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Comparison of Pork Quality by Different Berkshire Line

버크셔 계통조성돈의 육질 특성비교

  • Received : 2010.03.22
  • Accepted : 2010.10.19
  • Published : 2010.10.31

Abstract

Objective of this study was to develop a Korean Berkshire line produced using organized management techniques. A total of 448 pigs divided into five line groups were slaughtered and analyzed for their meat quality. $pH_{45}$ values were significantly higher in lines 1~4 (pH 6.08). However, $pH_{24}$ values were lower in line 1 (pH 5.69) and line 3 (pH 5.65) (p<0.05) than in the other lines. Moisture contents were significantly higher in line 5, and the intramuscular fat contents (3.07%) were significantly higher in the other four lines. Water holding capacity (WHC) was higher for line 3 (58.36%) while Warner-Bratzler shear force (WBS) values were significantly higher for line 4 (2.84 kg/$0.5inch^2$) than in the other lines (p<0.05). For meat color properties, L values (CIE L) were 51.59 for line 5, and this value was higher than the other lines. There were no significant differences in $a^*$ values and $b^*$ values among the five lines (p>0.05). Therefore, line 5 was selected as the growth type, whereas line 4 was selected as the Korean Berkshire line that produced pork significantly higher in pH and significantly lower in meat color (lightness), drip loss, and WBS.

체계적인 종돈관리와 우리의 식문화 특성을 고려하여 육질이 우수한 버크셔 계통조성을 위하여 총 8농장에서 종돈을 구입하여 유전적인 교류 유무에 따라 총 448두의 버크셔를 가계에 따라 5계통으로 분류하고 도축하여 육질을 비교한 결과 도축 후 45분 pH($pH_{45\;min}$)는 성장계통이 6.08로 육질 1계통과 3계통에 비하여 유의적으로 높았지만, 사후 24시간 pH($pH_{24\;h}$)는 육질 1계통과 계통5가 각각 5.69, 5.65로 유의적으로 낮았다. 수분함량은 계통5가 가장 높았고, 근내지방 함량은 계통 4가 3.07%으로 높았다. 보수력은 계통 3이 58.36%로 가장 높았고, 전단력은 계통 4가 2.84 kg로 가장 낮았다(p<0.05). 육색 명도(CIE L) 값에서는 계통5가 51.59로 다른 계통들에 비하여 유의적으로 높았고, 적색도(a)와 황색도(b)는 유의적인 차이를 보이지 않았다. 전반적인 결과를 볼 때 육질 측면에서 계통 4가 근내지방 함량과 pH가 높고, 육색 명도, 드립감량, 전단력가가 낮아 육질형, 계통 5는 성장형으로서의 한국형 버크셔 계통조성에 활용성이 높을 것으로 판단되었다.

