Evaluation of the effect of selenite-sodium and seleno-methionine on laying hens' performance and antioxidant properties of eggs

Document Type : Research Paper

Authors

1 Gorgan University of Agricultural Sciences and Natural Resources

2 Biotechnology Agricultural Biotechnology Research Institute of Iran (ABRII),

Abstract

This study was performed to investigate the effect of organic and inorganic selenium supplementation on laying hens' performance, quality traits and peroxidation of egg yolks and whites. The experiment was carried out in a completely randomized design with 300 laying hens (W-36) from 23 to 35 weeks of age with 5 treatments and 6 replications and 10 laying hens in each replication. Experimental treatments include: treatment one or control (basic diet without selenium), The second treatment of 0.5 selenite-sodium (base diet+0.5 mg/kg selenite-sodium), the third treatment selenite-sodium 1 (basic diet+1mg/kg selenite-sodium), the fourth treatment selenium-methionine 0.5 (basal diet + 0.5 mg/kg seleno-methionine) and the fifth treatment was seleno-methionine 1 (basal diet +1 mg/kg seleno-methionine). The results showed that experimental treatments had no significant effect on egg weight, weight mass, production percentage, feed intake, feed conversion ratio and egg yolk and egg white characteristics (P<0.05). Peroxidation of egg yolk and egg white fats in 1 mg/kg seleno-methionine treatment showed the lowest rate compared to other experimental treatments (P<0.05). The results of the present study showed that among the sources of selenium, 1 mg/kg of selenium-methionine more effectively reduced the peroxidation of fats and increased antioxidant activity.

Keywords


  1. اسدی، ف.، شریعتمداری، ف.، کریمی ترشیزی، م، ا. (1390). اثر منابع و سطوح مختلف سلنیوم آلی بر عملکرد مرغ های تخمگذار، کیفیت تخم مرغ و قابلیت غنی سازی تخم مرغ. پژوهش­های علوم دامی ایران. شماره 3. ص 350-344.
  2. پورعباسعلی عمران، ن.، شجاعیان، ک.، جلیلوند، ق .، کاظمی­فرد، م. (1397). تاثیر سطوح مختلف سلنیوم آلی بر عملکرد، ویژگی‌های کیفی تخم و برخی از آنزیم‌های آنتی‌اکسیدانی بلدرچین ژاپنی مولد. نشریه علوم دامی. شماره 118. ص 256-245.
  3. زینلی، ا.، رئیسی، ا.، کرمانشاهی، ح.، فرهنگفر، ه.، ضیائی، ح. (1388) اثر سلنیت سدیم و پودر زردچوبه بر عملکرد، کیفیت لاشه و متابولیت های آنتی اکسیدانی خون جوجه های گوشتی در شرایط تنش گرمایی. مجله علوم دامی. شماره 19: ص 85-69.

 

