Scientia Agricultura Sinica ›› 2014, Vol. 47 ›› Issue (1): 145-153.doi: 10.3864/j.issn.0578-1752.2014.01.015

• STORAGE·FRESH-KEEPING·PROCESSING • Previous Articles     Next Articles

Effects of Different Pre-slaughter Fasting Time on Mutton Quality

 XIA  An-Qi, LI  Xin, CHEN  Li, HE  Fan, LIU  Jin-Kai, WANG  Zhen-Yu, NI  Na, ZHANG  De-Quan   

  1. Institute of Agro-Products Processing Science and Technology, Chinese Academy of Agricultural Sciences/Key Laboratory of Agro-Products Processing, Ministry of Agriculture, Beijing 100193
  • Received:2013-09-04 Online:2014-01-01 Published:2013-10-12

Abstract: 【Objective】Pre-slaughter fasting is defined as duration of food and water withdrawal during loading, unloading, transport and control during pre-slaughter lairage period. Impropriety of pre-slaughter handling decreases carcass yield, affects eating quality and technical characteristics of meat. The objective of this study was to investigate the effects of different pre-slaughter fasting time on quality of mutton and determine how long fasting time is suitable for production of high quality mutton.【Method】Thirty six-month old sheep were divided into 3 groups fasting for 0 h(control group), 12 h and 24 h. The eating quality (pH value, meat colour, shear force and water holding capacity), sensory quality (odour, tenderness, juiciness and overall liking), hygiene quality (aerobic plate count and coliforms), glycogen concentration, sarcomere length and protein degradation during post-mortem were analyzed.【Result】Fasting for 24 h resulted in higher pH value than 12 h and control group at 0 h, 45 min and 4 h post-mortem. As aging time extended, pH value at 24 h and 48 h post-mortem had no significant difference (P<0.05). The group fasting for 24 h had lower cooking loss than 12 h and control group (P<0.05). There was no significant difference among three groups in L*, a*, b*,ΔE, drip loss, shear force and sensory characteristics of odour, tenderness, juiciness and overall liking of the mutton (P>0.05). Aerobic plate count and coliforms of the mutton from different fasting time groups were all under the range of national standard regulations at 24 h post-mortem. Aerobic plate count of mutton had no significant difference among three treatments. Coliforms of the mutton were decreased as the fasting time increased. Fasting treatments caused the decrease of enumeration of coliforms compared to control group. There was no significant difference in glycogen content of mutton at 0 h, 45 min, 4 h, 8 h, 12 h, 24 h and 48 h post-mortem among three groups. The degree of glycolysis increased but the glycogen content decreased as the extension of aging time. With the increase of pre-slaughter fasting time, sarcomere length increased. Fasting for 24 h resulted in larger sarcomere length than 12 h and fasting for 12 h was higher than 0 h (P<0.05). The degree of myofibrillar protein degradation in different fasting treatments was consistent at 0 h post-mortem. There was no apparent bands appeared or disappeared. All groups had 27 kD fragment appeared at 24 h post-mortem. The appearance of the 27 kD was darker in fasting for 12 h and 24 h treatments than the control. It was shown that fasting for 24 h and 12 h resulted in higher protein degradation degree than the control group.【Conclusion】Fasting for 12 and 24 h increased the hygiene quality and accelerated meat myofibrillar protein degradation. Fasting for 24 h decreased cooking loss. Fasting for 12 and 24 h had no significant effects on pH value, glycogen content and other quality characteristics of mutton. Compared with the control group, fasting for 12 and 24 h had positive effects on mutton hygiene quality but no effect on eating quality and sensory quality.

Key words: sheep , pre-slaughter , fasting , meat quality

[1]尹靖东. 动物肌肉生物学与肉品科学. 北京:中国农业大学出版社, 2011: 379.

Yin J D. Animal Muscle Biology and Meat Quality. Beijing: China Agricultural University Press, 2011: 379. (in Chinese)

[2]Ferguson D M, Warner R D. Have we underestimated the impact of pre-slaughter stress on meat quality in ruminants? Meat Science, 2008, 80(1): 12-19.

