Xiao Peizhen, Ji Hong, Ye Yuantu, Zhang Baotong, Chen Yongsheng, Tian Jingjing, Liu Pin, Chen Liqiao, Du Zhenyu
College of Animal Science and Technology, Northwest A & F University, Yangling, 712100, People's Republic of China.
Key Laboratory of Aquatic Nutrition of Jiangsu Province, School of Biology and Basic Medical Sciences, Soochow University, Soochow, 215123, People's Republic of China.
Fish Physiol Biochem. 2017 Feb;43(1):245-263. doi: 10.1007/s10695-016-0283-6. Epub 2016 Sep 8.
This study was carried out to evaluate whether silymarin supplementation influences growth, lipid metabolism, and health status in grass carp fed elevated dietary lipid levels. The juvenile fish (27.43 ± 0.17 g/tail) were fed six isonitrogenous and isocaloric diets in a factorial design containing 0, 100, or 200 mg kg silymarin (SM0, SM100, SM200) associated with either 4 or 8 % lipid level (low lipid, LL, and high lipid, HL, respectively) for 82 days. The results showed that both dietary silymarin supplementation and high lipid level significantly enhanced growth performance (WG, SGR), protein efficiency ratio, and feed utilization. Silymarin supplementation significantly reduced the VSI, hepatic lipid content, and the total bilirubin concentration in the serum. The gallbladdersomatic index displayed higher in the SM100 groups than SM200 groups. Serum total cholesterol content exhibited lower in the SM100 groups than SM0 groups. Meanwhile, significant interactions were shown for hepatic gene expression of HSL and CPT1 by two factors, and SM100 group had higher hepatic gene expression of HSL and CPT1 in fish fed with the HL diets. The SM100 groups up-regulated hepatic gene expressions of HMGCR and CYP7A1 compared with the SM0 groups. Silymarin supplementation notably reduced the elevated serum MDA content induced by HL treatments. Thus, silymarin supplementation markedly promoted growth and protein efficiency, suppressed lipid accumulation, and improved health status in grass carp fed with high-lipid diets, which might be associated with its enhancement of lipolysis and β-oxidation, antioxidant capacity.
本研究旨在评估补充水飞蓟素是否会影响高脂日粮喂养的草鱼的生长、脂质代谢和健康状况。将幼鱼(27.43±0.17克/尾)按照析因设计投喂六种等氮等热量日粮,日粮中含有0、100或200毫克/千克水飞蓟素(分别为SM0、SM100、SM200),并分别搭配4%或8%的脂质水平(分别为低脂,LL,和高脂,HL),持续82天。结果表明,日粮中补充水飞蓟素和高脂水平均显著提高了生长性能(增重率,特定生长率)、蛋白质效率和饲料利用率。补充水飞蓟素显著降低了脏体比、肝脏脂质含量和血清总胆红素浓度。SM100组的胆囊体指数高于SM200组。SM100组的血清总胆固醇含量低于SM0组。同时,两个因素对肝脏中HSL和CPT1的基因表达有显著交互作用,在高脂日粮喂养的草鱼中,SM100组的肝脏HSL和CPT1基因表达较高。与SM0组相比,SM100组上调了肝脏中HMGCR和CYP7A1的基因表达。补充水飞蓟素显著降低了高脂处理诱导的血清MDA含量升高。因此,补充水飞蓟素显著促进了高脂日粮喂养草鱼的生长和蛋白质效率,抑制了脂质积累,改善了健康状况,这可能与其增强脂肪分解和β-氧化、抗氧化能力有关。