  1. Attia, Y. A., Abdalah, A. A., Zeweil, H. S., Bovera, F., El-Din, A. A. T., and Araft, M. A. (2010). Efect of inorganic or organic selenium supplementation on productive performance, egg quality and some physiological traits of dual-purpose breeding hens. Czech Journal Animal Science, 55: 505–519.
  2. Beatty, P. W., and Reed, D. J. (1980). Involvement of the cystathionine pathway in the biosynthesis of glutathione by isolated rat hepatocytes. Archives of Biochemistry and Biophysics, 204: 80–87.
  3. Boostani, A., Sadeghi, A. A., Mousavi, S. N., Chamani, M. and Kashan, N. (2015). Effects of organic, inorganic, and nano-Se on growth performance, antioxidant capacity, cellular and humoral immune responses in broiler chickens exposed to oxidative stress. Livestock Science, 178: 330-336.
  4. Botsoglou, N. A., Fletouris, D. J., Papageorgiou, G. E., Vassilopoulos, V. N., Mantis, A. J. and Trakatellis. A. G. (1994). Rapid, sensitive, and specific thiobarbituric acid method for measuring lipid peroxidation in animal tissue, food and feedstuff samples. Journal of Agricultural Food Chemistry, 42: 1931–1937.
  5. Briens, M., Mercier, Y. F., Vacchina, V. and Geraert, P. A. (2013). Comparative study of a new organic selenium source seleno-yeast and mineral selenium sources on muscle selenium enrichment and selenium digestibility in broiler chickens. British Journal of Nutrition, 110: 617–624.
  6. Buckiuniene, V., Alencikiene, G., Miezeliene, A., Raceviciute-Stupeliene, A. and Bliznikas, S. (2018). Effect of sunflower and rapeseed oil, organic and inorganic selenium and vitamin E in the diet on yolk fatty acids profile, malondialdehyde concentration and sensory quality of laying hens’ eggs.Veterinarija IR Zootechnika, 76: 21-28.
  7. Cai, S. J., Wu, C. X., Gong, L. M., song, T., Wu, H. and Zhang, L. Y. (2012). Effects of nanoseleniumon performance, meat quality, immune function, oxidation resistance, and tissue selenium content in broilers. Poultry Science, 91: 2532-2539.
  8. Dvorska, J. E., Yaroshenko, F. A., Surai, P. F. and Sparks, N. H. (2003). Selenium-enriched eggs: Quality evaluation. In: Proceedings of 14th European Symposium of Poultry Nutrition, 14-17 Oct., World’s Poultry Science Association, Lillehammer, Norway, pp. 23–24.
  9. Fasiangova, M. and Borilova, G. (2016). Selenium-enriched eggs as a functional food: a review. Journal of Food Science and Technology, 75: 67-72.
  10. Galobart, J., Barroeta, A. C., Baucells, M. D. and Guardiola. F. (2001). Lipid oxidation in fresh and spray-dried eggs enriched with 30 mega and 60 mega polyunsaturated fatty acids during storage as affected by dietary vitamin E and canthaxanthin supplementation. Poultry Science, 80: 327–337.
  11. Gawel, S., Wardas, M., Niedworok, E. and Wardas, P. (2004). Malondialdehyde (MDA) as a lipid peroxidation marker. WiadomosciLekarskie, 57: 453-455.
  12. Gjorgovska, N., Kiril, F. and Tosho, K. (2012). The effect of diferent levels of selenium in feed on egg production, egg quality and selenium content in yolk. Lucrari ¸ Stiin¸tifice-Seria Zootehnie , 57: 270–274.
  13. Heindl, J., Ledvinka, Z., Tumova, E. and Zita, L. )2010(. The importance, utilization and sources of selenium for poultry: a review. Scientia Agriculturae Bohemica, 41: 55-64.
  14. Invernizzi, G., Agazzi, A., Ferroni M., Rebucci, R., Fanelli, A., Baldi, A., Dell’Orto, V. and 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: 1–9.
  15. Jeong, S. M., Hwang, S. and Seong, R. H. )2016(. Transferrin receptor regulates pancreatic cancer growth by modulating mitochondrial respiration and ROS generation. Biochemical and Biophysical Research Communications, 471: 373-379.
  16. Leeson, S., Namkung, H., Caston, L., Durosoy, S. and 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.
  17. Lukaszewicz, E., Kowalczyk, A. and Jerysz, A. )2011(. The effect of sex and feed supplementation with organic selenium and vitamin E on the growth rate and zoometrical body measurements of oat-fattened White Koluda geese. Turkish Journal of Veterinary Animal Science, 35: 435- 442.
  18. Meng, T, Liu, Y. L., Xie, C, Y., Zhang, B., Huang, Y. Q., Zhang, Y. W., Yao, Y., Huang, R. and Wu, X. (2018). Effects of Different Selenium Sources on Laying Performance, Egg Selenium Concentration, and Antioxidant Capacity in Laying Hens. Biological Trace Element Research, 189: 548-555.
