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http://dx.doi.org/10.5713/ajas.2011.11494

Effects of Catechins and Wheat Bran on the Beef Color in the Late Fattening Period of Hanwoo Steers  

Kim, Do-Hyung (Department of Animal and Food Sciences, University of Kentucky)
Oh, Young-Kyoon (National Institute of Animal Science, RDA)
Jang, Sun-Sik (National Institute of Animal Science, RDA)
Kwon, Eung-Gi (National Institute of Animal Science, RDA)
Seo, Yong-Joo (National Institute of Animal Science, RDA)
Ok, Ji-Un (National Institute of Animal Science, RDA)
Park, Keun-Kyu (Department of Animal Science, KonKuk University)
Lee, Sung-Sill (Division of Applied Life Science (BK21 Program), Graduate School of Gyeongsang National University)
Kim, Kyoung-Hoon (National Institute of Animal Science, RDA)
Publication Information
Asian-Australasian Journal of Animal Sciences / v.25, no.6, 2012 , pp. 832-838 More about this Journal
Abstract
This study was conducted to evaluate the effects of dietary supplementation of catechins and wheat bran on growth performance, carcass characteristics and meat color using forty-eight Hanwoo steers. Each steer was randomly assigned to one of four treatments. Treatments were as follows: control, catechins, wheat bran, and catechins+wheat bran (CW). At the end of the feeding trial, blood samples were collected for analysis of hemoglobin and iron concentration, and then steers were slaughtered at a commercial abattoir. Catechins, wheat bran, and CW had no effect on growth performance and carcass characteristics. Percentage of myoglobin in M. longissimus dorsi was not affected by treatments. Percentage of oxymyoglobin was increased (p<0.05) by CW and maintained at the highest level (p<0.05) for CW during meat display time up to 24 h. Percentage of metmyoglobin was the lowest (p<0.05) for CW between 5 and 24 h during display time. Although blood iron concentration was not affected by treatments, total concentration of muscle iron was the lowest (p<0.05) for CW compared with that of other treatments. Therefore, the results of the present study suggest that CW may provide good protection against oxidation of myoglobin, and might be an effective dietary supplement for improving meat color in the late fattening period of Hanwoo steers.
Keywords
Catechins; Wheat Bran; Meat Color; Hanwoo Steer;
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1 Monsen, E. R. 1988. Iron nutrition and absorption: dietary factors which impact iron bioavailability. J. Am. Diet Assoc. 88:786-790.
2 Narukawa, M., H. Kimata, C. Noga and T. Watanabe. 2010. Taste characterisation of green tea catechins. Int. J. Food Sci. Technol. 45:1579-1585.   DOI   ScienceOn
3 NRC. 2000. Nutrient requirements of beef cattle. 7th rev. ed. Natl. Acad. Press, Washington, DC, USA.
4 Onyeneho, S. N. and N. S. Hettiarachchy. 1992. Antioxidant activity of durum-wheat bran. J. Agric. Food Chem. 40:1496-1500.   DOI
5 Rhee, K. S. and Y. A. Ziprin. 1987. Modification of the schricker nonheme iron method to minimize pigment effects for red meats. J. Food Sci. 52:1174-1176.   DOI
6 Silanikove, N., Z. Nitsan and A. Pfevolotsky. 1994. Effect of a daily supplementation of polyethylene glycol on intake and digestion of tannin-containing leaves (Cernatonia siliqua) by sheep. J. Agric. Food Chem. 42:2844-2847.   DOI   ScienceOn
7 Van der Oord, A. and J. Wesdorp. 1971. Analysis of pigments in intact beef samples. J. Food Technol. 6:1-13.
8 Van Soest, P. J., J. D. Robertson and B. A. Lewis. 1991. Methods for dietary fiber, neutral detergent fiber, and nonstarch polysaccharides in relation to animal nutrition. J. Dairy Sci. 74:3583-3597.   DOI   ScienceOn
9 Waylan, A. T., P. R. O'Quinn, J. A. Unruh, J. L. Nelssen, R. D. Goodband, J. C. Woodworth, M. D. Tokach and S. I. Koo. 2002. Effects of modified tall oil and vitamin E on growth performance, carcass characteristics, and meat quality of growing-finishing pigs. J. Anim. Sci. 80:1575-1585.
