Relationships among glycolytic potential, dark cutting (dark, firm, and dry) beef, and cooked beef palatability1
- 1 July 2002
- journal article
- meat science
- Published by Oxford University Press (OUP) in Journal of Animal Science
- Vol. 80 (7) , 1895-1903
- https://doi.org/10.2527/2002.8071895x
Abstract
One hundred beef carcasses were selected at three packing plants and were used to determine the relationship between glycolytic potential (GP) and dark, firm, and dry (DFD) beef and to determine the effects of DFD status and GP on cooked beef palatability. Eight individual muscles were excised from one hindquarter of each carcass at d 7 postmortem: longissimus lumborum, psoas major, gluteus medius, tensor fasciae latae, rectus femoris, semimembranosus, biceps femoris, and semitendinosus. Ultimate pH, colorimeter readings, and Warner-Bratzler shear force were determined for all eight muscles at d 7 postmortem. A nine-member trained sensory panel evaluated cooked longissimus lumborum, gluteus medius, and semimembranosus steaks. Traits determined solely for the longissimus lumborum were GP (2 × [glycogen + glucose + glucose-6-phosphate] + lactate) and ether-extractable fat. A curvilinear relationship existed between GP and ultimate pH within the longissimus muscle. There appeared to be a GP threshold at approximately 100 μmol/g, below which lower GP was associated with higher ultimate pH and above which GP had no effect on ultimate pH. The greatest pH and muscle color differences between normal and DFD carcasses were observed in the longissimus lumborum, gluteus medius, semimembranosus, and semitendinosus muscles. Cooked longissimus from DFD carcasses had higher shear force values (46% greater) and more shear force variation (2.3 times greater variation) than those from normal carcasses. Dark cutting carcasses also had higher shear force values for gluteus medius (33% greater) and semimembranosus (36% greater) than normal carcasses. Sensory panel tenderness of longissimus, gluteus medius, and semimembranosus was lower for DFD carcasses than for normal carcasses. Longissimus and gluteus medius flavor desirability scores were lower for DFD than for normal carcasses. Steaks from DFD carcasses had more off-flavor comments than steaks from normal carcasses, specifically more “peanutty,” “sour,” and “bitter” flavors. The DFD effect of higher shear force values was approximately five times greater (+3.11 kg vs +0.63 kg) for carcasses with “slight” marbling scores than for carcasses with “small” marbling scores. In general, higher GP was associated with increased tenderness, even among normal carcasses. In conclusion, low GP was associated with DFD beef and resulted in substantially less-palatable cooked steaks.Keywords
This publication has 15 references indexed in Scilit:
- The influence of ultimate pH and intramuscular fat content on pork tenderness and tenderization.Journal of Animal Science, 2001
- A survey of beef muscle color and pH.Journal of Animal Science, 2001
- Using measurements of muscle color, pH, and electrical impedance to augment the current USDA beef quality grading standards and improve the accuracy and precision of sorting carcasses into palatability groups.Journal of Animal Science, 2000
- The effect of the Halothane and Rendement Napole genes on carcass and meat quality characteristics of pigs.Journal of Animal Science, 2000
- Effect of preslaughter handling on muscle glycogen level and selected meat quality traits in beefMeat Science, 1998
- Bos indicus-cross feedlot cattle with excitable temperaments have tougher meat and a higher incidence of borderline dark cuttersMeat Science, 1997
- Using objective measures of muscle color to predict beef longissimus tenderness.Journal of Animal Science, 1997
- The usefulness of muscle color and pH for segregating beef carcasses into tenderness groupsMeat Science, 1991
- An assessment of the role of pH differences in determining the relative tenderness of meat from bulls and steersMeat Science, 1990
- PROFILE OF FIBER TYPES AND RELATED PROPERTIES OF FIVE BOVINE MUSCLESJournal of Food Science, 1977