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Concentrates Made from Legume Seeds (Lupinus Angustifolius, Lupinus Luteus and Pisum Sativum) and Rapeseed Meal as Protein Sources in Laying Hen Diets Cover

Concentrates Made from Legume Seeds (Lupinus Angustifolius, Lupinus Luteus and Pisum Sativum) and Rapeseed Meal as Protein Sources in Laying Hen Diets

Open Access
|Mar 2015

References

  1. AO AC (2007). Official Methods of Analysis of the Association Official Analytical Chemists. 18th Edition. Arlington USA.
  2. Buckeridge M.S., Pessoa dos Santos H., Tine M.A.S. (2000). Mobilisation of storage cell wall polysaccharides in seeds. Plant Physiol. Bioch., 23: 141-156.
  3. Castanon J.I.R., Perez-Lanzac J. (1990). Substitution of fixed amounts of soybean meal for field beans (Vida faba), sweet lupins (Lupinus a I bus), cull peas (Pisum sativum) and vetches (Vicia sativa) in diets for high performance laying Leghorn hens. Brit. Poultry Sei., 31: 173-180.
  4. Diaz D., Morlacchini M., Masoero F., Moschini M., Fuschoni G., Gianfranco P. (2005). 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. Sei., 5: 43-53.
  5. Duranti M. (2006). Grain legume proteins and nutraceutical properties. Fitoterapia, 77: 67-82.
  6. Erdemouglu N.Ozkan S. (2007). Alkaloid profile and antimicrobial activity of Lupinus angustifolius L. alkaloid extract. Phytochem. Rev, 6: 197-201.
  7. Fru-Nji F., Niess E., Pfeffer E. (2007). Effect of graded replacement of soybean meal by faba beans (Vicia faba L.) or field peas (Pisum sativum L.) m rations for laying hens on egg production and quality. J. Poult. Sei., 44: 34^41.
  8. Guillamon E., Pedrosa M.M., BurbanoC., CuadradoC., de Cortes Sanchez M., Muzquiz M. (2008). The trypsin inhibitors present in seed of different grain legume species and cultivar. Food Chem., 107: 68-74.
  9. Hammershoj M., Steenfeldt S. (2005). Effects of blue lupin (Lupinus angustifolius) in organic layer diets and supplementation with foraging material on egg production and some egg quality parameters. Poultry Sei., 84: 723-733.
  10. Hughes R.J., Kocher A. (1998). Nutritive value of lupins for layers. Proc. Australian Poultry Science Symposium, Sydney, University of Sydney, 10: 140-143.
  11. Igbasan FA., Guenter W. (1997). The influence of micronization. dehulling and enzyme supplementation on the nutritional value of peas for laying hens. Poultry Sei., 76: 331-337.
  12. Jarnroz D. Kubizna J. (2008). Harmful substances in legume seeds - their negative and beneficial properties. Pol. J. Vet. Sei., 11: 389^404.
  13. Jul L B., Flengmark P. Gylling M., ltenov K. (2003). Lupin seed (Lupinus albus and Lupinus luteaus) as a protein source for fermentation use. Ind. Crop. Prod., 18: 199-121.
  14. Lampart-Szczapa E.,Korczak J.,Nogala-Kalucka M., Zawirska- Wojtasiak R. (2003). Antioxidant properties of lupin seed products. Food Chem. 83: 279-285.
  15. Laudadio V.,Tufarelli V. (2011). Influence of substituting dietary soybean meal for dehulled- micronized lupin (Lupinus albus cv. Multitalia) on early phase laying hens production and egg quality. Liv. Sei., 140: 184-188.
  16. Laudadio V., Tufarelli V. (2012). Effect of treated field pea (Pisum sativum L. cv Spirale) as substitute for soybean extracted meal in a wheat middlings-based diet on egg production and quality of early laying brown hens. Arch. Geflugelkd. 76: 1-5.
  17. Martinez-Villaluenga C., Frias J., Vidal-Valverde C. (2006). Functional lupin seeds (Lupinus albus L. and Lupinus luteus L.) after extraction of a-galactosides. Food Chem., 98: 291-299.
  18. McNeill L., Bernard K., Macleod M. J. (2004). Food intake, growth rate, food conversion and food choice in broilers fed on diets high in rapeseed meal and pea meal with observation on sensory evaluation of the resulting poultry meat. Brit. Poultry Sei., 45: 519-523.
  19. Mieczkowska A., Jansmann A.J.M., Kwakkel R.P, Smulikowska S. (2004). Effect of dehulling and a-galactosidase supplement on the ileal digestibility of yellow lupin based diets in broiler chickens and adult roosters. J. Anim. Feed Sei., 14: 297-304.
