Muroya Susumu
Animal Products Research Group, NARO Institute of Livestock and Grassland Science (NILGS), Tsukuba, Ibaraki 305-0901, Japan.
Anim Biosci. 2023 Feb;36(2):374-384. doi: 10.5713/ab.22.0370. Epub 2022 Nov 14.
Skeletal muscle metabolism regulates homeostatic balance in animals. The metabolic impact persists even after farm animal skeletal muscle is converted to edible meat through postmortem rigor mortis and aging. Muscle metabolites resulting from animal growth and postmortem storage have a significant impact on meat quality, including flavor and color. Metabolomics studies of postmortem muscle aging have identified metabolisms that contain signatures inherent to muscle properties and the altered metabolites by physiological adaptation, with glycolysis as the pivotal metabolism in postmortem aging. Metabolomics has also played a role in mining relevant postmortem metabolisms and pathways, such as the citrate cycle and mitochondrial metabolism. This leads to a deeper understanding of the mechanisms underlying the generation of key compounds that are associated with meat quality. Genetic background, feeding strategy, and muscle type primarily determine skeletal muscle properties in live animals and affect post-mortem muscle metabolism. With comprehensive metabolite detection, metabolomics is also beneficial for exploring biomarker candidates that could be useful to monitor meat production and predict the quality traits. The present review focuses on advances in farm animal muscle metabolomics, especially postmortem muscle metabolism associated with genetic factors and muscle type.
骨骼肌代谢调节动物体内的稳态平衡。即使农场动物的骨骼肌通过死后僵直和成熟转化为可食用的肉,其代谢影响仍然存在。动物生长和死后储存产生的肌肉代谢产物对肉的品质有重大影响,包括风味和颜色。死后肌肉成熟的代谢组学研究已经确定了包含肌肉特性固有特征以及通过生理适应而改变的代谢产物的代谢过程,其中糖酵解是死后成熟过程中的关键代谢过程。代谢组学在挖掘相关的死后代谢过程和途径(如柠檬酸循环和线粒体代谢)方面也发挥了作用。这有助于更深入地了解与肉质相关的关键化合物生成的潜在机制。遗传背景、饲养策略和肌肉类型主要决定活体动物的骨骼肌特性,并影响宰后肌肉代谢。通过全面的代谢产物检测,代谢组学也有助于探索可能有助于监测肉类生产和预测品质性状的生物标志物候选物。本综述重点关注农场动物肌肉代谢组学的进展,特别是与遗传因素和肌肉类型相关的宰后肌肉代谢。