Hossain Md Sakhawat, Koshio Shunsuke
Laboratory of Aquatic Animal Nutrition, Faculty of Fisheries, Kagoshima University, Shimoarata 4-50-20, Kagoshima, 890-0056, Japan.
The United Graduate School of Agricultural Sciences, Kagoshima University, Korimoto 1-21-24, Kagoshima, 890-0065, Japan.
Fish Physiol Biochem. 2017 Dec;43(6):1629-1644. doi: 10.1007/s10695-017-0398-4. Epub 2017 Jul 5.
We determined the effects of complete fishmeal (FM) replacement by alternative protein (soy protein concentrate, SPC) with guanosine monophosphate (GMP) supplementation on growth, digestibility, immunity, blood chemistry profile, and stress resistance of juvenile red sea bream, Pagrus major. FM protein of a FM-based control diet (FM0) was replaced with 33.3 (FM33.3), 66.6 (FM66.7), and 100% (FM100) by SPC protein, and each replacement group was supplemented with 0.4% GMP to formulate four experimental diets. Each diet was randomly allocated to triplicate groups of fish (4.8 g) for 56 days. Results demonstrated that fish fed diet group FM33.3 had the significantly highest final weight, weight gain-specific growth rate, and feed intake. Meanwhile, in comparison to control, growth performance and feed utilization did not significantly differ with 66.7% FM replacement by SPC with GMP supplementation. Apparent digestibility coefficient of protein and lipid also followed a similar trend. All growth, feed utilization, and digestibility parameters were significantly lower in FM100 diet group. Blood urea nitrogen (BUN) and triglycerides (TG) increased (P < 0.05) with increasing FM replacement level by SPC. Interestingly, total cholesterol level reduces with the increasing level of FM replacement by SPC with GMP supplementation. Fish fed FM0 diet group showed the best condition of both oxidative and freshwater stress resistance. Meanwhile, FM33.3 and FM66.7 diet groups showed acceptable conditions. Innate immune responses enhanced with the increasing FM replacement level by SPC with GMP supplementation. In conclusion, FM could be replaced ≤66.7% by SPC with GMP supplementation in diets for red sea bream without any adverse effects on fish performances.
我们研究了用替代蛋白(大豆浓缩蛋白,SPC)替代全鱼粉(FM)并添加鸟苷酸(GMP)对真鲷幼鱼生长、消化率、免疫力、血液生化指标和抗应激能力的影响。以FM为基础的对照饲料(FM0)中的FM蛋白分别被SPC蛋白替代33.3%(FM33.3)、66.6%(FM66.7)和100%(FM100),每个替代组添加0.4%的GMP以配制四种实验饲料。每种饲料随机分配给三组重复的鱼(4.8克),为期56天。结果表明,喂食FM33.3饲料组的鱼最终体重、特定生长率和采食量显著最高。同时,与对照组相比,用SPC替代66.7%的FM并添加GMP时,生长性能和饲料利用率没有显著差异。蛋白质和脂质的表观消化率系数也呈现类似趋势。FM100饲料组的所有生长、饲料利用率和消化率参数均显著较低。随着SPC替代FM水平的增加,血尿素氮(BUN)和甘油三酯(TG)升高(P<0.05)。有趣的是,添加GMP时,随着SPC替代FM水平的增加,总胆固醇水平降低。喂食FM0饲料组的鱼在氧化应激和淡水应激方面表现出最佳状态。同时,FM33.3和FM66.7饲料组表现出可接受的状态。随着SPC替代FM水平的增加并添加GMP,先天免疫反应增强。总之,在真鲷饲料中,SPC添加GMP可替代≤66.7%的FM,且对鱼类性能无任何不利影响。