饲料中添加七水硫酸锌对草鱼生长性能、肌肉品质和脂肪代谢的影响

DIERTARY SUPPLEMENTATION WITH ZINC SULFATE HEPTAHYDRATE ON GROWTH PERFORMANCE, MUSCLE QUALITY, AND LIPID METABOLISM OF GRASS CARP (CTENOPHARYNGODON IDELLUS)

  • 摘要: 实验以草鱼(Ctenopharyngodon idella)为研究对象, 探究饲料中添加七水硫酸锌对草鱼生长性能、肌肉品质性状和脂肪代谢的影响。以七水硫酸锌为锌源配制了3种等氮等脂的饲料, 包括对照(Con)、锌含量50 mg/kg (Zn50)和100 mg/kg (Zn100)的3种实验饲料。实验选取初始体重为(41.70± 0.20) g的草鱼135尾, 平均分成3个处理组, 分别投喂3种实验饲料, 每个处理组设3个重复。在室内循环水中开展为期50d的养殖实验。结果显示: (1)在生长性能方面, 与对照组相比, Zn50组和Zn100组在生长性能上无显著差异(P>0.05)。(2)在肌肉品质性状方面, 与对照组相比, Zn50和Zn100组的肌肉锌含量、羟脯氨酸和胶原蛋白含量显著上升, 粗脂肪含量显著下降(P<0.05); Zn100组的肌肉粗蛋白含量和肌肉硬度显著提高(P<0.05)。与对照组相比, Zn50组显著降低了肌纤维>50 μm的出现比例(P<0.05), Zn100组显著提高了草鱼肌纤维直径在<20 μm、20—50 μm的比例, 显著降低了肌纤维>50 μm的出现比例, 肌纤维密度显著增加(P<0.05)。(3)在脂肪代谢方面, 饲料添加锌显著下调了脂肪合成相关基因srebp-1accfadfas的表达量, 显著上调了脂肪分解基因cpt1acpt1b的基因表达量(P<0.05)。Zn100组的生肌调节因子myodmyogmrf5的基因表达量显著上调(P<0.05)。和对照组相比, Zn50组和Zn100组的生肌调节因子mrf4和肌球蛋白重链myhc基因表达量没有显著差异(P>0.05)。研究表明, 饲料中添加七水硫酸锌可通过提高肌肉胶原蛋白含量和肌纤维密度, 降低肌肉粗脂肪含量而改善草鱼硬度等肌肉品质性状。

     

    Abstract: The experiment investigated the effects of zinc sulfate heptahydrate supplementation in feed on the growth performance, muscle quality traits, and fat metabolism in grass carp (Ctenopharyngodon idella). Three isonitrogenous and isolipidemic feeds were formulated using zinc sulfate heptahydrate as the zinc source: the control diet (Con) and the experimental diet supplemented with 50 and 100 mg/kg zinc contents (Zn50 group and Zn100 group, respectively). A total of 135 grass carp with an initial body weight of (41.70±0.20) g were randomly assigned to three dietary treatment groups and fed with the experimental feed respectively. Each treatment group consisted of three replicates, and the feeding trial lasted for 50 days in an indoor recirculating water system. The results showed that there were no significant differences in growth performance between the Zn50 and Zn100 groups compared to the control group (P>0.05). However, compared with the control group, the muscle zinc content, hydroxyproline, and collagen levels of grass carp muscle quality traits in Zn50 and Zn100 groups increased, and the muscle crude fat content decreased significantly (P<0.05). The Zn100 group showed a significant increase in muscle crude protein content and muscle hardness (P<0.05). Additionally, regarding muscle fiber composition, the Zn50 group significantly reduced the proportion of muscle fibers with diameters>50 μm (P<0.05). In contrast, the Zn100 group significantly increased the proportion of muscle fibers with diameters <20 μm and 20-50 μm, significantly reduced the proportion of fibers >50 μm, and significantly increased muscle fiber density (P<0.05). Moreover, in terms of fat metabolism, zinc supplementation significantly downregulated the expression of fat synthesis-related genes (srebp-1, acc, fad, and fas) while upregulating the expression of fat decomposition-related genes (cpt1a and cpt1b) (P<0.05). Furthermore, the transcriptional levels of myogenic regulatory factors (myod, myog, and mrf5) were significantly upregulated in the Zn100 group (P<0.05), while no significant differences were observed in the expression of mrf4 and myosin heavy chain between the Zn50 and Zn100 groups compared to the control group (P>0.05). In conclusion, the dietary supplementation of zinc sulfate heptahydrate can improve muscle quality traits in grass carp, including muscle hardness, by increasing muscle collagen content and fiber density while reducing muscle crude fat content.

     

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