Fuente y nivel de suplementación con selenio en gallina de postura comercial

Autores/as

  • Víctor Rojas Facultad de Ciencias Agropecuarias, Universidad Nacional de Trujillo
  • Miguel Callacná Facultad de Ciencias Agropecuarias, Universidad Nacional de Trujillo

DOI:

https://doi.org/10.17268/agroind.sci.2019.02.08

Resumen

Se evaluó el efecto de la fuente y nivel de suplementación con selenio sobre su concentración y vida de anaquel de huevos de gallinas de postura comercial. Se utilizaron 672 gallinas de 38 semanas de edad, distribuidas en un diseño experimental completamente al azar en cuatro tratamientos: T0 (dieta + 0,4 mg Se.kg-1 con selenito de sodio), T1 (dieta + 0,2 mg Se.kg-1 con ácido 2-hidroxi 4-metilselenobutanoico), T2 (dieta + 0,3 mg Se.kg-1 con levadura enriquecida con selenio) y T3 (dieta + 0,3 mg Se.kg-1 con ácido 2-hidroxi 4-metilselenobutanoico). Diferencias significativas (p > 0,05) entre tratamientos se obtuvieron para peso de huevo, consumo de alimento, conversión alimenticia, vida de anaquel a temperatura de 24 °C y 4 °C, peroxidación lipídica y concentración de selenio en el huevo a 14 y 56 días. Se concluye que la fuente de selenio orgánico ácido 2-hidroxi 4-metilselenobutanoico contribuyó a reducir la oxidación lipídica, mantenimiento de la calidad y al aumento de la concentración del mineral en el huevo. Además, eficiencia económica de S/ 0,013 y 0,024 soles se obtuvo para la fuente de selenio orgánico ácido 2-hidroxi 4-metilselenobutanoico en los tratamientos T1 y T3 en relación al testigo respectivamente.

Biografía del autor/a

Víctor Rojas, Facultad de Ciencias Agropecuarias, Universidad Nacional de Trujillo

Miguel Callacná, Facultad de Ciencias Agropecuarias, Universidad Nacional de Trujillo

Citas

Adisseo. 2014a. Selisseo® - El antioxidante innovador. Información técnica. Disponible en: https://feedsolutions.adisseo.com/es/productos/selisseo/

Adisseo. 2014b. Selisseo® - La 3ª Generación de su fuente de Selenio.

Aljamal, A.A. 2011. The effect of vitamin E, selenomethionine and sodium selenite supplementation in laying hens. Thesis and Dissertations In Anim. Sci, University of Nebraska Lincoln. 131 pp.

Arpášová, H.; Haščík, P.; Kačániová, M.; Gálik, B.; Golian, J.; Mellen; M. 2012. The Effect of Various Forms and Doses of Selenium Supplementation of the Hens Diet on Selected Qualitative Parameters and Freshness of Table Eggs. Animal Science and Biotechnologies 45(1): 11-16.

Attia, Y.A.; Abdalah, A.A.; Zeweil, H.S.; Bovera, F.; Tag El-Din, A.A.; Araft, M.A. 2010. Effect of inorganic or organic selenium supplementation on productive performance, egg quality and some physiological traits of dual-purpose breeding hens. Czech J. Anim. Sci. 55(11): 505–519.

Bobček, B.; Lahučky, R.; Mrazova, J.; Bobček, R.; Novotna, K.; Vašiček, D. 2004: Effects of dietary organic selenium supplementation on selenium content, antioxidative status of muscles and meat quality of pigs. Czech Journal Animal Science 49: 411–417.

Čobanová, K.; Petrovič, V.; Mellen, M.; Arpášová, H.; Grešáková, Ľ.; Faix, Š. 2011. Effects of dietary form of selenium on its distribution in eggs. Biol Trace Elem Res 144: 736–746.

Colavitti, C. 2010. Cómo adquirir una mayor vida de anaquel en huevos. Revista Industria Avícola. Disponible en: https://www.industriaavicola.net/manejo-produccion-y-equipo/como-adquirir-una-mayor-vida-de-anaquel-en-huevos/

Delezie, E.; Rovers, M.; Van der Aa, A.; Ruttens, A.; Wittocx, S.; Segers, L. 2014. Comparing responses to different selenium sources and dosages in laying hens. Poultry Science 93: 3083-3090.