[3]Terlouw E M C, Arnould C, Auperin B, Berri C, Le Bihan-Duval E, Deiss V, Lefevre F, Lensink B J, Mounier L. Pre-slaughter conditions, animal stress and welfare: current status and possible future research. Animal, 2008, 2(10): 1501-1517.

[4]Panella-Riera N, Gispert M, Gil M, Soler J, Tibau J, Oliver M A, Velarde A, Fàbrega E. Effect of feed deprivation and lairage time on carcass and meat quality traits on pigs under minimal stressful conditions. Livestock Science, 2012, 146(1): 29-37.

[5]Jones S D M, Schaefer A L, Tong A K W, Vincent B C. The effects of fasting and transportation on beef cattle. 2. Body component changes, carcass composition and meat quality. Livestock Production Science, 1988, 20(1): 25-35.

[6]Greenwood P L, Finn J A, May T J, Nicholls P J. Management of young goats during prolonged fasting affects carcass characteristics but not pre-slaughter live weight or cortisol. Animal Production Science, 2010, 50(6): 533-540.

[7]Pointon A, Kiermeier A, Fegan N. Review of the impact of pre-slaughter feed curfews of cattle, sheep and goats on food safety and carcase hygiene in Australia. Food Control, 2012, 26(2): 313-321.

[8]Zimerman M, Grigioni G, Taddeo H, Domingo E. Physiological stress responses and meat quality traits of kids subjected to different pre-slaughter stressors. Small Ruminant Research, 2011, 100(2): 137-142.

[9]Daly B L, Gardner G E, Ferguson D M, Thompson J M. The effect of time off feed prior to slaughter on muscle glycogen metabolism and rate of pH decline in three different muscles of stimulated and non-stimulated sheep carcasses. Australian Journal of Agricultural Research, 2006, 57(11): 1229-1235.

[10]Tarrant P V. Animal behaviour and environment in the dark-cutting condition in beef-a review. Irish Journal of Food Science and Technology, 1989,13(1): 1-21.

[11]Greenwood P L, Finn J A, May T J, Nicholls P J. Pre-slaughter management practices influence carcass characteristics of young goats. Australian Journal of Agricultural Research, 2008, 48(7): 910-915.

[12]Apple J K, Unruh J A, Minton J E, Bartlett J L. Influence of repeated restraint and isolation stress and electrolyte administration on carcass quality and muscle electrolyte content of sheep. Meat Science, 1993, 35(2): 191-203.

[13]Warriss P D, Brown S N, Bevis E A, Kestin S C, Young C S. Influence of food withdrawal at various times pre-slaughter on carcass yield and meat quality in sheep. Journal of the Science of Food and Agriculture, 1987, 39(4): 325-334.

[14]Contreras-Castillo C, Pinto A A, Souza G L, Beraquet N J, Aguiar A P, Cipolli K M V A B, Mendes C M I, Ortega E M. Effects of feed withdrawal periods on carcass yield and breast meat quality of chickens reared using an alternative system. The Journal of Applied Poultry Research, 2007, 16(4): 613-622.

[15]中华人民共和国国家标准.牛羊屠宰产品品质检验规程. GB 18393—2001.2001.

PRC National Standard. Code for Product Quality Inspection for Cattle or Sheep in Slaughtering. GB 18393—2001. 2001.  (in Chinese)

[16]中华人民共和国国家标准.鲜、冻肉生产良好操作规范. GB/T 20575—2006.2006.

PRC National Standard. Specification of Good Manufacture Practice for Fresh and Frozen Meat Processing. GB/T 20575—2006. 2006, (in Chinese)

[17]Honikel K O. Reference methods for the assessment of physical characteristics of meat. Meat Science, 1998, 49(4): 447-457.

[18]薛丹丹, 张德权, 陈丽, 王振宇,王培培. 烤制羊肉食用品质评价指标筛选研究. 食品科技, 2012, 37(10): 114-118.

Xue D D, Zhang D Q, Chen L, Wang Z Y , Wang P P. The screening on evaluating indicators of roast mutton eating quality. Food Science and Technology, 2012, 37(10): 114-118. (in Chinese)

[19]Xiong Y L, Lou X, Wang C, Moody W G, Harmon R J. Protein extraction from chicken myofibrils irrigated with various polyphosphate and NaCl solutions. Journal of Food Science, 2000, 65(1): 96-100.

