اثر جنس و یونیفرها بر عملکرد رشد و خصوصیات لاشه برههای نژاد مغانی
Subject Areas : Camelس. صادقی 1 , س.ع. رافت 2 , ج. شجاع 3 , ح. امانلو 4
1 - Young Researchers and Elite Club, Tabriz Branch, Islamic Azad University, Tabriz, Iran
2 - Department of Animal Science, Faculty of Agriculture, University of Tabriz, Tabriz, Iran
3 - Department of Animal Science, Faculty of Agriculture, University of Tabriz, Tabriz, Iran
4 - Department of Animal Science, Faculty of Agriculture, University of Zanjan, Zanjan, Iran
Keywords: خصوصیات لاشه, عملکرد رشد, دنبه, چربی داخلی, گوسفند مغانی,
Abstract :
آزمایشی به منظور بررسی اثر جنس و دو نوع جیره غذایی حاوی یونیفرم بر عملکرد رشد و خصوصیات لاشه در گوسفندان مغانی انجام گرفت. 30 رأس بره مغانی (15 نر و 15 ماده) به طور تصادفی در 30 قفس انفرادی توزیع شدند. گروه جنسی شامل 5 رأس حیوان و با سه جیره غذایی شامل جیره پایه بدون مکمل، جیره پایه بعلاوه 25 میلیگرم در کیلوگرم موننسین و جیره پایه بعلاوه 25 گرم در کیلوگرم لاسالوسید تغذیه شدند. برهها بعد از یک دوره پروار 134 روزه توزین و برای تعیین خصوصیات لاشه مورد کشتار قرار گرفتند. میانگین وزن لاشه به طور معنیداری متأثر از جنس بود (01/0>P)، اما تحت تأثیر نوع جیره غذایی قرار نگرفت. جنس حیوان و نوع جیره غذایی اثر معنیداری بر میانگین وزن روزانه حیوان نداشت(05/0<P). برههای تغذیه شده با جیره حاوی موننسین دارای کمترین مصرف خوراک و ضریب تبدیل غذایی بوده و تفاوت معنیداری با برههای تغذیه شده با سایر گروههای غذایی داشتند. میانگین چربی داخلی در برههای ماده به طور معنیداری بیشتر از برههای نر بود (01/0>P). وزن دنبه کاهش معنیداری در گروههای مصرف کننده یونیفرها نسبت به گروه شاهد داشت (05/0>P). نرها نسبت به مادهها عملکرد رشد بالاتری به علت وجود احشاء داخلی سنگینتر و قطعات لاشه با ارزش بالا داشتند. جیره حاوی موننسین میتواند به عنوان یک افزودنی غذایی مفید برای بهبود بازده غذایی و کاهش چربی داخلی و اجزای زاید لاشه مورد استفاده قرار گیرد.
Atefi A., Shoja J., Rafat S.A. and JahaniMaleki Y. (2012). Growth performance and carcass characteristics of Iranian fat-tailed crossbred lambs. Livest. Res. Rural Dev. Available at: http://www.lrrd.org/lrrd24/2/atel24031.htm.
Barreras A., Castro-Perez B.I., Lopez-Soto M.A., Torrentera N.G., Montano M.F., strada-Angulo A., Rios F.G., Davila-Ramos H., Plascencia A. and Zinn R.A. (2013). Influence of ionophore supplementation on growth performance, dietary energetics and carcass characteristics in finishing cattle during period of heat stress. Asian Australian J. Anim. Sci. 26, 1553-1561.
Bennett G.L., Johnson D.L., Kirton A.H. and Carter A.H. (1991). Genetic and environmental effects on carcass characteristics of Southdown × Romney lambs, Il Genetic and phenotypic variation. J. Anim. Sci. 69, 1864-1874.
Bures D. and Barton L. (2012). Growth performance carcass traits and meat quality of bulls and heifers slaughtered at different ages. Czech J. Anim. Sci. 57, 34-43.
Callaway T., Edrington T., Rychlik J., Genovese K., Poole T., Jung Y., Bischoff R., Anderson C. and Nisbet D. (2003). Ionophores: Their use as ruminant growth promotants and impact on food safety. Int. Microbiol. 4, 43-51.
Carrillo L. and Segura J.C. (1993). Environmental and genetic effects on pre-weaning growth performance of hair sheep in Mexico. Trop. Anim. Health. Prod. 25, 173-178.
Dransfield E., Nute G.R., Hogg B.W. and Walters B.R. (1990). Carcass and eating quality of ram, castrated ram and ewe lambs. Anim Prod. 50, 291-299.
Fluharty F.L., McClure K.E., Solomon M.B., Clevenger D.D. and Lowe G.D. (1999). Energy source and ionophore supplementation effects on lamb growth, carcass characteristics, visceral organ mass, diet digestibility, and nitrogen metabolism. J. Anim. Sci. 77, 816-823.
Gibb D.J., Moustafa S.M.S., Wiedmeier R.D. and McAllister T.A. (2001). Effect of salinomycin or monensin on performance and feeding behavior of cattle fed wheat- or barley-based diets. Canadian J. Anim. Sci. 81, 253-261.
