桑葉提取物對花鱸生長、抗氧化、肝腸健康和肌肉品質的影響

    Liver and Intestinal Health, and Muscle Quality of Seabass (Lateolabrax maculatus)

    • 摘要:
      目的 探究短期(30 d)和長期(60 d)飼喂桑葉提取物(MLE)對花鱸生長性能、血清生化、抗氧化能力、肝腸組織形態和肌肉品質的影響,為MLE在花鱸飼料中的應用提供參考。
      方法 基於基礎飼料,添加0%(對照)和0.5% MLE配製兩組等氮等脂飼料,於池塘網箱中飼喂平均體質量約150.0 g的花鱸,分別於30 d和60 d采集血清、腸道、肝髒和肌肉並開展生理生化指標分析。
      結果 短期和長期飼喂MLE均能提高花鱸生長性能、降低飼料係數,但差異不顯著。血清抗氧化和生化結果顯示,與對照組相比,飼喂MLE 30 d時,花鱸血清總膽固醇(T-CHOL)、高密度脂蛋白膽固醇、甘油三酯和葡萄糖含量顯著降低,超氧化物歧化酶和還原型穀胱甘肽活性分別顯著升高31.05%和12.00%;60 d時花鱸血清穀草轉氨酶(AST)、穀丙轉氨酶(ALT)活性和丙二醛含量分別顯著降低20.99%、32.57%和23.10%。與對照組相比,飼喂MLE 30 d和60 d的花鱸腸道脂肪酶、肝髒堿性磷酸酶(ALP)活性分別顯著提高24.10%和38.55%、69.40%和32.28%;飼喂MLE 60 d的花鱸肝髒溶菌酶活性顯著提高24.90%。腸道和肝髒組織形態學結果顯示,飼喂MLE 30 d的花鱸腸絨毛高度和寬度分別比對照組顯著提高22.90%和24.11%,60 d時肝細胞空泡化和細胞核偏移症狀明顯減少。肌肉營養成分分析發現,與對照組相比,飼喂MLE 30 d的花鱸肌肉鮮味氨基酸和必需氨基酸含量分別顯著升高3.40%和3.49%,粗脂肪含量顯著降低20個百分點,總氨基酸和肌苷酸含量無顯著差異。此外,隨著飼喂時間延長,兩組魚的增重率、血清T-CHOL含量、AST和ALT活性、總抗氧化能力、腸道胰蛋白酶活性、絨毛高度、肌層厚度及肌肉粗脂肪含量均顯著升高,肝髒ALP活性、腸絨毛寬度、肌肉蘇氨酸和鮮味氨基酸含量均顯著降低。
      結論 短期飼喂MLE能促進花鱸腸道組織發育,降低血脂和肌肉粗脂肪含量,並顯著提高花鱸血清的抗氧化能力、肌肉鮮味氨基酸和必需氨基酸含量,提升肌肉品質;長期投喂MLE則更有利於改善花鱸肝髒健康。

       

      Abstract:
      Objective This study aimed to investigate the effects of short-term (30 d) and long-term (60 d) feeding with mulberry leaf extract (MLE) on growth performance, serum biochemical parameters, antioxidant capacity, histomorphology of liver and intestine, and muscle quality of seabass (Lateolabrax maculatus), providing references for the application of MLE in L. maculatus feed.
      Method Based on the basal diet, two isonitrogenous and isolipidic diets containing 0% (CK) and 0.5% MLE were formulated. L. maculatus with an average initial weight of 150.0 g were fed in pond cages, with serum, intestine, liver, and muscle samples collected at 30 d and 60 d for physiological and biochemical analysis.
      Result Both short-term (30 d) and long-term (60 d) feeding with MLE improved the growth performance and reduced the feed conversion ratio of L. maculatus, but the differences were not significant. Serum antioxidant and biochemical results showed that compared with the CK, after 30 days of feeding with MLE, the total cholesterol (T-CHOL), high-density lipoprotein cholesterol, triglyceride, and glucose contents in serum were significantly reduced, while superoxide dismutase and reduced glutathione activities increased significantly by 31.05% and 12.00%, respectively. After 60 days, the aspartate aminotransferase (AST), alanine aminotransferase (ALT) activities, and malondialdehyde content in serum were decreased significantly by 20.99%, 32.57%, and 23.10%, respectively. Compared with the CK, the lipase activity in intestine and alkaline phosphatase activity (ALP) in liver of L. maculatus fed with MLE for 30 d and 60 d were significantly increased by 24.10% and 38.55%, 69.40% and 32.28%, respectively; The lysozyme activity in liver of L. maculatus fed with MLE for 60 d was significantly increased by 24.90%. Histomorphological results of intestine and liver showed that the villus height and width of L. maculatus fed with MLE for 30 d were significantly higher than those of CK by 22.90% and 24.11%, respectively, while the symptoms of hepatocyte vacuolization and nuclear deviation were significantly reduced at 60 d. Analysis of muscle nutritional components revealed that compared with the CK, L. maculatus fed with MLE for 30 days showed a significant increase of 3.40% and 3.49% in umami amino acids and essential amino acids content in muscle respectively, a significant decrease of 20 percentage points in crude fat content, while no significant differences were observed in total amino acids and inosinic acid contents. Additionally, with prolonged feeding duration, both groups of fish showed significant increases in weight gain rate, serum T-CHOL content, AST and ALT activities, total antioxidant capacity, intestinal trypsin activity, villus height and muscle layer thickness, as well as crude fat content in muscle. Meanwhile, significant decreases were observed in hepatic ALP activity, intestinal villus width, threonine and umami amino acids contents in muscle.
      Conclusion Short-term feeding of MLE can promote the development of intestine in seabass, reduce blood lipids and crude lipid content in muscle, significantly enhance the antioxidant capacity of serum, and increase the content of umami amino acids and essential amino acids in muscle, thereby improving muscle quality. On the other hand, long-term feeding of MLE is more beneficial for the health of liver in seabass.