  20. Mikulski D., Jankowski J., Zdunczyk Z., Juskiewicz J., Slominski B.A. (2012). The effect of different dietary levels of rapeseed meal on growth performance, carcass traits, and meat quality in turkeys. Poultry Sei., 91: 215-22310.3382/ps.2011-0158722184447
  21. Mosenthin R. (2001). Digestion resistant oligosaccharides in swine nutrition (in Poland). Prz. Hod., 2: 2-6.
  22. Nalle C.L., Ravindran V. Ravindran G. (2011). Nutritional value of narrow-leafed lupin (Lupinus angustifolius) for broilers. Brit. Poultry Sei., 52: 775-781.
  23. Orda J., Jamroz D., WiliczkiewiczA., Wertelecki T., Skorupinska J. Broz J. (2006). Effects of increased dietary inclusion of yellow lupins and enzyme supplementation on performance, ileal digestibility of nutrients and microbial status of large intestine in broiler chickens. Arch. GefUigelk., 70: 14-21.
  24. Perez-Maldonado R.A., M a n n i o n PF., F a r r e lD.J. (1999). Optimum inclusion of field peas, faba beans, chick peas and sweet lupins in poultry diets. 1. Chemical composition and layer experiments. Brit. Poultry Sei., 40: 667-673.
  25. Petterson D.S., Mackintosh J.B. (1994). The chemical composition of lupin seed grown in Australia. Proc. First Australian Lupin Technical Symp., Perth, pp. 38^48.
  26. PN-R-64784:1994 Determination of the sugars content.
  27. Rutkowski A., Kaczmarek S., Szczyrkowska A., Jözefiak D. (2012). The effect of particle size of full-fat rapeseed and of multi-carbohydrase enzyme supplementation on nutrient digestibility and performance in broilers. J. Anim. Feed Sei., 21: 324-333.
  28. Sandberg A.S. (2002). Bioavailability of minerals in legumes. Brit. J. Nutr., 88: Sup. 3: 281-285.
  29. Smulikowska S., Rutkowski A. (2005). Editors. Recommended Allowances and Nutritive Value of Feedstuff's - Poultry Feeding Standards (in Polish). 5th Edition, The Kielanowski Institute of Animal Physiology and Nutrition, Jablonna (Poland).
  30. Sujak A.,Kollarz A., Strobel W. (2006). Compositional and nutritional evaluation of several lupin seeds. Food Chem., 98: 771-719.
  31. Swiatkiewicz S., Arczewska - Wlosek A. (2011). Prospects for the use of genetically modified crops with improved nutritional properties as feed materials in poultry nutrition. World. Poultry Sei. J., 67:631-642.
  32. Viveros A., Centeno C., Arija I. Brenes A. (2007). Cholesterol-lowering effects of dietary lupin (.Lupinus albus var Multolupa) in chicken diets. Poultry Sei., 86: 2631-2638.
  33. Wasilewko J., Buraczewska L. (1999). Chemical composition including content of amino acids, minerals and alkaloids in seeds of three lupin species cultivated in Poland. J. Anim. Feed Sei., 8: 1-12.
  34. Zalewski K., Lahuta L B., Horbowicz M. (2001). The effect of soil drought on the composition of carbohydrates in yellow lupine seeds and triticale kernels. Acta Physiol. Plant., 23: 73-78.
  35. Zdunczyk Z., Godycka I.Amarowicz R. (1996). Chemical composition and content of antinutritional factors in Polish cultivars of peas. Plant Food Hum. Nutr., 50: 37-45.
  36. Zdunczyk Z., Juskiewicz J., Frejnagel S., Gulewicz K. (1998). Influence of alkaloids and oligosaccharides from white lupin seeds on utilization of diets by rats and absorption of nutrients in the small intestine. Anim. Feed Sei. Technol., 72: 143-154.
DOI: https://doi.org/10.2478/aoas-2014-0061 | Journal eISSN: 2300-8733 | Journal ISSN: 1642-3402
Language: English
Page range: 129 - 142
Submitted on: Jan 30, 2014
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Accepted on: Jul 15, 2014
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Published on: Mar 3, 2015
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open

© 2015 Andrzej Rutkowski, Sebastian A. Kaczmarek, Marcin Hejdysz, Sebastian Nowaczewski, Dorota Jamroz, published by National Research Institute of Animal Production
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.