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Comparison of the physicochemical and sensory characteristics of Rhode Island Red (R-11) capons and cockerels Cover

Comparison of the physicochemical and sensory characteristics of Rhode Island Red (R-11) capons and cockerels

Open Access
|Aug 2017

References

  1. Adamski M., Kuźniacka J., Banaszak M., Wegner M. (2016 a). The analysis of meat traits of Sussex cockerels and capons (S-11) at different ages. Poultry Sci., 95: 125-132.10.3382/ps/pev30826614680
  2. Adamski M., Kuźniacka J., Banaszak M. (2016 b). The effects of strain and caponisation on carcass and meat traits of cockerels aged twenty weeks. Ann. Anim. Sci., 16: 1227-1239.10.1515/aoas-2016-0049
  3. Amorim A., Rodrigues S., Pereira E., Valentim R.A. Teixeira A. (2016). Effect of caponisation on physicochemical and sensory characteristics of chickens. Animal, 10: 978-986.
  4. Augustyńska- Prejsnar A., Sokołowicz Z. (2014). Factors affecting the sensory quality of broiler chicken meat (in Polish). Wiad. Zoot., 2: 108-116.
  5. Baryłko - Pikielna N., Matuszewska I. (2009). Sensory testing of food (in Polish). Wyd. Nauk. PTTZ: 3-367.
  6. Calik J. (2014 a). Capon production - breeding stock, rooster castration, rearing methods, and meat quality. Ann. Anim. Sci., 14: 769-777.10.2478/aoas-2014-0050
  7. Calik J. (2014 b). Effect of length of productive life of Rhode Island Red (R-11) hens on their performance and egg quality. Acta Sci. Pol., Zootechnika, 13, 1: 39-50.
  8. Calik J., Połtowicz K., Świątkiewicz S., Krawczyk J., Nowak J. (2015). Effect of caponization on meat quality of Greenleg Partridge cockerels. Ann. Anim. Sci., 15: 541-553.
  9. Cason J.A., Fletcher D.L., Burke W.H. (1987). Influence of caponization on skin pigmentation of male broilers. Poultry Sci., 66: 433-438.
  10. Castellini C., Berri C., Le Bihan- Duval E.. Martino G. (2008). Qualitative attributes and consumer perception of organic and free-range poultry meat. World’s Poultry Sci. J., 64: 50-512.
  11. Chen K.L., Chi W.T., Chiou P.W.S. (2005). Caponization and testosterone implantation effects on blood lipid and lipoprotein profile in male chickens. Poultry Sci., 84: 547-552.
  12. Chen K.L., Hsieh T.Y., Chiou P.W.S. (2006). Caponization effects on growth performance and lipid metabolism in Taiwan country chicken cockerels. Asian-Austral. J. Anim. Sci., 19: 438-443.
  13. Chen K.L., Chen T.T., Lin K.J., Chiou P.W.S. (2007). The effect of caponization age on muscle characteristics in male chicken. Asian-Austral. J. Anim. Sci., 20: 1684-1688.
  14. CIE (2007). Draft Standard 014-4.3/E: Colorimetry - Part 4: CIE 1976 L*a*b* colour space. Vienna, Austria: 8p.
  15. Commission Regulation (EC) No 543/2008 of 16 June 2008 laying down detailed rules for the application of Council Regulation (EC) No 1234/2007 as regards the marketing standards for poultry meat.
  16. Diaz O., Rodríguez L., Torres A., Cobos A. (2010). Chemical composition and physicochemical properties of meat from capons as affected by breed and age. Span. J. Agric. Res., 8: 91-99.
  17. Diaz O., Rodríguez L., Torres A., Cobos A. (2012). Fatty acid composition of the meat from Mos breed and commercial strain slaughtered at different ages. Grasas Aceites, 63: 296-302.
  18. Fanatico A.C. Pillai P.B., Cavitt L.C., Emmert J.L, Meullenet J.F., Owens C.M. (2006). Evaluation of slower-growing broiler genotypes grown with and without outdoor access: sensory attributes. Poultry Sci., 85: 337-343.
