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Papers

A meta-analysis on the effect of the feeding type and production system on the carcase quality of lambs

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Pages 423-434 | Received 04 May 2018, Accepted 05 Sep 2018, Published online: 07 Jan 2019

References

  • Aguayo-Ulloa LA, Miranda-de la Lama GC, Pascual-Alonso M, Fuchs K, Olleta JL, Campo MM, Alierta S, Villarroel M, Maria GA. 2013. Effect of feeding regime during finishing on lamb welfare, production performance and meat quality. Small Rumin Res. 111:147–156.
  • Appuhamy JA, Strathe AB, Jayasundara S, Wagner-Riddle C, Dijkstra J, France J, Kebreab E. 2013. Anti-methanogenic effects of monensin in dairy and beef cattle: a meta-analysis. J Dairy Sci. 96:5161–5173.
  • Beriain MJ, Horcada A, Purroy A, Lizaso G, Chasco J, Mendizabal JA. 2000. Characteristics of lacha and rasa aragonesa lambs slaughtered at three live weights. J Anim Sci. 78:3070–3077.
  • Borenstein M, Hedges LV, Higgins JPT, Rothstein HR. 2009. Introduction to meta-analysis. Chichester, UK: John Wiley & Sons, Ltd.
  • Cacere RAS, Morais MG, Alves FV, Feijó GLD, Ítavo CCBF, Ítavo LCV, Oliveira LB, Ribeiro CB. 2014. Quantitative and qualitative carcass characteristics of feedlot ewes subjected to increasing levels of concentrate in the diet. Arq Bras Med Vet Zootec. 66:1601–1610. ISSN 0102-0935.
  • Crouse JD, Field RA, Chant JL, Ferrell JCL, Smith GM, Harrison VL. 1978. Effect of dietary energy intake on carcass composition and palatability of different weight carcasses from ewe and ram lambs. J Anim Sci. 47:1207.
  • De Brito GF, Ponnampalam EN, Hopkins DL. 2017. The effect of extensive feeding systems on growth rate, carcass traits, and meat quality of finishing lambs. Compr Rev Food Sci Food Saf. 16:23–38.
  • Delgado CL. 2003. Rising consumption of meat and milk in developing countries has created a new food revolution. J Nutr. 133:3907S–3910S.
  • Dersimonian R, Laird N. 1986. Meta-analysis in clinical trials*. Control Clin. 7:177–188.
  • Echávarria V. 2013. Carne ovina. Oficina de estudios y políticas agrarias. [accessed 2016 Aug 3] www.Odepa.gob.cl.
  • FAO. 2010. Origen y distribución de los recursos zoogenéticos. [accessed 2017 Nov 7] ftp://ftp.fao.org/docrep/fao/010/a1260s/a1260s03.pdf.
  • Forgaty NM. 2009. Meat sheep breeding—where we are at and future challenges. Proceedings of the Association for the Advancement of Animal Breeding and Genetics, Armidale, Australia: Association for the Advancement of Animal Breeding and Genetics. p. 414–421.
  • Gardner GE, Williams A, Ball AJ, Jacob RH, Refshauge G, Hocking Edwards J, Behrendt R, Pethick DW. 2015. Carcass weight and dressing percentage are increased using Australian Sheep Breeding Values for increased weight and muscling and reduced fat depth. Meat Sci. 99:89–98.
  • Gardner GE, Williams A, Siddell J, Ball AJ, Mortimer S, Jacob RH, Pearce KL, Edwards JEH, Rowe JB, Pethick DW. 2010. Using Australian sheep breeding values to increase lean meat yield percentage. Anim Prod Sci. 50:1098–1106.
  • Gaspar P, Escribano M, Mesías FJ, Ledesma A. R d, Pulido F. 2008. Sheep farms in the Spanish rangelands (Dehesas): typologies according to livestock management and economic indicators. Small Rumin Res. 74:52–63.
