Facultad de Medicina y Ciencia, Universidad San Sebastián, Providencia, Santiago, Chile.
Departamento de Tecnologías Nucleares, Comisión Chilena de Energía Nuclear, Las Condes, Chile.
Vet Med Sci. 2022 May;8(3):1096-1103. doi: 10.1002/vms3.730. Epub 2022 Mar 29.
Feeding represents 50-70% of the cost of production in salmon farming, higher than any other animal farm. The improvement of this percentage is challenging as the food is thrown into the fish tank, there is no quantification of the amount of food that is consumed by the fish. In consequence, it is difficult to adjust the food composition making it more nutritive or promoting food consumption by fish. In this study, to investigate food consumption, bio-distribution and food residues, leucine containing N (a stable isotope of nitrogen) was used to label the fish food. Atlantic salmon (Salmo salar) weighing 100-120 g were maintained in 30 L tanks at a density of 14 kg/m . Fishes were fed daily at 1% of the fish weight with pellet labelled with N-leucine. The N incorporation was determined 14 hours after the feeding in all the fish organs. Results showed that 14 hours after the administration of a single dose of labelled food to Atlantic salmon enables the detection of the tracer in the whole organism allowing determining the food consumption. Through the analysis of nitrogen use efficiency (NUE), we showed that the trunk, pyloric caeca and head incorporate the highest level of the marker (72.7, 8.7 and 5.7%, respectively). This methodology would permit monitoring feeding to minimize food loss, improve administration methodologies or select the preferred foods for the fish, among others to reduce production costs.
在三文鱼养殖中,喂养占生产成本的 50-70%,高于其他任何动物养殖。由于食物是扔进鱼缸的,无法定量计算鱼的摄食量,因此要提高这一比例具有挑战性。因此,很难调整食物成分,使其更具营养价值或促进鱼类摄食。在这项研究中,为了研究食物消耗、生物分布和食物残留,用含有氮(一种稳定的氮同位素)的亮氨酸来标记鱼饲料。重 100-120 克的大西洋三文鱼(Salmo salar)在 30 升的水箱中以 14 公斤/立方米的密度饲养。鱼每天以 1%的鱼体重喂食含 N-亮氨酸的颗粒。在喂食后 14 小时,测定所有鱼器官中的氮掺入量。结果表明,在给大西洋三文鱼单次喂食标记食物 14 小时后,就能在整个生物体中检测到示踪剂,从而确定食物消耗。通过分析氮利用率(NUE),我们发现,三文鱼的躯干、幽门盲囊和头部对标记物的吸收率最高(分别为 72.7%、8.7%和 5.7%)。这种方法可以监测喂养情况,以最大限度地减少食物损失,改进管理方法,或为鱼类选择首选食物,从而降低生产成本。