  19. Flether D.L. (2002). Poultry meat quality. World’s Poultry Sci. J., 58: 131-145.
  20. Folch J., Lees M., Sloane - Stanley G.H. (1957). Asimple method for the isolation and purification of total lipids from animal tissues. J. Biol. Chem., 226: 497-509
  21. Franco D., Pateiro M., Rois D., Vázquez J.A., Lorenzo J.M. (2016). Effects of caponization on growth performance, carcass and meat quality of Mos breed capons reared in free-range production system. Ann. Anim. Sci., 16: 909-929.
  22. Gąsior R., Wojtycza K. (2016). Sense of smell and volatile aroma compounds and their role in the evaluation of the quality of products of animal origin -areview. Ann. Anim. Sci., 16: 3-31.
  23. Grau R., Hamm R. (1953). Eine einfache Methode zur Bestimmung der Wasserbindung im Muskel. Naturwiss, 40: 29-30.
  24. Hsu J.C., Lin C.Y. (2003). Influence of caponization on the carcass characteristics in Taiwan country chicken cockerels. Asian-Austral. J. Anim. Sci., 16: 575-580.
  25. Jacob J., Mather F.B. (2000). Capons. Factsheet PS-54, Department of Animal Sciences, Florida Cooperative Extension Service, Institute of Food and Agricultural Sciences, University of Florida, Gainesville. www.edis.ufl.edu.
  26. Kwiecień M., Kasperek K., Grela E., Jeżewska- Witkowska G. (2015). Effect of caponisation on the production performance, slaughter yield and fatty acid profile of muscles of Greenleg Partridge cocks. J. Food Sci. Technol., 52: 7227-7235.
  27. Lin C.Y., Hsu J.C. (2002). Effect of surgical caponization on growth performance, fiber diameter and some physical properties of muscles in Taiwan country chicken cockerels. Asian-Aust. J. Anim. Sci., 15: 401-405.
  28. Lin C.Y., Hsu J.C. (2013). Comparison of skin and muscle color, muscle composition and sensory panel score of capon, slip and intact birds in Taiwan country chicken cockerels. J. Taiwan Lives. Res., 46: 187-194.
  29. Lin C.Y., Hsu J.C., Wan T.C. (2012). Effect of age and caponization on blood parameters and bone development of male native chickens in Taiwan. Asian-Austral. J. Anim. Sci., 25: 994-1002.
  30. Mahmud M.A., Shaba P., Gana J., Yisa H.Y., Ndagimba R. (2013). Effects of surgical caponisation on growth, carcass and some haematological parameters in cockerel chickens. Sokoto J. Vet. Sci., 11: 57-62.
  31. Majcher M.A., Kaczmarek A., Klensporf- Pawlik D., Pikul J., Jeleń H.H. (2015). SPME-MS-based electronic nose asatool for determination of authenticity of PDOcheese, Oscypek. Food Anal. Methods, 8: 2211-2217.
  32. Mast M.G., Jordan H.C., Macneil J.H. (1981). The effect of partial and complete caponization on growth rate, yield, and selected physical and sensory attributes of cockerels. Poultry Sci., 60: 1827-1833.
  33. Muriel Duran A. (2004). The effect of caponization on production indices and carcass and meat characteristic in free-range Extremena Azul chickens. Span. J. Agric. Res., 2: 211-216.
  34. Muszyński S., Kwiecień M., Tomaszewska E., Świetlicka I., Dobrowolski P., Kasperek K., Jeżewska- Witkowska G. (2016). Effect of caponization on performance and quality characteristics of long bones in Polbar chickens. Poultry Sci., 96: 491-500.
  35. Pierce K.M., Hoggard J.C., Hope J.L., Rainey P.M., Hoofnagle A.N., Jack R.M., Wright B.W., Synovec R.E. (2006). Fisher ratio method applied to third-order separation data to identify significant chemical components of metabolite extracts. Anal. Chem., 78: 5068-5075.