[20]Webb E C, Casey N H, Simela L. Goat meat quality. Small Ruminant Research, 2005, 60(1): 153-166.

[21]Van de Perre V, Permentier L, Bie S D, Verbeke G, Geers R. Effect of unloading, lairage, pig handling, stunning and season on pH of pork. Meat Science, 2010, 86(4): 931- 937.

[22]Liste G, Villarroel M, Chacón G, Sañudo C, Olleta J L, García- Belenguer S, Alierta S A, María G A. Effect of lairage duration on rabbit welfare and meat quality. Meat Science, 2009, 82(1):71-76.

[23]Lawrie R A, Ledward D A. Lawrie’s 肉品科学. 7版. 北京:中国农业大学出版社, 2009: 85-87.

Lawrie R A, Ledward D A. Lawrie’s Meat Science. 7th ed. Beijing: China Agricultural University Press, 2009: 85-87. (in Chinese)

[24]Jacob R H, Pethick D W, Clark P, D'Souza D N, Hopkins D L, White  J. Quantifying the hydration status of lambs in relation to carcass characteristics. Animal Production Science, 2006, 46(4): 429- 437.

[25]Gutta V R, Kannan G, Lee J H, Kouakou B, Getz W R. In?uences of short-term pre-slaughter dietary manipulation in sheep and goats on pH and microbial loads of gastrointestinal tract. Small Ruminant Research, 2009, 81(1): 21-28.

[26]Zhen S B, Liu Y R, Li X M, Ge K S, Chen H, Li C, Ren F Z. Effects of lairage time on welfare indicators, energy metabolism and meat quality of pigs in Beijing. Meat Science, 2013, 93(2): 287-291.

[27]贾小翠. 禁食对肌肉宰后僵直及其品质影响研究[D]. 南京:南京农业大学, 2011.

Jia X C. Effects of fasting on rigor mortis and meat quantity of chicken breast muscle[D]. Nanjing: Nanjing Agricultural University, 2011.(in Chinese)

[28]黄峰.细胞凋亡酶6在鸡肉成熟中的作用[D]. 南京:南京农业大学, 2009.

Huang F. The role of caspase - 6 in chicken aging[D]. Nanjing: Nanjing Agricultural University, 2009. (in Chinese)

[29]黄明, 罗欣. 内源蛋白酶在肉嫩化中的作用.肉类研究, 1999, 2: 9-11, 14.

Huang M, Luo X. Role of endogeneous proteases in meat tenderization. Meat Research, 1999, 2: 9-11, 14. (in Chinese)

