Meng Sihan, Zhang Yanli, Lv Shipeng, Zhang Zhengkai, Liu Xuexue, Jiang Lin
Laboratory of Animal (Poultry) Genetics Breeding and Reproduction, Ministry of Agriculture, Institute of Animal Science, Chinese Academy of Agricultural Sciences (CAAS), Beijing, China.
College of Animal Science, Xinjiang Agricultural University, Urumqi, China.
Front Vet Sci. 2023 May 5;10:1162953. doi: 10.3389/fvets.2023.1162953. eCollection 2023.
With their enormous muscle mass and athletic ability, horses are well-positioned as model organisms for understanding muscle metabolism. There are two different types of horse breeds-Guanzhong (GZ) horses, an athletic breed with a larger body height (~148.7 cm), and the Ningqiang pony (NQ) horses, a lower height breed generally used for ornamental purposes-both inhabited in the same region of China with obvious differences in muscle content. The main objective of this study was to evaluate the breed-specific mechanisms controlling muscle metabolism. In this study, we observed muscle glycogen, enzyme activities, and LC-MS/MS untargeted metabolomics in the gluteus medius muscle of six, each of GZ and NQ horses, to explore differentiated metabolites that are related to the development of two muscles. As expected, the glycogen content, citrate synthase, and hexokinase activity of muscle were significantly higher in GZ horses. To alleviate the false positive rate, we used both MS1 and MS2 ions for metabolite classification and differential analysis. As a result, a total of 51,535 MS1 and 541 MS2 metabolites were identified, and these metabolites can separate these two groups from each other. Notably, 40% of these metabolites were clustered into lipids and lipid-like molecules. Furthermore, 13 significant metabolites were differentially detected between GZ and NQ horses (fold change [FC] value ≥ 2, variable important in projection value ≥1, and value ≤ 0.05). They are primarily clustered into glutathione metabolism (GSH, = 0.01), taurine, and hypotaurine metabolism ( < 0.05) pathways. Seven of the 13 metabolites were also found in thoroughbred racing horses, suggesting that metabolites related to antioxidants, amino acids, and lipids played a key role in the development of skeleton muscle in horses. Those metabolites related to muscle development shed a light on racing horses' routine maintenance and improvement of athletic performance.
凭借其巨大的肌肉质量和运动能力,马是理解肌肉代谢的理想模式生物。有两种不同类型的马品种——关中(GZ)马,一种体型较高(约148.7厘米)的运动型品种,以及宁强矮马(NQ),一种通常用于观赏目的的较矮品种——它们都生活在中国的同一地区,肌肉含量有明显差异。本研究的主要目的是评估控制肌肉代谢的品种特异性机制。在本研究中,我们观察了6匹GZ马和6匹NQ马臀中肌的肌肉糖原、酶活性和LC-MS/MS非靶向代谢组学,以探索与两块肌肉发育相关的差异代谢物。正如预期的那样,GZ马的肌肉糖原含量、柠檬酸合酶和己糖激酶活性显著更高。为了降低假阳性率,我们使用MS1和MS2离子进行代谢物分类和差异分析。结果,共鉴定出51535种MS1代谢物和541种MS2代谢物,这些代谢物能够将这两组区分开来。值得注意的是,这些代谢物中有40%聚为脂质和类脂质分子。此外,在GZ马和NQ马之间差异检测到13种显著代谢物(倍数变化[FC]值≥2,投影重要性变量值≥1,且P值≤0.05)。它们主要聚为谷胱甘肽代谢(GSH,P = 0.01)、牛磺酸和亚牛磺酸代谢(P < 0.05)途径。在这13种代谢物中,有7种也在纯种赛马中被发现,这表明与抗氧化剂、氨基酸和脂质相关的代谢物在马骨骼肌发育中起关键作用。那些与肌肉发育相关的代谢物为赛马的日常维护和运动性能提升提供了线索。