Fernandes, J.I.M.; Murakami, A.E.; Sakamoto, M.I.; Souza, L.M.G.; Malaguido, A.; Martins, E.N. 2008. Effects of organic mineral dietary supplementation on production performance and egg quality of white layers. Brazilian Journal of Poultry Science 10(1): 59-65.

Gajčević, Z.; Kralik, G.; Has-Schon, E.; Pavić, V. 2009. Effects of organic selenium supplemented to layer diet on table egg freshness and selenium content. Ital J Anim Sci. 8: 189-199.

Geraert, P.A. 2014. The benefits gained from new selenium. AllAboutFeed Magazine. Disponible en:http://www.allaboutfeed.net/Nutrition/Feed-Additives/2014/5/The-benefits-gained-from-new-selenium-1519460W/.

Gjorgovska, N.; Filev, K. 2011. Multi-enriched eggs with omega 3 fatty acids, vitamin E and selenium. Archiva Zootechnica 14(2): 28-35.

Gjorgovska, N.; Kiril, F.; Vesna, L.; Tosho, K. 2012. The effect of different levels of selenium in feed on egg production, egg quality and selenium content in yolk. Lucrări Ştiinţifice 57: 270-274.

Hess, J.B.; Cowns, K.M.; Bilgili, S.F. 2003. Selenium nutrition and poultry meat quality. Nutritional Biotechnology in the Feed and Food Industries. Nutritional Biotechnology in the Feed and Food Industries, Lyons, TP and Jaques KA Eds.107-112.

Hy Line International. 2011. Manual de Estándares de Rendimiento. Hy-Line Variedad Brown - Ponedoras Comerciales. Disponible en:https://www.hyline.com/userdocs/pages/BRN_COM_SPN.pdf.

Invernizzi, G.; Agazzi, A.; Ferroni, M.; Rebucci, R.; Fanelli, A.; Baldi, A.; Dell’Orto, V.; Savoini, G. 2013. Effects of inclusion of selenium-enriched yeast in the diet of laying hens on performance, eggshell quality, and selenium tissue deposition. Italian Journal of Animal Science 12(1): 1-8.

Jlali, M.; Briens, M.; Rouffineau, F.; Mercerand, F.; Geraert, P.A.; Mercier, Y. 2013. Effect of 2-hydroxy-4-methylselenobutanoic acid as a dietary selenium supplement to improve the selenium concentration of table eggs. J. Anim. Sci. 91: 1745-1752.

Kralik, G.; Gajčević, Z.; Suchý, P.; Straková, E.; Hanžek, D. 2009. Effects of dietary selenium source and storage on internal quality of eggs. Acta Vet. Brno 78: 219-222.

Leeson, S.; Caston, L.J. 2003. Vitamin enrichment of eggs. J Appl Poult Res. 12: 24-26.

Mellen, M.; Arpášová, H.; Kopecký, J. 2014. Effect of Probiotic Preparation Enriched with Selenium on Qualitative Parameters of Table Eggs. Scientific Papers: Animal Science and Biotechnologies 47(1): 31-38.

Mohiti-Asli, M.; Shariatmadari, F.; Lotfollahian, H.; Mazuji, M.T. 2008. Effects of supplementing layer hen diets with selenium and vitamin E on egg quality, lipid oxidation and fatty acid composition during storage. Can. J. Anim. Sci. 88: 475-483.

Mohiti-Asli, M.; Shariatmadari, F.; Lotfollahian, H. 2010. The influence of dietary vitamin E and selenium on egg production parameters, serum and yolk cholesterol and antibody response of laying hen exposed to high environmental temperature. Arch. Geflügelk. 74(1): 43–50.

Osman, A.M.R.; Abdelwahed, H.M.; Ragab, M.S. 2010. Effects of supplementing laying hens diets with organic selenium on egg production, egg quality, fertility and hatchability. Egypt Poult. Sci. 30: 893-915.

Pan, C.; Huang, K.; Zhao, Y.; Qin, S.; Chen, F.; Hu, Q. 2007. Effect of Selenium Source and Level in Hen's Diet on Tissue Selenium Deposition and Egg Selenium Concentrations. J. Agric. Food Chem. 55(3): 1027-1032.