[30]Davey C L, Kuttel H, Gilbert K V. Shortening as a factor in meat ageing. International Journal of Food Science & Technology, 1967, 2(1): 53-56.
[1] LIU YuFang,CHEN YuLin,ZHOU ZuYang,CHU MingXing. miR-221-3p Regulates Ovarian Granulosa Cells Apoptosis by Targeting BCL2L11 in Small-Tail Han Sheep [J]. Scientia Agricultura Sinica, 2022, 55(9): 1868-1876.
[2] CHE DaLu,ZHAO LiChen,CHENG SuCai,LIU AiYu,LI XiaoYu,ZHAO ShouPei,WANG JianCheng,WANG Yuan,GAO YuHong,SUN XinSheng. Effect of Litter Bed on Growth Performance and Odor Emission in Fattening Lamb [J]. Scientia Agricultura Sinica, 2022, 55(24): 4943-4956.
[3] SONG ShuZhen, GAO LiangShuang, LI Hong, GONG XuYin, LIU LiShan, WEI YuBing. Effects of Feeding Levels on Muscle Tissue Structure and Muscle Fiber Composition Related Genes in Sheep [J]. Scientia Agricultura Sinica, 2022, 55(21): 4304-4314.
[4] ChunTao ZHANG,Tao MA,Yan TU,QiYu DIAO. Effects of Circadian Rhythm on Rumen Fermentation and Nutrient Digestion of Mutton Sheep [J]. Scientia Agricultura Sinica, 2022, 55(18): 3664-3674.
[5] LIU WangJing,TANG DeFu,AO ChangJin. Effect of Allium mongolicum Regel and Its Extracts on the Growth Performance, Carcass Characteristics, Meat Quality and Serum Biochemical Indices of Captive Small-Tailed Han Sheep [J]. Scientia Agricultura Sinica, 2022, 55(17): 3461-3472.
[6] LIANG Peng,ZHANG TianWen,MENG Ke,SHAO ShunCheng,ZOU ShiFan,RONG Xuan,QIANG Hao,FENG DengZhen. Association Analysis of the ADIPOQ Variation with Sheep Growth Traits [J]. Scientia Agricultura Sinica, 2022, 55(11): 2239-2256.
[7] KE Na,HAO ZhiYun,WANG JianQing,ZHEN HuiMin,LUO YuZhu,HU Jiang,LIU Xiu,LI ShaoBin,ZHAO ZhiDong,HUANG ZhaoChun,LIANG WeiWei,WANG JiQing. The miR-221 Inhibits the Viability and Proliferation of Ovine Mammary Epithelial Cells by Targeting IRS1 [J]. Scientia Agricultura Sinica, 2022, 55(10): 2047-2056.
[8] ZHANG Lan,WANG LiangZhi,HUANG YanLing,LIAO XiuDong,ZHANG LiYang,LÜ Lin,LUO XuGang. Effects of Dietary Supplemental Pattern of Trace Eloments on the Growth Performance, Carcass Traits and Meat Quality of Broilers [J]. Scientia Agricultura Sinica, 2021, 54(22): 4906-4916.
[9] WANG Qian,LI Zheng,ZHAO ShanShan,QIE MengJie,ZHANG JiuKai,WANG MingLin,GUO Jun,ZHAO Yan. Application of Stable Isotope Technology in the Origin Traceability of Sheep [J]. Scientia Agricultura Sinica, 2021, 54(2): 392-399.
[10] LI SongMei,QIU YuGe,CHEN ShengNan,WANG XiaoMeng,WANG ChunSheng. CRISPR/Cas9 Mediated Exogenous Gene Knock-in at ROSA26 Locus in Sheep Umbilical Cord Mesenchymal Stem Cells [J]. Scientia Agricultura Sinica, 2021, 54(2): 400-411.
[11] WANG Chen,ZHANG HongWei,WANG HuCheng,SUN XiaoPing,LI FaDi,YANG BoHui. Energy and Protein Requirements of Alpine Merino Growing Sheep [J]. Scientia Agricultura Sinica, 2021, 54(16): 3537-3548.
[12] WANG JiQing,HAO ZhiYun,SHEN JiYuan,KE Na,HUANG ZhaoChun,LIANG WeiWei,LUO YuZhu,HU Jiang,LIU Xiu,LI ShaoBin. Screening, Identification and Functional Analysis of Important LncRNAs for Lactation Traits in Small-Tailed Han Sheep [J]. Scientia Agricultura Sinica, 2021, 54(14): 3113-3123.
[13] ZHANG Wei,WANG ShiYin,GAO Li,YANG LiWei,DENG ShuangYi,LIU XiaoNa,SHI GuoQing,GAN ShangQuan. Investigation of miR-486 Target Genes in Skeletal Muscle of Bashbay Sheep in Different Development Periods [J]. Scientia Agricultura Sinica, 2021, 54(14): 3134-3148.
[14] LI RunTing,CHEN LongXin,ZHANG LiMeng,HE HaiYing,WANG Yong,YANG RuoChen,DUAN ChunHui,LIU YueQin,WANG YuQin,ZHANG YingJie. Transient Expression and the Effect on Proliferation and Apoptosis of Granule Cell Stimulating Factor in Ovarian Fibroblasts [J]. Scientia Agricultura Sinica, 2021, 54(11): 2434-2444.
[15] LI WenJuan,TAO Hui,ZHANG NaiFeng,MA Tao,DIAO QiYu. Effects of High-Fat Diet on Energy Metabolism and Slaughter Performance of Early-Weaning Lambs [J]. Scientia Agricultura Sinica, 2021, 54(10): 2206-2216.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!