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Impact of digestible energy levels at three different dietary amino acid levels on growth performance and protein accretion in Atlantic salmon

机译:三种不同饮食氨基酸水平的可消化能量水平对大西洋鲑鱼生长性能和蛋白质积累的影响

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摘要

Nine experimental feeds were prepared, having two different digestible energy levels (DE, 19.5 and 21.5 MJ kg−1) and three different amino acid levels (90%, 100% and 110%), and formulated with two alternative strategies (protein and fat vary freely or only protein varies freely). The design was not balanced and thus the 110% amino acid profile was only studied at 19.5 MJ kg−1 DE. Atlantic salmon (Salmo salar) with a mean body weight of 449±19 g were distributed in 24 tanks and were fed each of the experimental diets for a period of 90 days. The fish were fed three times daily and uneaten feed was collected. Increasing the dietary DE energy from 19.5 to 21.5 MJ kg−1 and the amino acid level from 90% to 100% of the requirement increased the feed intake and growth performance in Atlantic salmon. Increasing the amino acid level from 90% to 100% had a positive effect on the feed intake, growth and protein accretion. Also, the mRNA levels of insulin-like growth factor I in muscle tissues pointed to this positive effect when the amino acid level increased. High probabilities were associated with a negative effect on the feed intake of reducing the amino acid level regardless of the DE level. It is recommended that the balanced amino acid level should not be adjusted by the same percentage rate as dietary energy, and possibly should not be reduced at all in order to maintain optimum performance and profitability.
机译:制备了9种具有两种不同消化能水平(DE,19.5和21.5 MJ kg -1 )和三种不同氨基酸水平(90%,100%和110%)的实验饲料,两种替代策略(蛋白质和脂肪自由变化或仅蛋白质自由变化)。设计不平衡,因此仅在19.5 MJ kg -1 DE下研究了110%的氨基酸谱。将平均体重为449±19 g的大西洋鲑(Salmo salar)分配到24个罐中,并在90天的时间内喂食每种实验饮食。每天喂鱼三次,收集未食用的饲料。饮食中的DE能量从19.5 MJ kg −1 增加到氨基酸水平从所需的90%增加到100%可提高大西洋鲑鱼的摄食量和生长性能。氨基酸含量从90%增加到100%对饲料的摄入,生长和蛋白质积聚有积极影响。同样,当氨基酸水平增加时,肌肉组织中胰岛素样生长因子I的mRNA水平也表明了这种积极作用。无论DE水平如何,高概率都与降低氨基酸水平对饲料摄入量的负面影响有关。建议不要以与饮食能量相同的百分比率来调节氨基酸的平衡水平,并且可能根本不应该降低平衡的氨基酸水平,以保持最佳的性能和利润。

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