Goodrich R.D., Garrett J.E. and Gast D.R. (1984). Influence of monensin on the performance of cattle. J. Anim. Sci. 58, 1484-1498.
Heydari K.H., Daniri N., Fayazi J. and Roshanfekr H. (2008). Effect of ionophore, monensin and lasalocid on performance and carcass characteristics in fattening Arabi lambs. Pakistan J. Nutr. 7, 81-84.
Kuchtik J. and DobesI. (2006). Effect of some factors on growth of lambs from crossing between the Improved Wallachian and East Friesian. Czech J. Anim. Sci. 51, 54-60.
Massae E.E. and Mtenga L.A. (1986). Effects of plane of nutrition on growth performance and carcass composition on lambs in Tanzania. Small Rumin. Res. Dev. Africa. 8, 123-135.
Negussie E., Rottmann O.J., Pirchner F. and Rege J.E. (2003). Patterns of growth and partitioning of fat depots in tropical fat-tailed Menz and Horro sheep breeds. Meat Sci. 64, 491.
Notter D.R., Kelly R.F. and McClaugherty F.S. (1991). Effects of ewe breed and management system on efficiency of lamb growth production: II. Lamb growth, survival and carcass characteristics. J. Anim. Sci. 69, 22-33.
Oliveira M.V.M., Lana R.P., Eifert E.C., Luz D.F., Pereira J.C., Pérez J.R.O. and Junior F.M.V. (2007). Effect of monensin on intake and apparent digestibility of nutrients in sheep fed diets with different crude protein levels. Revist. Brasileira Zootec. 36, 643-651.
Pena F., Cano T., Domenech V., Alcalde M.J., Martos J., Garcıa-Martinez A., Herrera M. and Rodero E. (2005). Influence of sex, slaughter weight and carcass weight on “non-carcass” and carcass quality in segurena lambs. Small Rumin. Res. 60, 247-254.
Potter E.L., Raun A.P., Cooley C.O., Rathmacher R.P. and Richardson L.F. (1976a). Effect of monensin on carcass characteristics, carcass composition and efficiency of converting feed to carcass. J. Anim. Sci. 43, 678-683.
Potter E.L., Cooley C.O., Richardson L.F., Raun A.P. and Rathmacher R.P. (1976b). Effect of monensin on performance of cattle fed forage. J. Anim. Sci. 43, 665-669.
Price M.M., Einkamerer O.B., de Witt F.H., Greyling J.P.C. and Fair M.D. (2003). The effect of dietary ionophores on feedlot performance of lambs. South African J. Anim. Sci. 39, 141-144.
Rodriguez A.B., Bodas R., Prieto N., Landa R., Mantecón A.R. and Giráldez F.J. (2008a). Effect of sex and feeding system on feed intake growth and meat and carcass characteristics of fattening Assaf lambs. Livest. Sci. 116, 118-125.
Rodriguez A.B., Bodas R., Landa R., Lopez-Campos O., Mantecon A.R. and Giraldez F.J. (2011b). Animal performance carcass traits and meat characteristics of Assaf and Merino × Assaf growing lambs. Livest. Sci. 138, 13-19.
Salinas-Chavira J., Lara-Juarez A., Gil-Gonzalez A., Jimenez Castro J., Garcia-Castillo R. and Ramirez-Bribiesca E. (2010). Effect of breed type and ionophore supplementation on growth and carcass characteristic in feedlot hair lambs. Revist. Brasileira Zootec. 39(3), 720-727.
Sanudo C., Alfonso M., Sanchez A., Delfa R. and Teixeira A. (2000). Carcass and meat quality in light lambs from different fat classes in the EU carcass classification system. Meat Sci. 56, 89-94.
SAS Institute. (2002). SAS®/STAT Software, Release 9.1. SAS Institute, Inc., Cary, NC. USA.
Smith S.B. and Crouse J.D. (1984). Relative contributions of acetate, lactate and glucose to lipogenesis in bovine intramuscular and subcutaneous adipose tissue. J. Nutr. 114, 792-800.
Vergara H., Molina A. and Gallego L. (1999). Influence of sex and slaughter weight on carcass and meat quality in light and medium weight lambs produced in intensive systems. Meat Sci. 52, 221-226.
Woodward J. and Wheelock V. (1990). Consumer attitudes to fat in meat. Pp. 66-100 in Reducing Fat in Meat Animals. J.D. Wood and A.V. Fisher, Eds. Elsevier, London.
Yilmaz O., Denk H. and Bayram D. (2007). Effects of lambing season, sex and birth type on growth performance in Norduz lambs. Small Rumin. Res. 68, 336-339.
Zamiri M.J. and Izadifard J. (1997). Relationships of fat-tail weight with fat-tail measurements and carcass characteristics of Mehraban and Ghezel rams. Small Rumin. Res. 26, 261-266.
Zgur S., Cividini A., Kompan D. and Birtie D. (2003). The effect of live weight at slaughter and sex on lambs carcass traits and meat characteristics. Agric. Conspect. Scientif. 68, 155-159.