Rodehutscord M, Jacobs S, Pack M, Pfeffer E
Institut für Tierernährung, Universität Bonn, Germany.
J Nutr. 1995 Apr;125(4):964-9. doi: 10.1093/jn/125.4.964.
We studied the effect of increasing dietary concentrations of DL-methionine on growth, feed intake, feed conversion ratio and the composition of gain in rainbow trout. Twenty-four groups of 20 trout initially weighing 51 +/- 0.5 g/trout were fed semipurified diets containing 20.1 MJ digestible energy and either 3.0 or 5.8 g cystine/kg dry matter. At each level of cystine, 12 levels of methionine (2 to 11 g/kg dry matter) were achieved by supplementation with graded quantities of DL-methionine. During an experiment of 49 feeding days, no significant effect of the level of dietary cystine was found for any performance trait. Nonlinear responses to increasing dietary methionine concentrations were found for feed intake, growth rate, protein concentration of gain and protein deposition, whereas fat concentration of gain decreased concurrently. Dietary methionine was utilized most efficiently at a concentration of 3.5 g methionine/kg dry matter or 0.17 g/MJ digestible energy. Ninety-five percent of the plateau deposition of body protein was achieved at a dietary methionine concentration of 8 g/kg dry matter or 0.40 g/MJ digestible energy. For achieving 98%, the required concentration was 9.0 g/kg or 0.49 g/MJ. Recommended dietary methionine concentration will depend on the trait chosen.
我们研究了提高饲料中DL-蛋氨酸浓度对虹鳟生长、采食量、饲料转化率及增重组成的影响。将24组初始体重为51±0.5克/尾的20尾虹鳟投喂含20.1兆焦可消化能量且每千克干物质含3.0克或5.8克胱氨酸的半纯化饲料。在每个胱氨酸水平下,通过添加不同量的DL-蛋氨酸实现12个蛋氨酸水平(2至11克/千克干物质)。在为期49天的饲养试验中,未发现饲料胱氨酸水平对任何生产性能指标有显著影响。采食量、生长率、增重的蛋白质浓度和蛋白质沉积对饲料蛋氨酸浓度增加呈非线性反应,而增重的脂肪浓度则同时下降。饲料蛋氨酸浓度为3.5克/千克干物质或0.17克/兆焦可消化能量时利用效率最高。饲料蛋氨酸浓度为8克/千克干物质或0.40克/兆焦可消化能量时可实现95%的体蛋白平台期沉积。要达到98%,所需浓度为9.0克/千克或0.49克/兆焦。推荐的饲料蛋氨酸浓度将取决于所选择的指标。