肌内脂肪
化学
甘油三酯
脂肪酸
脂肪甘油三酯脂肪酶
白藜芦醇
基础(医学)
脂肪组织
最长肌
体重增加
脂蛋白脂酶
脂肪酶
内分泌学
食品科学
内科学
动物科学
体重
脂肪酸合酶
脂解
乙酰辅酶A羧化酶
激素敏感脂肪酶
β氧化
饱和脂肪酸
生物化学
最长肌
温柔
丙酮酸羧化酶
脂肪细胞
作者
Ming Yang,Kaixi Ji,Xiaomu Liu,Zhonghua Wang,Xueyan Lin,Hongbo Zhao,Xianglun Zhang
摘要
This study examined the impact of resveratrol (RES) on growth performance, meat quality, and intramuscular fat (IMF) deposition in steers undergoing finishing. Thirty healthy Angus steers with similar body weights (mean 571.83 ± 5.27 kg) were divided into three groups (n = 10) and fed the following diets for 240 d: 1) basal diet, 2) basal diet containing 400 mg/kg RES, or 3) basal diet containing 800 mg/kg RES. The results showed that supplementation with 400 mg/kg RES significantly increased the final body weight and average daily gain of steers (P < 0.05), whereas the 800 mg/kg group did not show a significant effect. Moreover, 400 mg/kg RES significantly increased the live weight before slaughter and carcass weight while reducing subcutaneous backfat thickness (P < 0.05). Additionally, both levels of RES supplementation significantly increased the IMF content in the Longissimus lumborum (LL) muscle and reduced drip loss, cooking loss, and shear force (P < 0.05). Notably, 400 mg/kg RES supplementation significantly decreased adipose triglyceride lipase and hormone-sensitive lipase activities of LL muscle and acetyl-CoA carboxylase activity was enhanced in all RES-treated groups (P < 0.05). These results integrating transcriptomics, proteomics, real-time quantitative PCR, and Western blotting revealed that RES upregulated both the mRNA and protein expression levels of fatty acid transport-related factors (fatty acid transport protein 1, fatty acid-binding protein 3, and fatty acid-binding protein 4) and lipogenesis-related factors (acetyl-CoA carboxylase and diacylglycerol O-acyltransferase 1) in the PPAR signaling pathway of the LL muscle. Collectively, dietary 400 mg/kg RES improved growth performance and carcass traits, specifically enhancing meat quality and promoting IMF deposition of the LL muscle. These effects were primarily mediated through activating the peroxisome proliferator-activated receptor signaling pathway, which enhances the expression of factors related to fatty acid uptake and transport, lipid synthesis.
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