10 Martin, S. K. and C. A. Hibberd. 1990. Intake and digestibility of low-quality native grass hay by beef-cows supplemented with graded-levels of soybean hulls. J. Anim. Sci. 68:4319-4325.
11 Miltenburg, G. A., T. Wensing, F. J. Smulders and H. J. Breukink. 1992. Relationship between blood hemoglobin, plasma and tissue iron, muscle heme pigment, and carcass color of veal. J. Anim. Sci. 70:2766-2772.
12 Agboola, H. A., V. R. Cahill, H. R. Conrad, H. W. Ockerman, N. A. Parrett and R. F. Plimpton. 1988. The effects of a high monosodium phosphate and alpha-tocopherol supplemented milk replacer diet on veal muscle color and composition. J. Anim. Sci. 66:1676-1685.
13 AOAC. 1990. Official methods of analysis. 15th Ed. Association of official analytical chemists. Washington, DC, USA.
14 Disler, P. B., S. R. Lynch, R. W. Charlton, J. D. Torrance, T. H. Bothwell, R. B. Walker and F. Mayet. 1975. The effect of tea on iron absorption. Gut 16:193-200.   DOI   ScienceOn
15 Zhong, R. Z., C. Y. Tan, X. F. Han, S. X. Tang, Z. L. Tan and B. Zeng. 2009. Effect of dietary tea catechins supplementation in goats on the quality of meat kept under refrigeration. Small Rumin. Res. 87:122-125.   DOI   ScienceOn
16 Wensing, T., A. I. Abdelrahim and A. J. H. Schotman. 1986. Some aspects of extra iron supply in veal calf fattening. Vet. Res. Commun. 10:283-296.   DOI   ScienceOn
17 Zembayashi, M., D. K. Lunt and S. B. Smith. 1999. Dietary tea reduces the iron content of beef. Meat Sci. 53:221-226.   DOI   ScienceOn
18 Carpenter, C. E., D. P. Cornforth and D. Whittler. 2001. Consumer preferences for beef color and packaging did not affect eating satisfaction. Meat. Sci. 57:359-363.   DOI   ScienceOn
19 Cassens, R. G., C. Faustman and F. Jimenez-Colmenero. 1988. Modern developments in research on colour of meat. Pages 2-11 in Trends in Modern Meat Technology 2 (Ed. B. Krut, P. VanRoon, and J. Houben). Pudoc, Wageningen, the Netherlands.
20 Fleming, H. P., T. N. Blumer and H. B. Craig. 1960. Quantitative estimations of myoglobin and hemoglobin in beef muscle extracts. J. Anim. Sci. 19:1164-1171.
21 Goto, T., Y. Yoshida, M. Kiso and H. Nagashima. 1996. Simultaneous analysis of individual catechins and caffeine in green tea. J. Chromatogr. A 749:295-299.   DOI   ScienceOn
22 Greene, B., I. M. Hsin and M. Zipser. 1971. Retardation of oxidative color changes in raw ground beef. J. Food Sci. 36:940-942.   DOI
23 Ha, J. K., S. S. Lee, Y. S. Moon and C. H. Kim. 2005. Ruminant nutrition and physiology. SNU Press, Korea. Pages 464-465.
24 Hess, B. W., L. J. Krysl, M. B. Judkins, D. W. Holcombe, J. D. Hess, D. R. Hanks and S. A. Huber. 1996. Supplemental cracked corn or wheat bran for steers grazing endophyte-free fescue pasture: effects on live weight gain, nutrient quality, forage intake, particulate and fluid kinetics, ruminal fermentation, and digestion. J. Anim. Sci. 74:1116-1125.
25 Bray, R. W., E. H. Rupnow, F. M. Hanning, N. N. Allen and R. P. Niedermie. 1959. Effect of feeding methods on veal production and carcass quality. 11. Carcass gades, liver, hide, specific gravity, yield and chemical analysis of muxle. J. Anim. Sci. 18:732.
26 Boccard, R. L., R. T. Naude, D. E. Cronje, M. C. Smit, H. J. Venter, and E. J. Rossouw. 1979. The influence of age, sex and breed of cattle on their muscle characteristics. Meat. Sci. 3:261-280.   DOI   ScienceOn