  • Grooms DL, Kroll LAK. 2015. Indoor confined feedlots. Vet Clin North Am Food Anim Pract. 31:295–304.
  • Hedges LV. 1981. Distribution theory for glass’s estimator of effect size and related estimators. J Educ Behav Stat. 6:107–128.
  • Henchion M, McCarthy M, Resconi VC, Troy D. 2014. Meat consumption: trends and quality matters. Meat Sci. 98:561–568.
  • Hopkins DL, Fogarty NM, Mortimer SI. 2011. Genetic related effects on sheep meat quality. Small Rumin Res. 101:160–172.
  • Karim SA, Porwal K, Kumar S, Singh VK. 2007. Carcass traits of Kheri lambs maintained on different systems of feeding managements. Meat Sci. 76:395–401.
  • Kozloski GV. 2009. Bioquímica dos ruminantes. 2nd ed. Santa Maria: da UFSM; p. 98.
  • Kratli S, Huelsebusch C, Brooks S, Kaufmann B. 2013. Pastoralism: a critical asset for global food security under climate change. Animal Front. 3:42–51.
  • Lean IJ, Rabiee AR, Duffield TF, Dohoo IR. 2009. Invited review: use of meta-analysis in animal health and reproduction: methods and applications. J Dairy Sci. 92:3545–3565.
  • McGlone JJ. 2001. Farm animal welfare in the context of other society issues: toward sustainable systems. Livest Prod Sci. 72:75–81.
  • Morris ST. 2009. Economics of sheep production. Small Rumin Res. 86:59–62.
  • Morris ST, Kenyon PR. 2014. Intensive sheep and beef production from pasture-a New Zealand perspective of concerns, opportunities and challenges. Meat Sci. 98:330–335.
  • Murphy TA, Loerch SC, McClure KE, Solomon MB. 1994. Effects of restricted feeding on growth performance and carcass composition of lambs. J Anim Sci. 72:3131–3137.
  • OECD-FAO. 2013. Agricultural outlook 2012–2021. ‎Paris, France: OECD.
  • Partida PJA, Braña VD, Jiménez SH, Ríos RFG, Buendía RG. 2013. Producción de carne ovina. Centro nacional de investigación disciplinaria en fisiología y mejoramiento animal. Ajuchitlán Qro Libro Técnico INIFAP. 5:68.
  • Pethick DW, Ball AJ, Banks RG, Hocquette JF. 2011. Current and future issues facing red meat quality in a competitive market and how to manage continuous improvement. Anim Prod Sci. 51:13–18.
  • Ponnampalam EN, Hopkins DL, Bekit A. 2014. Predicting color and flavor stabilities of meat from pre-slaughter assessments. Final report. Project Number A.MQA.006. North Sydney, NSW, Australia: Meat & Livestock Australia Limited.
  • R, C.T. 2016. R: a language and environment for statistical computing. Vienna, Austria: R: A Language and Environment for Statistical Computing.
  • Riegel RE. 2012. Bioquímica. 5th ed. São Leopoldo: Unisinos; p. 197.
  • Santos VAC, Silva SR, Mena EG, Azevedo JMT. 2007. Live weight and sex effects on carcass and meat quality of “borrego terrincho-PDO” suckling lambs. Meat Sci. 77:654–661.
  • Sheridan R, Ferreira AV, Hoffman LC. 2003. Production efficiency of South African Mutton Merino lambs and Boer goat kids receiving either a low or a high energy feedlot diet. Small Rumin Res. 50:75–82.
  • Schwarzer G. 2016. Meta: general package for meta-analysis. R News. 7:40–45.
  • Xu J, Hou Y, Yang H, Shi R, Wu C, Hou Y, Zhao G. 2014. Effects of forage sources on rumen fermentation characteristics, performance, and microbial protein synthesis in midlactation cows. Asian Australasian J Anim Sci. 27:667–673.
  • Zervas G, Tsiplakou E. 2011. The effect of feeding systems on the characteristics of products from small ruminants. Small Rumin Res. 101:140–149.