
Effect of increased energy level with dietary mixed soy-oil or soybean seeds as roasted or extruded on performance and oil availability in growing Holstein male calves | ||
علوم دامی | ||
Article 1, Volume 31, Issue 121, March 2019, Pages 3-14 PDF (1.4 M) | ||
Document Type: Research Paper | ||
DOI: 10.22092/asj.2018.115967.1552 | ||
Authors | ||
Alireza Cheraghi-Kamalan1; Mehdi Kazemi-Bonchenari* 2; majid kalantar3; Mehdi Mirzaei4 | ||
1Department of animal science, Faculty of agriculture and natural resources, Arak University | ||
2Department of Animal Science, Arak University | ||
3scientific board member of agricultural research center of Qom, Qom, Iran | ||
4Department of Animal Science, Faculty of Agriculture and Natural Resources, Arak University, Arak 38156-88349, Iran | ||
Abstract | ||
Oil sources could be fed in different forms in animal diets. The objective of the present study was to evaluate the effect of delivery method of soy oil in growing Holstein male calves. Eighteen growing Holstein bull calves (210±23 kg of BW) were randomly allocated in three different treatments with different delivery methods of soy-oil as follow; 1) dietary mixed soy oil (DMSO), 2) roasted soybean seed (RSB), 3) extruded soybean seed (ESB). The diets well balanced as isocaleric and isonitrogenous. The study lasted 10 weeks. Intake was recorded daily and weighing was done by monthly intervals throughout the experiment. Results show that performance parameters (intake, gain and feed conversion ratio) were not influenced with different treatments. Considering the blood metabolites results cleared that beta-hydroxy butyrate (BHBA) reduced in ESB treatment (P < 0=04). The TG concentration was increased in RSB treatment (P=0.01). Digestibility of nutrients also did not differ among treatments (P > 0.05). Delivery method of oil in diets did not influence chewing activity in Holstein calves. Results indicated that based on the experimental dietary fat level (39 g/kg DM), different delivery methods of soy oil may not influence growing calves’ performance and digestibility. Future research warranted to evaluate the delivery method of oil (fat) in higher levels in growing Holstein calves. | ||
Keywords | ||
Soy-oil; growing calve; performance; soybean processing | ||
References | ||
پاشایی، س. قورچی، ت. و یامچی ا. (1393). تأثیر منابع خوراکی حاوی اسیدهای چرب غیر اشباع در جیرههای حاوی سطوح مختلف انرژی و پروتئین بر عملکرد رشد و فراسنجههای خون برههای پرواری. نشریه پژوهش در نشخوارکنندگان، 2 (4): ص 103. رجبی، ی. چاشنیدل، ی. و دیرنده. ع. (1395). تأثیر تغذیه منابع مختلف چربی در دوره انتقال بر تولید و ترکیب شیر و فراسنجههای خونی گاوهای شیری هلشتاین. مجله تحقیقات تولیدات دامی، 5 (4): ص 92. AOAC. (1990). Official Methods of Analysis. 15th ed. Association of Official Analytical Chemists, Arlington, VA. Brask, M., Lund, P., Weisbjerg, M.R., Hellwing, A.L.F., Poulsen, M., Larsen, M.K. and Hvelplund, T. (2013). Methane production and digestion of diferent physical forms of rapseed as fat supplements in dairy cows. Journal of Dairy Science. 96:2356-2365. Ebrahimi, R., Ahmadi, H.R., Zamiri, M.J. and Rowghani. E. (2007). Effect of energy Faldet, M.A. and Satter. L.D. (1991). Feeding heat-treated full fat soybeans to cows in early lactation. Journal of Dairy Science. 74:3074. Foroozandeh, A.D., Amini, H.R., Ghalamkari, G.R., Shahzeydi, M. and Nasrollahi. (2014). The effect of fat type and L-carnitine asministration on growth, feed digestibility and blood metabolites of growing Afshari lambs. Livestock Science.164:67-71. Kargar, S, Khorvash, M., Ghorbani, G.R., M, Alikhani., Zang, W.Z. (2012). Short communication: effects of dietary fat supplements and forage: concentrate ratio on feed intake, feeding, and chewing behavior of Holstein dairy cows. Journal of Dairy Science, 93: 492-4301. Kazemi-Bonchenari, M., Mirzaei, M., Jahani-Moghadam, M., Soltani, A., Mahjoubi, E., and Patton, R.A. (2016). Interactions between levels of heat-treated soybean meal and prilled fat on growth, rumen fermentation, and blood metabolites of Holstein calves. Journal of Animal Science. 94:4267-4275. Knapp, D.M., Grummer, R.R. and Dentine, M.R. (1991). The response of lactating dairy cows to increasing levels of whole roasted soybeans. Journal of Dairy Science. 74:2563. Mashek, D.G., Bertics, S.J. and Grummer, R.R. (2005). Effects of intravenous triacylglycerol emulsions on hepatic metabolism and blood metabolites in fasted dairy cows. Journal of Dairy Science. 88:100-109. Miekle, C.D. and Schingoethe. D.J. (1981). Heat-treated soybeans for lactating cows. Journal of Dairy Science. 64:1579. NRC. (2000). Nutrient Requirement of Beef Cattle. 7th Edition. National Academy Press. Washington DC. Osborne, V.R., Radhakrishman, S., Odongo, N.E., Hill, A.R. and McBride. B.W. (2008). Effects of supplementing fish oil in the drinking water of dairy cows on production performance and milk fatty acid composition. Journal of Animal Science, 86:720-729. Pantoja, J., Firkins, M.L., Eastridge, M.L. and Hull, B.L. (1994). Effects of fat saturation and source of fiber on site of nutrient digestion and milk production by lactating dairy cows. Journal of Dairy Science. 77:2341-2356. Piantoni, P., Lock, A.L., Allen, M.S. (2013). Palmitic acid increased yields of milk and milk fat and nutrient digestibility across production level of lactating cows. Journal of Dairy Science, 96: 7143-7154. Pires, A.V., Eastridge, M.L. and Firkins. J.L. (1996). Roasted soybeans, blood meal, and tallow as dources of fat and ruminally undegradable protein in the diets of lactating cows. Journal of Dairy Science. 79:1603-1610. Tice, E.M., Eastridge, M.L. and Firkins. J.L. (1993). Raw soybeans and roasted soybeans of different particle sizes. 1. Digestibility and utilization by lactating dairy cows. Journal of Dairy Science. 76:224. Troegeler-Meynadier, M., Puaut, S., Farizon, Y. and Enjalbert. F. (2014). Effects of the heating process of soybean oil and seeds on fatty acids biohydrogenation in vitro. Journal of Dairy Science. 97:5657-5667. Van Kuelen, J. and Young, B.A. (1977). Acid insoluble ash as a natural marker for digestibility studies. Journal of Dairy Science. 44: 282-287. Van Soest, P.J., Robertson, J.B., and Lewis. B.A. (1991). Methods for dietary fiber, neutral detergent fiber nonstarch polysaccharide in relation to animal nutrition. Journal of Dairy Science 74:3583–3597. Zinn, R.A., Gulati, S.K., Plascencia, A. and Salinas. J. (2000). Influence of rumianl biohydrogenation on the fattening value of fat in finishing diets for feedlot cattle. Journal of Animal Science. 78:1738-1746. | ||
Statistics Article View: 1,123 PDF Download: 708 |