  19. Mohiti-Asli, M., Shariatmadari, F., Lotfollahian, H. and  Mazuji, M.T. (2008). Effects of supplementing layer hen diets with Se and vitamin E on egg quality, lipid oxidation and fatty acid composition during storage. Canadian Journal of Animal Science. 88: 475-483.
  1. Moslehi, H. Navidshad, B. Sharifi, S.D. and Aghjegheshlagh, F.M. (2019). Effects of selenium and flaxseed on selenium content and antioxidant properties of eggs and immune response in hens. South African Journal of Animal Science. 49: 770-780.
  1. Natasha, G., Filev, K., Levkov, V. and Kostadinov, T. (2012). The Effect of different levels of selenium in feed on egg production, egg quality and selenium content in yolk. University of Agricultural Sciences and Veterinary Medicine Iasi,  75: 270-274.
  2. Pan, C. L., Zhao, Y. X., Liao, S. F. F., Chen, F., Qin, S. Y., Wu, X. S., Zhou, H. and Huang, K. H. (2011). Effect of Se-Enriched Probiotics on Laying Performance, Egg Quality, Egg Se Content, and Egg Glutathione Peroxidase Activity. Journal of Agricultural and Food Chemistry, 59: 11424-11431.
  3. Pappas, A.C., Acamovic, T., Sparks, N.H.C., Surai, P.F. and Mcdevitt, R.M. (2005). Effects of Supplementing Broiler Breeder Diets with Organic Se and Polyunsaturated Fatty Acids on Egg Quality During Storage. Poultry Science. 84: 865-874.
  4. Payne, R. L., Lavergne, T. K. and Southern, L. L. ( 2005). Effect of inorganic versus organic selenium on hen production and egg selenium concentration. Poultry Science, 84: 232-237.
  5. Rajashree, K., Muthukumar, T. and Karthikeyan, N. (2014). Comparative study of the effects of organic Se on hen performance and productivity of broiler breeders. British Poultry Science, 55: 367-374.
  6. Reis, R. N., Vieira, S. L., Nascimento, P. C., Pena, J. E., Barros, R., and Torres, C.A. (2009). Selenium contents of eggs from broiler breeders supplemented with sodium selenite or zinc-l-selenium-methionine. Journal Apply Poultry research, 18: 151–157.
  7. Salama, R. and Zhou, J. (2016).Vacuolated lymphocytes signifying a metabolic disorder in an infant with developmental delay. Clinical case reports: 4: 99–100.
  8. Schrauzer, G. N. )2000(. Selenomethionine: a review of its nutritional significance, metabolism and toxicity. Journal of Nutrition, 130: 1653–1656.
  9. Skrivan, M., Simane, J., Dlouha, G. and Doucha, J. )2006(. Effect of dietary sodium selenite, Se-enriched yeast and Se-enriched chlorella on egg Se concentration, physical parameters on eggs and laying hens production. Czech Journal Animal Science, 51: 163-167.
  10. Skrivan, M., Skrivanova, V., Dlouha, G., Branyikova, I., Zachleder, V. and Vitova, M. )2010(. The use of selenium-enriched alga Scenedesmus quadricauda in a chicken diet. Czech Journal of Animal Science, 55: 565–571.
  11. Skrivan, M., Marounek, M., Englmaierova, M. and Skrivanova, V. (2013). Influence of dietary vitamin C and selenium, alone and in combination, on the performance of laying hens and quality of eggs. Czech Journal of Animal Sci­ence, 58: 91–97.
  12. Surai, P. F. and Fisinin, V. I. (2014). Selenium in poultry breeder nutrition: An update. Animal Feed Science and Technology, 191: 1–15.
  13. Surai, P. F. and Fisinin, V. I. (2016). Vitagenes in poultry production. Part 2. Nutritional and internal stresses. Worlds. Poultry Science. 84: 55-67.
  14. Wang, B., Li, L., Chi, CF., Ma, J. H., Luo, H. Y. and Xu, Y. F. (2013). Purification and characterization of a novel antioxidant peptide derived from blue mussel Mytilusedulis protein hydrolysate. food chemistry, 138: 1713-1719.
  15. Wang, Z. G., Pan, X. J., Zhang, W. Q. and Peng, Z. Q. )2010(. Methionine and selenium yeast supplementation of the maternal diets affects antioxidant activity of breeding eggs. Poultry Science, 89: 931-937.
  16. Wu, K., Su, X., Li, G. and Zhang, N. )2016(. Antioxidant carbocysteine treatment in obstructive sleep apnea syndrome: A randomized clinical trial. PLoS One,11(2), e 0148519.
  17. Yang, Y.,  Nie, J., Tan, B.E., Dong, X.H. and Chi, S.Y.( 2016). Effects of selenium source and selenium level on growth performance, liver and serum antioxidant indices and selenium content in tissues of juvenile cobia (Rachycentron canadum). Chin Journal of Animal Nutrition, 27: 3699–3707.