Chen Gangfu, Xu Jing, Li Fengyi, He Mingquan, Yu Xiaolu, Du Wenhao, Ye Yuxue, Liao Ling, Wu Min, Li Huatao
Key Laboratory of Sichuan Province for Conservation and Utilization of Fishes Resources in the Upper Reaches of the Yangtze River, College of Life Sciences, Neijiang Normal University, Neijiang, Sichuan 641100, China.
Aquac Nutr. 2024 May 17;2024:7432096. doi: 10.1155/2024/7432096. eCollection 2024.
Lipid oxidation and hypoxia can lead to oxidative damage in aquatic animals. This study explored the effects of extracts (SDE) on lipid oxidation, fish growth performance, digestive ability, antioxidant capacity, and hypoxia tolerance ability. The results showed that SDE decreased malonaldehyde (MDA), conjugated diene (CD), and peroxide value (PO) in the linoleic acid and linolenic acid as well as in fish feed. Broken-line analysis revealed that the optimal acetone extract of (AE) supplements was 4.02, 4.01, and 4.01 g kg determined from PO, CD, and MDA, respectively. Dietary AE supplementation increased feed intake and specific growth rate and activities of amylase, trypsin, and lipase as well as alkaline phosphatase in fish hepatopancreas and gut. Polynomial regression analysis showed that optimal dietary AE supplement was 3.61 g kg diet determined from weight gain. Furthermore, dietary AE supplementation decreased MDA content and increased glutathione content and the activities of glutathione peroxidase, catalase, superoxide dismutase, and glutathione reductase in fish digestive organs, gills, erythrocytes, and muscle. Dietary AE supplementation increased durative time (DT) and oxygen consumption rate (OCR) under hypoxia condition. Based on polynomial regression analysis, optimal dietary AE supplements were 4.73 and 4.60 g kg diet determined from DT and OCR for hypoxia tolerance in fish, respectively. According to our current research, SDE's antioxidant capacity may be attribute to their phenolic chemicals.
脂质氧化和缺氧会导致水生动物发生氧化损伤。本研究探讨了提取物(SDE)对脂质氧化、鱼类生长性能、消化能力、抗氧化能力和耐缺氧能力的影响。结果表明,SDE降低了亚油酸和亚麻酸以及鱼饲料中的丙二醛(MDA)、共轭二烯(CD)和过氧化值(PO)。折线分析表明,分别由PO、CD和MDA确定的最佳丙酮提取物(AE)补充量为4.02、4.01和4.01 g/kg。日粮中添加AE可增加采食量、特定生长率以及鱼肝脏和肠道中淀粉酶、胰蛋白酶、脂肪酶和碱性磷酸酶的活性。多项式回归分析表明,由体重增加确定的最佳日粮AE添加量为3.61 g/kg。此外,日粮中添加AE可降低鱼消化器官、鳃、红细胞和肌肉中的MDA含量,增加谷胱甘肽含量以及谷胱甘肽过氧化物酶、过氧化氢酶、超氧化物歧化酶和谷胱甘肽还原酶的活性。日粮中添加AE可增加缺氧条件下的持续时间(DT)和耗氧率(OCR)。基于多项式回归分析,分别由DT和OCR确定的用于鱼类耐缺氧的最佳日粮AE添加量为4.73和4.60 g/kg。根据我们目前的研究,SDE的抗氧化能力可能归因于其酚类化学物质。