胍基乙酸对胡羊生产性能、血清生化、肉质和瘤胃发酵的影响

Animals Pub Date : 2024-07-12 DOI:10.3390/ani14142052
Huayun Jin, Zhijian Du, Xiaoyu Fan, Liwen Qin, Weiwei Liu, Yan Zhang, Jingnan Ren, Changchuan Ye, Qinghua Liu
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摘要

胍基乙酸(GAA)可通过刺激肌酸的生物合成,有效改善能量和蛋白质的代谢。本研究探讨了 GAA 对胡羊生产性能、血清生化、肉质和瘤胃发酵的影响。我们将 144 只断奶的雄性胡羊(体重 16.91 ± 3.1 千克)随机分为四组,每组 12 只,每组 3 个重复。日粮中分别添加 0(CON)、500(GAA-1)、750(GAA-2)和 1000 mg/kg(GAA-3)的 GAA(饲料重量)。经过 90 天的综合实验后,我们发现添加 GAA 对肌肉的各种参数都有显著影响。具体而言,它能显著提高动物的日平均生长量(ADG),改善肌肉的剪切力和纤维直径,同时还能降低滴水损失和肌纤维密度。此外,在饲料中添加 GAA 还能显著提高血清中高密度脂蛋白胆固醇(HDL-C)、总蛋白(TP)和球蛋白(GLB)的浓度,以及超氧化物歧化酶(SOD)和谷胱甘肽过氧化物酶(GSH-Px)的酶活性。同时,血清中甘油三酯(TG)和丙二醛(MDA)的水平也有所下降。此外,GAA 还降低了瘤胃液的 pH 值和醋酸-丙酸比值,增加了总挥发性脂肪酸(TVFA)和氨态氮(NH3-N)水平。此外,GAA 还能上调胡羊肌肉中乙酰-CoA 羧化酶(ACC)基因的表达。总之,我们的研究结果表明,补充 GAA 不仅能提高肌肉质量,还能对血清生化和瘤胃代谢产生积极影响,使其成为改善胡羊整体健康和生产性能的潜在候选物质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Guanidinoacetic Acid on Production Performance, Serum Biochemistry, Meat Quality and Rumen Fermentation in Hu Sheep
Guanidinoacetic acid (GAA) can effectively improve the metabolism of energy and proteins by stimulating creatine biosynthesis. We present a study exploring the impact of GAA on production performance, serum biochemistry, meat quality and rumen fermentation in Hu sheep. A total of 144 weaned male Hu sheep (body weight 16.91 ± 3.1 kg) were randomly assigned to four groups with three replicates of twelve sheep in each group. The diets were supplemented with 0 (CON), 500 (GAA−1), 750 (GAA−2) and 1000 mg/kg (GAA−3) of GAA (weight of feed), respectively. After a comprehensive 90-day experimental period, we discovered that the supplementation of GAA had a remarkable impact on various muscle parameters. Specifically, it significantly enhanced the average daily growth (ADG) of the animals and improved the shear force and fiber diameter of the muscle, while also reducing the drip loss and muscle fiber density. Furthermore, the addition of GAA to the feed notably elevated the serum concentrations of high-density lipoprotein cholesterol (HDL−C), total protein (TP) and globulin (GLB), as well as the enzyme activity of superoxide dismutase (SOD) and glutathione peroxidase (GSH−Px). Concurrently, there was a decrease in the levels of triglycerides (TG) and malondialdehyde (MDA) in the serum. In addition, GAA decreased the pH and the acetate-to-propionate ratio and increased the total volatile fatty acids (TVFA) and ammoniacal nitrogen (NH3−N) levels of rumen fluid. Additionally, GAA upregulated acetyl-CoA carboxylase (ACC) gene expression in the Hu sheep’s muscles. In conclusion, our findings suggest that GAA supplementation not only enhances muscle quality but also positively affects serum biochemistry and ruminal metabolism, making it a potential candidate for improving the overall health and performance of Hu sheep.
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