Czech J. Anim. Sci., 2010, 55(11):505-519 | DOI: 10.17221/1715-CJAS
Effect of inorganic or organic selenium supplementation on productive performance, egg quality and some physiological traits of dual-purpose breeding hens
- 1 Department of Animal and Poultry Production, Faculty of Agriculture, Damanhour University, Egypt
- 2 Department of Poultry Nutrition, Animal Production Research Institute, ARC, Ministry of Agriculture and Land Reclamation, Egypt
- 3 Department of Animal and Fish Production, Faculty of Agriculture-Saba Basha, Alexandria University, Egypt
- 4 Department of Animal Science and Food Conrol, Faculty of Veterinary Medicine, University of Napoli Federico II, Italy
One hundred and twenty (100♀ + 20♂) 30-weeks-old dual-purpose breeding hens of Gimmizah strain were housed in individual cages in a semi-open house. Birds were distributed randomly into five treatments of 20♀ + 4♂. The 1st treatment was fed a control (unsupplemented) diet (17.5% CP and 11.4 MJ per kg diet) containing 0.10 mg Se/kg (low level). The 2nd, 3rd, 4th and 5th treatments were fed the control diet supplemented with 0.15 and 0.30 mg Se/kg from inorganic (sodium selenite) and organic (selenomethionine, as Se-yeast Selplex® Alltech, Nicholasville, USA) sources, respectively. The total concentration of Se in experimental diets was 0.25 (medium level) and 0.40 ppm (high level). Feed and water were provided ad libitum throughout the experimental period (30-50 weeks of age). Different Se levels of the organic and inorganic form and their interaction did not significantly (P > 0.05) affect egg production percentage, and most of egg quality traits. Egg weight and egg mass significantly (P < 0.002) increased and the feed conversion ratio (FCR) significantly (P < 0.04) improved due to Se supplementation compared with hens fed the control diet. Piped embryos and spleen percentage significantly (P < 0.05) decreased due to Se supplementation. In addition, the level of organic and inorganic Se and their interaction significantly (P < 0.0001) decreased the plasma cholesterol concentration. Tibia Ca and P percentages and yolk selenium concentration significantly (P < 0.03; P < 0.0001 and P < 0.0001, respectively) increased due to Se supplementation and the greatest increase was recorded by a group fed diet with the high level (0.40) of organic Se. The duodenal and intestinal mucosa of the ileum was negatively affected by the high level of inorganic Se while chickens fed the organic form showed less toxic effects in hepatic and splenic tissues than those receiving the inorganic form. In conclusion, the organic and inorganic Se supplementation at 0.15 and 0.30 mg/kg diet, which corresponded to a dietary level of 0.25 and 0.40 mg/kg diet, improved the productive and reproductive performance of Gimmizah breeding hens. A decrease in plasma total cholesterol and an improvement in the bone mineralization were observed. The level of 0.25 mg/kg diet of organic Se was adequate to enrich eggs, which may be recommended for practical application and which would improve the consumer health benefit.
Keywords: selenium; egg production; fertility; hatchability; egg quality
Published: November 30, 2010 Show citation
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References
- Abaza M. (2002): Immune system and some physiological aspects in Japanese quail affected by antioxidants. Egyptian Poultry Science Journal, 22, 259-276.
- Abd-El-Latif F.S.A., El-Ghamry A.A., El-yamany A.T. (2004): Effect of using zinc, selenium and vitamin E supplemen-tation on performance and metabolic responses of growing Japanese quail fed diets contaminated with ochratoxin. Egyptian Poultry Science Journal, 24, 447-463.
- Association of Official Analytical Chemists (1995): Official Methods of Analysis. 16th ed. AOAC, Arlington, USA.
- Attia Y.A., Burke W.H., Yamani K.A., Jensen L.S. (1995): Energy allotments and performance of broiler breeders. 2- Females. Poultry Science, 74, 261-270.
Go to original source...
Go to PubMed...
- Attia Y.A., Abd-El-Hamid A.E., Abd El-Ghany F.A., Habiba H.I. (2006): Effect of oil source and antioxidant supplementation on growth performance and meat quality of Japanese quail males. In: Proceeding of XII. European Poultry Conference. verona, Italy, 10-14 September. Abstract: Wolds Poultry Journal, 62, 405.
- Bancroft J.D., Stevens A. (1990): Theory and Practice of Histological Technique. 3rd ed. New York, USA.
- Black C.A. (1982): Method of soil analysis. Soil Science of America, Inc. Published Matison Wisconsin, USA.
- Bobček B., Lahučký R., Mrázová J., Bobček R., Novotná 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.
Go to original source...
- Carter T.C. (1975): The hen's egg. Estimation of shell superficial area and egg volume using measurements of fresh egg weight and shell length and breadth alone or in combination. British Poultry Science, 16, 541-543.
Go to original source...
- Cottenie A., Verloo M., Kaikan L., Vlghe G., Comerlynch R. (1982): Chemical analysis of plants and soils. Lab, Anal Agrochem. State University, Ghent, Belgium.
- El-Sebei A. (2000): Influence of selenium and vitamin E as antioxidants on immune system and some physiological aspects in broiler chickens. Egyptian Poultry Science Journal, 20, 1065-1082.
- FAO/WHO (2002): Selenium. In: Human Vitamin and Mineral Requirements. Report of a Joint FAO/WHO Expert Consulation. FAO, Rome, Italy, 235-255.
