Wang Yi, Wu Jianjun, Li Luoxin, Yao Yuanfeng, Chen Chiqing, Hong Yucong, Chai Yi, Liu Wei
The College of Agriculture/College of Animal Sciences, Yangtze University, Jingzhou 434020, China.
Yangtze River Fisheries Research Institute, Chinese Academy of Fishery Sciences, Wuhan 430223, Hubei, China.
Aquac Nutr. 2024 Jan 18;2024:6682798. doi: 10.1155/2024/6682798. eCollection 2024.
We investigated the effects of dietary tannic acid (TA) supplementation of a high-carbohydrate diet on growth, feed utilization, whole-body proximate composition, serum biochemical indicators, antioxidant capacity, digestive enzyme activity, and liver and intestinal health of juvenile largemouth bass, (initial mean weight: 8.08 ± 0.08 g). Five diets were prepared, including a positive control (dietary carbohydrate level, 16%, LC0), a negative control (dietary carbohydrate level, 21%, HC0), and three TA-supplementation diets based on the negative control diet with TA addition at 200, 400, and 800 mg/kg, respectively. After 8 weeks of feeding, the results showed that compared with the LC0 diet, 400-800 mg/kg dietary TA significantly improved the survival rate of largemouth bass ( < 0.05) while significantly reducing its weight-gain rate and specific growth rate ( < 0.05). Compared with the HC0 diet, 400 mg/kg dietary TA significantly increased serum catalase activity ( < 0.05), and significantly decreased serum malondialdehyde, liver glycogen, lightness (L ), and yellowness (b ) ( < 0.05). Moreover, compared with the HC0 diet, 200-400 mg/kg dietary TA effectively improved the vacuolation of hepatocytes caused by the high-carbohydrate diet and reduced the occurrence of intestinal epithelial cell vacuolation and necrosis. In turn, 800 mg/kg dietary TA significantly inhibited protease activity in the pyloric caecum and intestine ( < 0.05). In conclusion, dietary supplementation with TA inhibited protease activity, which resulted in decreased growth performance in largemouth bass. However, it was also found that 200-400 mg/kg TA enhanced the antioxidant capacity of largemouth bass in the case of the high-carbohydrate diet, reduced liver glycogen levels, and improved liver and intestinal health. Finally, it should be noted that, when the dietary TA level exceeded 800 mg/kg, TA appeared to play a pro-oxidation role in the liver, which may cause oxidative stress in the liver.
我们研究了在高碳水化合物饲料中添加单宁酸(TA)对大口黑鲈幼鱼(初始平均体重:8.08±0.08克)生长、饲料利用率、鱼体常规成分、血清生化指标、抗氧化能力、消化酶活性以及肝脏和肠道健康的影响。制备了五种饲料,包括一个阳性对照(饲料碳水化合物水平为16%,LC0)、一个阴性对照(饲料碳水化合物水平为21%,HC0),以及三种基于阴性对照饲料添加TA的饲料,添加量分别为200、400和800毫克/千克。经过8周投喂后,结果表明,与LC0饲料相比,饲料中添加400 - 800毫克/千克TA显著提高了大口黑鲈的存活率(P<0.05),同时显著降低了其增重率和特定生长率(P<0.05)。与HC0饲料相比,饲料中添加400毫克/千克TA显著提高了血清过氧化氢酶活性(P<0.05),并显著降低了血清丙二醛、肝糖原、亮度(L*)和黄度(b*)(P<0.05)。此外,与HC0饲料相比,饲料中添加200 - 400毫克/千克TA有效改善了高碳水化合物饲料引起的肝细胞空泡化,并减少了肠上皮细胞空泡化和坏死的发生。相反,饲料中添加800毫克/千克TA显著抑制了幽门盲囊和肠道中的蛋白酶活性(P<0.05)。总之,饲料中添加TA抑制了蛋白酶活性,导致大口黑鲈生长性能下降。然而,研究还发现,在高碳水化合物饲料条件下,200 - 400毫克/千克TA增强了大口黑鲈的抗氧化能力,降低了肝糖原水平,并改善了肝脏和肠道健康。最后需要注意的是,当饲料中TA水平超过800毫克/千克时,TA在肝脏中似乎起到促氧化作用,这可能会导致肝脏中的氧化应激。