Department of Animal and Poultry Sciences, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, United States.
Department of Animal Science, Oklahoma State University, Stillwater, OK 74078, United States.
Meat Sci. 2018 May;139:97-106. doi: 10.1016/j.meatsci.2017.12.008. Epub 2018 Feb 2.
Anaerobic glycolysis dominates energy metabolism postmortem. Even so, however, recent studies suggest mitochondria can modify postmortem energy metabolism and may contribute to pH decline, possibly affecting the transformation of muscle to meat and fresh meat quality development. Because oxygen is a necessary component of mitochondrial function, oxygenation of porcine and bovine longissimus thoracis et lumborum was determined postmortem using NIR spectroscopy. The ratio of oxy- to deoxymyoglobin decreased with time postmortem in both species. Metabolic analyses of muscle samples collected over the same timeframe also revealed fluctuations in TCA intermediates. Finally, mitochondria collected from muscle of electrically stimulated carcasses differed from those of non-stimulated muscle. Collectively, these data support the thesis that muscle mitochondria function early postmortem and may play a more active part in pH decline and possibly meat quality development.
无氧糖酵解在死后主宰能量代谢。然而,最近的研究表明线粒体可以改变死后的能量代谢,并可能有助于 pH 值下降,可能影响肌肉转化为肉和鲜肉质量的发展。由于氧气是线粒体功能的必要组成部分,因此使用近红外光谱法在死后确定猪和牛背最长肌的氧合作用。在这两个物种中,氧合肌红蛋白与脱氧肌红蛋白的比例随着死后时间的推移而降低。在同一时间段收集的肌肉样本的代谢分析也揭示了 TCA 中间产物的波动。最后,从电刺激胴体肌肉中收集的线粒体与非刺激肌肉中的线粒体不同。总的来说,这些数据支持肌肉线粒体在死后早期起作用的论点,并可能在 pH 值下降和可能的肉质发展中发挥更积极的作用。