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杨贺舒, 孙俊霄, 杨慧君, 樊启学, 袁勇超. 低蛋白饲料对杂交黄颡鱼幼鱼生长性能、体组成、转氨酶活性和抗氧化能力的影响[J]. 水生生物学报, 2022, 46(1): 79-87. DOI: 10.7541/2021.2020.197
引用本文: 杨贺舒, 孙俊霄, 杨慧君, 樊启学, 袁勇超. 低蛋白饲料对杂交黄颡鱼幼鱼生长性能、体组成、转氨酶活性和抗氧化能力的影响[J]. 水生生物学报, 2022, 46(1): 79-87. DOI: 10.7541/2021.2020.197
YANG He-Shu, SUN Jun-Xiao, YANG Hui-Jun, FAN Qi-Xue, YUAN Yong-Chao. EFFECTS OF LOW-PROTEIN DIET ON GROWTH PERFORMANCE, BODY COMPOSITION, TRANSAMINASE ACTIVITY AND ANTIOXIDANT CAPACITY OF YELLOW CATFISH HYBRID[J]. ACTA HYDROBIOLOGICA SINICA, 2022, 46(1): 79-87. DOI: 10.7541/2021.2020.197
Citation: YANG He-Shu, SUN Jun-Xiao, YANG Hui-Jun, FAN Qi-Xue, YUAN Yong-Chao. EFFECTS OF LOW-PROTEIN DIET ON GROWTH PERFORMANCE, BODY COMPOSITION, TRANSAMINASE ACTIVITY AND ANTIOXIDANT CAPACITY OF YELLOW CATFISH HYBRID[J]. ACTA HYDROBIOLOGICA SINICA, 2022, 46(1): 79-87. DOI: 10.7541/2021.2020.197

低蛋白饲料对杂交黄颡鱼幼鱼生长性能、体组成、转氨酶活性和抗氧化能力的影响

EFFECTS OF LOW-PROTEIN DIET ON GROWTH PERFORMANCE, BODY COMPOSITION, TRANSAMINASE ACTIVITY AND ANTIOXIDANT CAPACITY OF YELLOW CATFISH HYBRID

  • 摘要: 本实验以杂交黄颡鱼(Pelteobagrus fulvidraco ♀ × Pelteobagrus vachelli ♂)幼鱼为研究对象, 探究低蛋白饲料中补充蛋氨酸和赖氨酸对杂交黄颡鱼的生长性能、体组成、转氨酶活性及抗氧化能力的影响。实验设计 5 组饲料, 设置 3 个蛋白梯度(42%、37% 和 32%), 分别记为对照组、LP1 组和 LP2 组, 并参照对照组饲料中赖氨酸与蛋氨酸含量, 向 LP1 组和 LP2 组添加晶体赖氨酸和蛋氨酸, 记为 LP1+AA 组与 LP2+AA组。将实验鱼随机分为 5 组, 分别等量投喂 5 组饲料, 饲养 8 周后测定杂交黄颡鱼的生长指标、常规营养成分、转氨酶活性与抗氧化指标。结果表明, 与对照组饲料相比, (1)LP1 组与 LP2 组杂交黄颡鱼幼鱼增重率与特定生长率显著降低(P<0.05), LP1+AA 与LP2+AA 组杂交黄颡鱼幼鱼的增重率与特定生长率没有显著性差异(P>0.05); (2)LP2 组与 LP2+AA 组杂交黄颡鱼下丘脑 GH、IGF-1及垂体 GH mRNA相对表达量均显著降低(P<0.05), 其余各组均没有显著性差异(P>0.05); (3)各实验组肌肉与全鱼的常规营养成分均没有显著性差异(P>0.05); (4)各实验组肝脏与血清中的 AST 活性均没有显著性差异(P>0.05), LP2 组血清中 ALT 活性显著高于对照组及 LP1+AA 组(P<0.05); (5)LP1+AA 组肝脏与血清中 SOD、CAT、T-AOC、MDA、ROS及肝脏中Cu/Zn-SOD、Mn-SOD、CAT mRNA相对表达量均没有显著性差异(P>0.05); LP1 组、LP2 组和LP2+AA 组血清中 CAT 活性及肝脏中 T-AOC 均显著降低(P<0.05); LP2 组和LP2+AA 组肝脏与血清中 ROS 水平均显著升高(P<0.05), 肝脏中Cu/Zn-SOD、CAT mRNA相对表达量均显著降低(P<0.05)。

     

    Abstract: High protein content easily leads to nutrient imbalance in feed, reduces the efficiency of digestion and utilization of nutrients in fish, and increases the discharge of pollutants in aquaculture. It not only increases feed cost, but also easily causes water environment pollution. Reducing feed protein level can effectively reduce ammonia nitrogen emission in animal feces, but it may lead to the degradation of animal production performance. Supplementation of restricted amino acids can improve the protein utilization rate of animals and also reduce the nitrogen emission in the breeding process. Yellow catfish (Pelteobagrus fulvidraco) is a benthic small economic fish with a large aquaculture yield. This experiment with yellow catfish hybrid larvae as the research object, explore the supplemental methionine and lysine of low protein feed for yellow catfish hybrid larvae growth performance, body composition, transaminase activity and the influence of antioxidant capacity, to cross the yellow catfish hybrid nutrition requirements and related research, and health breeding to provide theoretical basis and reference. In this study, five experimental diets were formulated and there were three protein levels as 42% (control), 37% (LP1) and 32% (LP2). By using the control diet as standard, other two low-protein diets (37% and 32%) and supplementation with lysine and methionine (LP1+AA and LP2+AA) were formulated. Each diet was fed to triplicate groups of fish for 8 weeks, and the initial weight of fish was (0.96±0.01) g. At the end of the experiment, the growth performance, body composition, transaminase activity and antioxidant capacity of yellow catfish hybrid were measured. The results showed that compared with the control group, (1) the weight gain rate and specific growth rate of yellow catfish hybrid in LP1 group and LP2 group reduced significantly (P<0.05). There was no significant difference in weight gain rate and specific growth rate between LP1+AA and LP2+AA yellow catfish hybrid (P>0.05). (2) The relative expression levels of GH, IGF-1 in pituitary and GH in hypothalamus of yellow catfish hybrid in LP2 group and LP2+AA group decreased significantly (P<0.05), and there was no significant difference between the other groups with control group (P>0.05). (3) There was no significant difference in water content, crude protein, crude fat and crude ash content between muscle and whole fish in each experimental group (P>0.05). (4) There was no significant difference in AST activity in liver and serum among all the groups (P>0.05), and serum ALT activity in LP2 group was significantly higher than that in the control group and LP1+AA group (P<0.05). (5) CAT activity in serum, T-AOC, Cu/Zn-SOD, Mn-SOD and CAT mRNA relative expression in liver of both LP2 and LP2+AA groups decreased, and ROS content in liver and serum increased. There were no significant differences in SOD, CAT, T-AOC, MDA and ROS in liver and serum and Cu/Zn-SOD, Mn-SOD and CAT mRNA relative expression in liver of LP1+AA groups (P>0.05). These results showed that reducing the protein content of both 5% and 10% in the feed would negatively affect the growth performance and antioxidant capacity of yellow catfish hybrid. Reducing the protein content of the feed by 5% and adding lysine and methionine would not significantly affect the growth performance and antioxidant capacity of yellow catfish hybrid. Therefore, we suggest that the protein content in feed can be reduced by supplementing amino acid in feed production.

     

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