INRA, UR1067, Nutrition, Metabolism and Aquaculture, Pôle d'Hydrobiologie INRA, F-64310 Saint Pée-sur-Nivelle, France.
Br J Nutr. 2013 Mar 14;109(5):816-26. doi: 10.1017/S000711451200205X. Epub 2012 Jul 24.
Metabolic mechanisms underlying the divergent response of rainbow trout (Oncorhynchus mykiss) and Nile tilapia (Oreochromis niloticus) to changes in dietary macronutrient composition were assessed. Fish were fed one of four isoenergetic diets having a digestible protein-to-digestible energy (DP:DE) ratio above or below the optimal DP:DE ratio for both species. At each DP:DE ratio, fat was substituted by an isoenergetic amount of digestible starch as the non-protein energy source (NPE). Dietary DP:DE ratio did not affect growth and only slightly lowered protein gains in tilapia. In rainbow trout fed diets with low DP:DE ratios, particularly with starch as the major NPE source, growth and protein utilisation were highly reduced, underlining the importance of NPE source in this species. We also observed species-specific responses of enzymes involved in amino acid catabolism, lipogenesis and gluconeogenesis to dietary factors. Amino acid transdeamination enzyme activities were reduced by a low dietary DP:DE ratio in both species and in tilapia also by the substitution of fat by starch as the NPE source. Such decreased amino acid catabolism at high starch intakes, however, did not lead to improved protein retention. Our data further suggest that a combination of increased lipogenic and decreased gluconeogenic enzyme activities accounts for the better use of carbohydrates and to the improved glycaemia control in tilapia compared with rainbow tront fed starch-enriched diets with low DP:DE ratio.
本研究旨在评估虹鳟(Oncorhynchus mykiss)和尼罗罗非鱼(Oreochromis niloticus)对膳食宏量营养素组成变化的不同反应的代谢机制。鱼被喂食四种等能量的饲料中的一种,这些饲料的可消化蛋白与可消化能量(DP:DE)的比例高于或低于两种鱼的最佳 DP:DE 比例。在每个 DP:DE 比例下,用可消化淀粉作为非蛋白能量源(NPE)等量替代脂肪。DP:DE 比例不会影响生长,仅略微降低了罗非鱼的蛋白质增益。在 DP:DE 比例较低的虹鳟饲料中,特别是当淀粉作为主要 NPE 来源时,生长和蛋白质利用率大大降低,这突显了 NPE 来源在该物种中的重要性。我们还观察到参与氨基酸分解代谢、脂肪生成和糖异生的酶对膳食因素的特定物种反应。两种鱼的氨基酸转氨酶活性都因低 DP:DE 比而降低,而在罗非鱼中,脂肪被淀粉替代作为 NPE 来源时也降低了这种活性。然而,在高淀粉摄入时,氨基酸分解代谢的减少并没有导致蛋白质保留的改善。我们的数据进一步表明,与虹鳟相比,在富含淀粉的 DP:DE 比低的饲料中,增加的脂肪生成和减少的糖异生酶活性的组合解释了尼罗罗非鱼对碳水化合物的更好利用和血糖控制的改善。