Pan, C.; Zhao, Y.; Liao, S.F.; Chen, F.; Qin, S.; Wu, X.; Zhou, H.; Huang, K. 2011. Effect of selenium-enriched probiotics on laying performance, egg quality, egg selenium content, and egg glutathione peroxidase activity. J. Agric. Food Chem. 59(21): 11424-11431.

Park, S.W.; Namkung, H.; Ahn, H.J.; Paik, I.K. 2005. Enrichment of vitamins D3, K and iron in eggs of laying hens. Aust J Anim Sci. 18(2): 226-229.

Pavlović, Z.; Miletić, I.; Jokić, Ž.; Šobajić, S. 2009. The effect of dietary selenium source and level on hen production and egg selenium concentration. Biol Trace Elem Res. 131: 263–270.

Payne, R.L.; Lavergne, T.K.; Southern, L.L. 2005. Effect of inorganic versus organic selenium on hen production and egg selenium concentration. Poult. Sci. 84: 232-237.

Rojas, V.V.; Callacna, C.M.; Arnaiz, P.V. 2015. Uso de un aditivo a base de cantaxantina y extracto de achiote en dietas de gallinas de postura y su efecto sobre la coloración de la yema y la vida de anaquel del huevo. Scientia Agropecuaria 6(3): 191-199.

Rovers, M. 2014. A new generation of organic selenium. Dairy Global magazine. 1(2). Disponible en:http://www.allaboutfeed.net/Dairy-Global-XMS/General/2014/9/A-new-generation-of-organic-selenium-1521640W/.

Sparks, N.H.C. 2006. The hen’s egg - is its role in human nutrition changing. World Poult. Sci. J. 62: 308-315.

Skřivan, M.; Simane, J.; Dlouha, G.; Doucha, J. 2006. Effect of dietary sodium selenite, Se-enriched yeast and Se enriched Chlorella on egg Se concentration, physical parameters of eggs and laying hen production. Czech Journal of Animal Science 51: 163-167.

Skřivan, M.; Bubancova, I.; Marounek, M.; Dlouha, G. 2010. Selenium and α-Tocopherol content in eggs produced by hens that were fed diets supplemented with selenomethionine, sodium selenite and vitamin E. Czech J. Anim. Sci. 55(9): 388-397.

Surai, P.F. 2000. Effect of the selenium and vitamin E content of the maternal diet on the antioxidant system of the yolk and the developing chick. Br. Poult. Sci. 41: 235-243.

Surai, P.F. 2006. Selenium in Nutrition and Health. Nottingham University Press, Nottingham, UK. 974 pp.

Utterback, P.L.; Parsons, C.M.; Yoon, I.; Butler, J. 2005. Effect of supplementing selenium yeast in diets of laying hens on egg selenium content. Poultry Science 84: 1900–1901.

Vacchina, V.; Moutet, M.; Yadan, J.C.; De Baene, F.; Kudla, B.; Lobinski, R. 2010. Simultaneous speciation of selenomethione and 2-hydroxy-4-methylselenobutanoic acid by HPLC-ICP MS in biological samples. Journal of Chromatography B Analytical Technologies in the Biomedical and Life Sciences 878: 1178-1180.

Zduńczyk, Z.; Drażbo, A.; Jankowski, J.; Juśkiewicz, J.; Antoszkiewicz, Z.; Troszyńska, A. 2013. The effect of dietary vitamin E and selenium supplements on the fatty acid profile and quality traits of eggs. Archiv Tierzucht. 56(72): 719-732.

Ziaei, N.; Moradi, N.; Esfandiar, E. 2013. The effects of different levels of vitamin-E and organic selenium on performance and immune response of laying hens. African Journal of Biotechnology 12(24): 3884-3890.

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Publicado

2019-12-31

Cómo citar

Rojas, V., & Callacná, M. (2019). Fuente y nivel de suplementación con selenio en gallina de postura comercial. Agroindustrial Science, 9(2), 155-162. https://doi.org/10.17268/agroind.sci.2019.02.08

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Artículos de investigación