Keywords

References

  1. Anderson. S., Aldana, S., Beggs, M., Birkey, J., Conquest, A., Conway, R., Hemminger, T., Herrick, J., Hurley, C., Ionita, C., Longbind, J., McMaignal, S., Milu, A., Mitchell, T., Nanke, K., Perez, A., Phelps, M., Reitz, J., Salazar, A., Shinkle, T., Strampe, M., Van Horn, K., Williams, J., Wipperfurth, C., Zelten, S., and Zerr, S. (2007) Determination of fat, moisture, and protein in meat and meat products by using the FOSS $FoodScan^{TM}$‚ Near-Infrared Spectrophotometer with FOSS artificial neural network calibration model and associated database: collaborative study. J. AOAC International. V90, 1073-1082.
  2. Asghar, A. and Pearson, A. M. (1980) Influence of ante- and postmortem treatments on mucle composition and meat quality. Adv.Food Res. 26, 53-61. https://doi.org/10.1016/S0065-2628(08)60318-3
  3. Batcher, O. M., Dawson, E. H., Gilpin, G. L., and Eisen, J. N. (1962) Quality and physical composition of various cuts of raw and cooked pork. Food Tech. 14, 104-109.
  4. Crawford, S. M., Moeller, S. j., Zerby, H. N., Irvin, K. M., Kuber, P. S., Velleman, S. G., and Leeds, T. D. (2010). Effects of cooked temperature on pork tenderness and relationships among muscle physiology and pork quality traits in loins from Landrace and Berkshire swine. Meat Sci. 84, 607-612 https://doi.org/10.1016/j.meatsci.2009.10.019
  5. De Vol, D. L., McKeith, F. K., Bechtel, P. J., Novakofski, J., Shanks, R, D., and Carr, T. R. (1988) Variation in composition and palatability traits and relationships bet muscle characteristics and palatability in a random sample of pork carcass. J. Anim. Sci. 66, 385-392.
  6. Eikelenboom, G., Hoving-Bolink, A. H., and Vander Wal, P.G. (1996) The Eating Quality of Pork - The influence of intramuscular fat. Fleischwirtschaft. 3, 18-20.
  7. Fortin, A., Robertson, W. M., and Tong, A. K. W. (2005) The eating quality of Canadian pork and its relationship with intramuscular fat. Meat Sci. 69, 297-305. https://doi.org/10.1016/j.meatsci.2004.07.011
  8. Gorannson, A., Von Seth, G., and Tornberg, E. (1992) The influence of intramuscular fat content on the eating quality of pork. Proc. 38th Int. Congress of Meat Sci. and Technol., 2, 4.07, INRA, Theix, France. France: Clermont-Ferrand.
  9. Hah, K. H., Kim, I. S., Jin, S. K., Nam Y. W., and Cho, J. H. (2007) Proximate Composition and Physico-chemical Characteristics of Berkshire Pork by Gender. Kor. J. Food Sci. Ani. Resour. 27, 137-141 https://doi.org/10.5851/kosfa.2007.27.2.137
  10. Honikel, K. O. (1987) Influence of chilling on meat quality attributes of fast glycolysing pork muscles. In Evaluation and Control of Meat quality of Pigs. eds. P. V. Tarrant, G. Eikelenboom, G. Monin. Martinus Nijhof Publishers. pp. 273.
  11. Laakkonen. E., Wellington, G. H., and Skerbon, J. W. (1970) Low temperature longtime heating of bovine. I. Changes in tenderness, water binding capacity, pH and amount of watersoluble component. J. Food Sci. 35, 175-177. https://doi.org/10.1111/j.1365-2621.1970.tb12131.x
  12. Lan, Y. H., McKeith, F. K., Novakofski, J., and Carr, T. R. (1993) Carcass and muscle characteristics of Yorkshire, Meishan, Yorkshire x Meishan, Meishan x Yorkshire, Fengjing x Yorkshire, and Minzhy x Yorkshire pigs. J. Anim. Sci., 71, 3344-3347.
  13. Leach, L., Ellis, M., Sutton, D. S., McKeith, F. K., and Wilson, E. R. (1996) The growth performance, carcass characteristics, and meat quality of Halothane carrier and negative pigs. J. Anim. Sci. 74, 934-943.
  14. Lee, J. R., Hur, T. Y., Seo, K. H., Nam, K. Y., Lee, J. W., Lee, J. I., and Kwack, S. J. (2005) Effect of Slaughter Weight on the Blood Profile and Pork Qualities if Japan Berkshire. Kor. J. Food Sci. Ani. Resour. 25, 409-414.
  15. Lee, J. R., Joo, Y. K., Shin, W. J., Cho, K. J., Lee, J. W., Lee, J. I., Lee J. E., and Do, C. H. (2004) Comparison of Carcass and Pork Physical Characteristics by Market Weight and Gender of Berkshire. Kor. J. Food Sci. Ani. Resour. 24, 108-114.
  16. Park, B. Y., Cho, S. H., Yoo, Y. M., Kim, J. H., Chae, H. S., Ahn, J. N., Kim, Y. K., Lee, J. M., and Yoon, S. K. (2002) Studies on pork quality by different $pH_{24}$ values. J. Anim. Sci. Technol(Kor.). 42, 233-238.
  17. Park, B. Y., Cho, S. H., Yoo, Y. M., Ko, J. J., Kim, J. H., Chae, H. S., Ahn, J. N., Lee, J. M., Kim, Y. K., and Yoon, S. K. (2001) Animal products and processing : Effect of carcass temperature at 3 hr postmortem on pork quality. J. Anim. Sci. Technol(Kor.). 43, 949-954.
  18. Park, B. Y., Yoo, Y. M., Kim, J. H., Cho, S. H., Kim, S. T., Lee, J. M., and Kim, Y. K. (1999) Effect of intramuscular fat contents on meat qualities of pork loins. Kor. J. Anim. Sci. 41, 59-64.
  19. Prestat, C., Schlikau, J., Brewer, M. S., and McKeith, F. K. (2001) Cooking method and endpoint temperature on sensory and color characteristics of pumped pork loin. Meat Sci. 60, 321-434.
  20. Ramsey, C. B., Tribble, L. F., Wu, C., and Lind, K. D. (1990) Effects of grams, marbling, and sex on pork tenderness and composition. J. Anim. Sci. 68, 148-154.
  21. Ryu, Y. C., Choi, Y. M., Lee, S. H., Shin, H. G., Choe, J. H., Kim, J. M., Hong, K. C., and Kim, B. C. (2008) Comparing the histochemical characteristics and meat quality traits of different pig breeds. Meat Sci. 80, 363-369 https://doi.org/10.1016/j.meatsci.2007.12.020
  22. SAS. (1996) SAS/STAT user's guide, 8th ed. SAS Institute Inc. Cary, NC, USA.
  23. Suzuki, K., Shibata, T., Kadowaki, H., Abe, H., and Toyoshima, T. (2003) Meat quality comparison of Berkshire, Duroc and crossbred pigs sired by Berkshire and Duroc. Meat Sci. 64, 35-42. https://doi.org/10.1016/S0309-1740(02)00134-1
  24. van der Wal, P. G. (1995) Oorzaken voor variatie in varkensvleesk waliteit. Resultaten van Nederlands onderzoek. Vleeswetenschap. 1:20-25.
  25. van der Wal, P. G., Bolink, A. H., and Merkus, G. S. M. (1988) Research note: Differences in quality characteristics of normal, PSE and DFD pork. Meat Sci. 24, 79-84. https://doi.org/10.1016/0309-1740(89)90009-0
  26. van der Wal, P. G., Engel, B., and Hulsegge, B. (1997) Causes for variation in pork quality. Meat Sci. 46, 319-327. https://doi.org/10.1016/S0309-1740(97)00026-0
  27. Warris, P. D., Brown, S. N., Edwards, J. E. and Knowles T. G. (1995) Effect of lairage time on levels of stress and meat quality in pigs. proc. EU-Seminar: New information on welfare and meat quality of pig related to handling, transport and lairage conditions. Mariensee, Germany. pp. 163-170.
  28. 김경량, 최윤상, 김기현, 정해동, 홍성현, 박민지, 최윤숙. 2008. 육가공산업의 장기적 발전 방안에 관한 연구-1부 경제분야. 강원대학교, (사)한국육가공협회. p. 21.

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