekbergen, The Netherlands.
  50. Zawistowski S. (1983). Histological technique: histology and basics of histopathology (in Polish). Wyd. 4. PZWL, Warszawa.
  51. Zhaleh S., Golian A., Mirghelenj S.A., Akhavan A., Akbarian A. (2014). Effects of feeding various levels of full fat soybean extruded at high temperature on performance, serum components and intestinal morphology of broiler chickens. Anim. Prod. Sci., 55: 580–586.10.1071/AN13457
  52. Ziołecki J., Doruchowski W. (1989). Slaughter value evaluation methods (in Polish). COBRD own publishing service, Poznań.
DOI: https://doi.org/10.2478/aoas-2019-0056 | Journal eISSN: 2300-8733 | Journal ISSN: 1642-3402
Language: English
Page range: 1063 - 1081
Submitted on: Dec 17, 2018
Accepted on: Aug 7, 2019
Published on: Oct 30, 2019
Published by: National Research Institute of Animal Production
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2019 Anna Milczarek, Maria Osek, published by National Research Institute of Animal Production
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.