Effect of Tea Polyphenols, α-Lipoic Acid and Their Joint Use on the Antioxidant and Lipid Metabolism Performance of Hybrid Grouper (♀Epinephelus fuscoguttatus × ♂E. lanceolatu) Fed with High-Lipid Diets.

IF 3 2区 农林科学 Q1 FISHERIES
Aquaculture Nutrition Pub Date : 2023-10-30 eCollection Date: 2023-01-01 DOI:10.1155/2023/1393994
Xiangxiang Suo, Xiaobo Yan, Beiping Tan, Simiao Pan, Tao Li, Hao Liu, Weibin Huang, Shuang Zhang, Yuanzhi Yang, Xiaohui Dong
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Abstract

This study investigated tea polyphenols (TP), α-lipoic acid (ALA) and their joint use on the antioxidant and lipid metabolic performance of hybrid grouper (♀Epinephelus fuscoguttatus × ♂E. lanceolatu) took food with high-fat diets. Six high-lipid diets with isonitrogen (50% of dry matter) and isolipid (17% of dry value) were designed, in which a total content of 1,000 mg/kg additives were added to each group except for the control group (FL). The additives addition ratios in each group were ALA (AL), TP (PL), ALA : TP = 1 : 1 (EL), ALA : TP = 1 : 2 (OL), ALA : TP = 2 : 1 (TL). Each diet was divided into three repeat groups with 30 tails (6.84 ± 0.01 g) in each group and fed for 8 weeks. The consequences were as follows: (1) the highest weight gain rate, specific growth rate, as well as the lowest feed conversion ratio and ingestion rate were discovered in the OL team, which were opposite to the TL group. (2) The body fat content and muscle fat content in the fish oil group were the lowest (P < 0.05), while those of the TL group were the highest. (3) Serum catalase, glutathione peroxidase, total antioxidant capacity, and superoxide dismutase activities were the highest, and the content of reactive oxygen species was the lowest in the OL group. (4) The OL group has the highest hepatic lipase activity and the lowest very low-density lipoprotein content of the liver. In contrast, the TL group had the highest fatty acid synthetase (FAS) activity (P < 0.05). (5) The oil-red aspects of liver tissue displayed lipid particles in other groups were reduced to different degrees compared with FL group, and the OL group showed the best lipid-lowering effect. (6) Compared with the FL group, the relative expressions of FAS, acetyl-CoA carboxylase (acc), and apolipoprotein b-100 (apoB100) genes in the liver were decreased. The relative expressions of lipoprotein lipase (lpl) and peroxisome proliferators-activated receptors-α (pparα) genes related to lipid catabolism were increased, among which the OL group had the most significant change (P < 0.05). (7) According to the 7-day challenge test of Vibrio alginolyticus, the OL group had the highest survival rate. To sum up, both ALA and TP have positive effects on relieving the lipid metabolism disorder of hybrid grouper. If they are jointly used, adding ALA : TP in a ratio of 1 : 2 (OL) may have the best effect, and an addition ratio of 2 : 1 (TL) may inhibit the hybrid grouper growth and increase the feeding cost.

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茶多酚、α-脂肪酸及其联合应用对杂交石斑鱼抗氧化和脂质代谢性能的影响(♀富氏石斑鱼 × ♂E.lanceolatu)。
研究了茶多酚(TP)、α-硫辛酸(ALA)及其联合应用对杂交石斑鱼抗氧化和脂质代谢性能的影响(♀富氏石斑鱼 × ♂E.lanceolatu)食用高脂肪饮食。设计了六种高脂日粮,其中异氮(干物质的50%)和异脂(干值的17%)的总含量为1000 向除对照组(FL)之外的各组中添加mg/kg的添加剂。各组添加剂添加比例分别为ALA(AL)、TP(PL)、ALA : TP = 1. : 1(EL),ALA : TP = 1. : 2(OL),ALA : TP = 2. : 1(TL)。每种饮食分为三个重复组,每组30尾(6.84 ± 0.01 g) 每组喂食8周。结果如下:(1)OL组的增重率、比生长率最高,饲料转化率和摄食率最低,与TL组相反。(2) 鱼油组的体脂含量和肌肉脂含量最低(P<0.05),TL组最高。(3) OL组血清过氧化氢酶、谷胱甘肽过氧化物酶、总抗氧化能力和超氧化物歧化酶活性最高,活性氧含量最低。(4) OL组具有最高的肝脏脂肪酶活性和最低的肝脏极低密度脂蛋白含量。与FL组相比,TL组的脂肪酸合成酶(FAS)活性最高(P<0.05)。(5)其他组肝组织油红方面显示的脂质颗粒均不同程度减少,OL组的降脂效果最好。(6) 与FL组相比,肝脏中FAS、乙酰辅酶A羧化酶(acc)和载脂蛋白b-100(apoB100)基因的相对表达降低。脂蛋白脂酶(lpl)和过氧化物酶体增殖物激活受体-α(pparα)与脂质分解代谢相关基因的相对表达增加,其中OL组的变化最为显著(P<0.05)。综上所述,ALA和TP对缓解杂交石斑鱼脂质代谢紊乱均有积极作用。如果共同使用,则添加ALA : TP的比例为1 : 2(OL)可能具有最佳效果,并且添加比例为2 : 1(TL)可能抑制杂交石斑鱼的生长并增加饲养成本。
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来源期刊
Aquaculture Nutrition
Aquaculture Nutrition 农林科学-渔业
CiteScore
7.20
自引率
8.60%
发文量
131
审稿时长
3 months
期刊介绍: Aquaculture Nutrition is published on a bimonthly basis, providing a global perspective on the nutrition of all cultivated aquatic animals. Topics range from extensive aquaculture to laboratory studies of nutritional biochemistry and physiology. The Journal specifically seeks to improve our understanding of the nutrition of aquacultured species through the provision of an international forum for the presentation of reviews and original research papers. Aquaculture Nutrition publishes papers which strive to: increase basic knowledge of the nutrition of aquacultured species and elevate the standards of published aquaculture nutrition research. improve understanding of the relationships between nutrition and the environmental impact of aquaculture. increase understanding of the relationships between nutrition and processing, product quality, and the consumer. help aquaculturalists improve their management and understanding of the complex discipline of nutrition. help the aquaculture feed industry by providing a focus for relevant information, techniques, tools and concepts.
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