J. Anim Sci.
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J. Anim Sci. 2009. 87:3739-3750. doi:10.2527/jas.2009-1843
© 2009 American Society of Animal Science

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MEAT SCIENCE AND MUSCLE BIOLOGY

Effects of zilpaterol hydrochloride feeding duration on crossbred beef semimembranosus steak color in aerobic or modified atmosphere packaging1,2

J. A. Gunderson*, M. C. Hunt*,3, T. A. Houser*, E. A. E. Boyle*, M. E. Dikeman*, D. E. Johnson{dagger}, D. L. VanOverbeke{ddagger}, G. G. Hilton{ddagger}, C. Brooks§, J. Killefer#, D. M. Allen||, M. N. Streeter, W. T. Nichols, J. P. Hutcheson and D. A. Yates

* Department of Animal Sciences and Industry, Kansas State University, Manhattan 66506-0201; and {dagger} Department of Statistics, Kansas State University, Manhattan 66506; and {ddagger} Department of Animal Science, Oklahoma State University, Stillwater 74078; and § Department of Animal Science, Texas Tech University, Lubbock 79409; and # Department of Animal Science, University of Illinois, Champaign 61801; and || Consultant, 1525 E. Kay Street, Derby, KS 63037; and Intervet/Schering-Plough Animal Health, DeSoto, KS 66018

3 Corresponding author: hhunt{at}ksu.edu

The objective of this research was to determine the effects of feeding zilpaterol hydrochloride (ZH) for 0, 20, 30, or 40 d before slaughter (ZH0, ZH20, ZH30, or ZH40, respectively) on semimembranosus (SM) color development and stability. A 7.62-cm-thick portion was removed from 60 beef steer SM subprimals and stored (2°C) for 21 d; then two 2.54-cm-thick steaks were cut, overwrapped with polyvinyl chloride (PVC) film, and assigned to 0 or 3 d of display. Remaining portions of the subprimals were stored in a vacuum for 10 d and then enhanced 10% to a meat concentration of 0.3% sodium chloride, 0.35% phosphate, and 0.05% rosemary extract. Steaks were packaged in a high-oxygen (HO-MAP) or carbon monoxide (CO-MAP) modified atmosphere and assigned to 0, 3, or 5 d (HO-MAP) or 0 or 9 d (CO-MAP) of display. The deep (DSM) and superficial (SSM) portions of steaks were evaluated for initial color, display color, discoloration, pH, L*, a*, b*, hue angle, and saturation indices. For steaks in PVC, no differences (P > 0.05) occurred in initial or discoloration color scores because of ZH feeding duration. The enhanced SSM steaks from ZH20 in PVC were brighter red (P < 0.05) than SSM steaks from ZH40 in PVC. The DSM in PVC had less (P < 0.05) pH and paler (P < 0.05) color than the SSM. Display color scores for the DSM of PVC steaks were brighter red (P < 0.05) than the SSM initially (d 0 and 1), but the DSM discolored faster (P < 0.05) than the SSM on d 1 to 3. The SM steaks from steers fed ZH20 or ZH30 were slightly brighter and less discolored during display in PVC than the ZH40 diet. For enhanced steaks in HO-MAP, the DSM of ZH20 and ZH30 diets displayed 4 d and the DSM of ZH20 displayed 5 d was a brighter (P < 0.05) red than the DSM from ZH40. At display d 1 and 5, the SSM of ZH20 steaks in HO-MAP was a brighter (P < 0.05) red than SSM steaks from ZH40. The SSM of ZH40 HO-MAP steaks was darker (P < 0.05) red on d 3 than the SSM from other diets. For enhanced steaks in CO-MAP, ZH30 steaks were brighter (P < 0.05) red than ZH0 or ZH40 steaks on d 0 and 9 of display. Steaks in CO-MAP from all feeding durations were less than 20% discolored through d 9. The DSM was lighter (P < 0.05) than the SSM on d 0 for steaks packaged in HO-MAP and CO-MAP. Feeding cattle ZH for 20 or 30 d will yield steaks with color characteristics equal to or better than steaks from control cattle, whereas feeding ZH for 40 d will likely produce less desirable meat color traits.

Key Words: β-adrenergic agonist • beef • display color • high oxygen and carbon monoxide modified atmosphere packaging • overwrap packaging • zilpaterol hydrochloride







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