  36. Puchała M., Krawczyk J., Calik J. (2014). Influence of origin of laying hens on the quality of their carcasses and meat after the first laying period. Ann. Anim. Sci., 14: 685-696.
  37. Rachman M.M., Islam M.A., Ali M.Y., Khondaker M.E.A., Hossain M.M. (2004). Effect of caponization on body weight, hematological traits and blood cholesterol concentration of Nara chicken. Int. J. Poultry Sci., 3: 284-286.
  38. Rikimaru K., Shiji O., Komastu M., Ishizuka J. (2009). Effects of caponization on meat quality of Hinai-jidori chicken. Int. J. Poultry Sci., 46: 345-350.
  39. Rikimaru K., Takahashi H., Nichlos M.A. (2011). An efficient method of early caponization in slow-growing meat-type chickens. Poultry Sci., 90: 1852-1857.
  40. Shao Y., Wu C., Li J., Zhao C. (2009). The effect of different caponization age on growth performance and blood parameters in male Tibetan chicken. Asian-Austral. J. Anim. Sci., 4: 228-236.
  41. Sinanoglou V.J., Mantis F., Miniadis - Meimaroglou S., Symeon G.K., Bizelis I.A. (2011). Effects of caponisation on lipid and fatty acid composition of intramuscular and abdominal fat of medium-growth broilers. Brit. Poultry Sci., 52: 310-317.
  42. Sirri F., Bianchi M., Petracci M., Meluzzi A. (2009). Influence of partial and complete caponization on chicken meat quality. Poultry Sci., 88: 1466-1473.
  43. Sokołowicz Z., Krawczyk J., Świątkiewicz S. (2016). Quality of poultry meat from native chicken breeds -areview. Ann. Anim. Sci., 16: 347-368.
  44. Statgraphics® - Statpoint Technologies, Inc.,USA.
  45. Symeon G.K., Mantis F., Bizelis I., Kominakis A., Rogdakis E. (2010). Effects of caponization on growth performance, carcass composition, and meat quality of medium growth broiler. Poultry Sci., 89: 1481-1489.
  46. Tor M., Estany J., Villalba D., Molina E., Cubilò M.D. (2002). Comparison of carcass composition by parts and tissues between cocks and capons. Anim. Res., 51: 421-443.
  47. Tor M., Estany J., Francesch D.A., Cubilò M.D. (2005). Comparison of fatty acid profiles of edible meat, adipose tissues and muscles between cocks and capons. Anim. Res., 54: 413-424.
  48. Volk M., Malenšek J., Prevolnik M., Škrlep M., Šegula B. Čandek- Potokar M., Bavec M. (2011). Differences in carcass and meat quality between organically reared cocks and capons. Agric. Conspec. Sci., 76: 153-155.
  49. World Watch List for Domestic Animal Diversity, 2000 - 3rd edition FAO/UNEP, Roma.
  50. Zdanowska- Sąsiadek Ż., Michalczuk M., Marcinkowska - Lesiak M., Damaziak K. (2013). Factors determining the sensory quality of poultry meat (in Polish). Bromatologia i Chemia Toksykologiczna, XLVI 3: 344-353.
  51. Ziołecki J., Doruchowski W. (1989). Evaluation methods of slaughter value (in Polish). Wyd. COBRD, Poznań, Polska, pp. 1-22.
DOI: https://doi.org/10.1515/aoas-2017-0002 | Journal eISSN: 2300-8733 | Journal ISSN: 1642-3402
Language: English
Page range: 903 - 917
Submitted on: Jan 5, 2017
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Accepted on: Mar 22, 2017
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Published on: Aug 1, 2017
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open

© 2017 Jolanta Calik, Józefa Krawczyk, Sylwester Świątkiewicz, Robert Gąsior, Krzysztof Wojtycza, Katarzyna Połtowicz, Joanna Obrzut, Michał Puchała, published by National Research Institute of Animal Production
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.