- Folch J., Lees M., Sloane-Slanley G.S. (1957): A simple method for the isolation and purification of total lipids from animal tissues. Journal of Biological Chemistry, 226, 497-509.
Go to original source...
- Funk E.M. (1948): The relation of yolk index determined in natural position to the yolk index as determined after separating the yolk from the albumen. Poultry Science, 27, 367.
Go to original source...
- Gajčević Z., Kralik G., Has-Schön Elizabeta, Pavić V. (2009): Effects of organic selenium supplemented to layer diet on table egg freshness and selenium content. Italian Journal Animal Science 8, 189-199.
Go to original source...
- Ganpule S.P., Manjunatha B.P. (2003): Antioxidant nutrition starts with breeders. Feed Mix 11, 14-16.
- Hallberg L., Rossander-Hulthen L. (1993): Factors influencing the bioavailability of iron in man. In: Schlemmer U. (ed.): Bioavailability '93-Nutritional, Chemical and Food Processing Implications of Nutrient Availability. Ettlingen, Germany, 23-32.
- Haugh R.R. (1937): The haugh units for measuring egg quality. US Egg and Poultry Magazine, 43, 552-555.
- Jiakui L., Xiaolong W. (2004): Effect of dietary organic versus inorganic selenium in laying hens on the productivity, selenium distribution in egg and selenium content in blood, liver and kidney. Journal of Trace Elements in Medicine and Biology, 18, 65-68.
Go to original source...
Go to PubMed...
- Konjufca V.H., Pesti G.M., Bakalli R.I. (1997): Modulation of cholesterol levels in broiler meat by dietary garlic and copper. Poultry Science, 76, 1264-1274.
Go to original source...
Go to PubMed...
- Kucharzewski M., Braziewicz J., Majewska U., Gozdz S. (2003): Copper, Zinc and Selenium in whole blood and thyroid tissue of people with various thyroid diseases. Biological Trace Element Research, 93, 9-18.
Go to original source...
Go to PubMed...
- Leeson S., Namkung H., Caston L., Durosoy S., Schlegel P. (2008): Comparison of selenium levels and sources and dietary fat quality in diets for broiler breeders and layer hens. Poultry Science, 87, 2605-2612.
Go to original source...
Go to PubMed...
- Ljubic B., Milinkovic-Tur S., Pirsljin J., Zdelar-tuk M., Filipovic N. (2006): Effect of organic selenium food supplementation and fasting on adipose tissue lipid concentration and lipoprotein lipase activity in broiler chickens. In: Proceeding of European Poultry Conference. Verona, Italy.
- NCR (1994): National Research Council. Nutrient requirements of poultry. 9th ed. National Academy Press. Washington, USA.
- Paton N.D., Cantor A.H., Pescatore A.J., Ford M.J., Smith C.A. (2002): The effect of dietary selenium source and level on the uptake of selenium by developing chick embryos. Poultry Science, 81, 1548-1554.
Go to original source...
Go to PubMed...
- Payne R.L, Lavergne T.K., Southern L.L. (2005): Effect of inorganic versus organic selenium on hen production and egg selenium concentration. Poultry Science, 84, 232-237.
Go to original source...
Go to PubMed...
- Ramanoff A.I., Ramanoff A.J. (1949): The Avian Egg. John Wiley and Sons, Inc. New York, USA.
- SAS Institute (1990): SAS/STAT User's Guide: Statistics. Version 6, Cary, NC, USA.
- Schutze N., Fritsche J., Ebert-Dumig R., Schneider D., Kohrle J., Andreesen R., Kreutz M., Jkob F. (1999): The selenoprotein thioredoxin reductase is expressed in peripheral blood monocytes and THP1 human myeloid leukemia cells-regulation by 1.25-dihydroxyvitamin D3 and selenite. Biofactors, 10, 329-338.
Go to original source...
Go to PubMed...
- Ševčíková S., Skřivan M., Dlouhá G., Koucký M. (2006): The effect of selenium source on the performance and meat quality of broiler chickens. Czech Journal of Animal Science, 51, 449-457.
Go to original source...
- Skřivan M., Simane J., Dlouhá G., Doucha J. (2006): Effect of dietary sodium selenite, Se-enriched yeast and Seenriched Chlorella on egg Se concentration, physical parameters of eggs and laying hen production. Czech Journal of Animal Science, 51, 163-167.
Go to original source...
- Surai P.F. (2000): Effect of selenium and vitamin E content of the maternal diet on the antioxidant system of the yolk and the developing chick. British Poultry Science, 41, 235-243.
Go to original source...
Go to PubMed...
- Surai P.F. (2006): Selenium in Nutrition and health. Nottingham University Press, Nottingham, UK.
- Utterback P.L., Parasons C.M., Yoon I., Butler J. (2005): Effect of supplementing selenium yeast in diets of laying hens on egg selenium content. Poultry Science, 84, 1899-1901.
Go to original source...
Go to PubMed...
- Yaroshenko F.A., Dvorska J.E., Surai P.F., Sparks N.H.C. (2003): Selenium-enriched eggs as a source of selenium for human consumption. Applied Biotechnology, Food Science and Policy, 1, 13-23.
- Zachara B.A., Pawluk H., Bloch-Boguslawska E., Sliwka K.M., Korenkiewicz J., Skok Z., Ryc K. (2001): Tissue level, distribution, and total body selenium content in healthy and diseased humans in Poland. Archives of Environmental Health, 56,461-466.
Go to original source...
Go to PubMed...
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