首页> 美国卫生研究院文献>Frontiers in Physiology >No evidence for a bioenergetic advantage from forced swimming in rainbow trout under a restrictive feeding regime
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No evidence for a bioenergetic advantage from forced swimming in rainbow trout under a restrictive feeding regime

机译:没有证据表明在限制性饲喂制度下强迫虹鳟游泳会产生生物能优势

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摘要

Sustained swimming at moderate speeds is considered beneficial in terms of the productive performance of salmonids, but the causative mechanisms have yet to be unequivocally established. In the present study, the effects of moderate exercise on the bioenergetics of rainbow trout were assessed during a 15 week growth experiment, in which fish were reared at three different current speeds: 1 BL s−1, 0.5 BL s−1 and still water (≈ 0 BL s−1). Randomly selected groups of 100 fish were distributed among twelve 600 L tanks and maintained on a restricted diet regime. Specific growth rate (SGR) and feed conversion ratio (FCR) were calculated from weight and length measurements every 3 weeks. Routine metabolic rate (RMR) was measured every hour as rate of oxygen consumption in the tanks, and was positively correlated with swimming speed. Total ammonia nitrogen (TAN) excretion rates showed a tendency to decrease with increasing swimming speeds, yet neither they nor the resulting nitrogen quotients (NQ) indicated that swimming significantly reduced the fraction of dietary protein used to fuel metabolism. Energetic budgets revealed a positive correlation between energy expenditure and the current speed at which fish were reared, fish that were forced to swim and were fed restrictively consequentially had poorer growth and feed utilization. The results show that for rainbow trout, water current can negatively affect growth despite promoting minor positive changes in substrate utilization. We hypothesize that this may be the result of either a limited dietary energy supply from diet restriction being insufficient for both covering the extra costs of swimming and supporting enhanced growth.
机译:就鲑鱼的生产性能而言,以中等速度持续游泳被认为是有益的,但其致病机制尚未明确。在本研究中,在15周的生长实验中评估了适度运动对虹鳟鱼生物能的影响,该实验以三种不同的当前速度饲养鱼:1 BL s -1 ,0.5 BL s -1 和静止的水(≈0 BL s -1 )。随机选择的100条鱼的组分配在12个600 L的水箱中,并维持严格的饮食方案。每3周根据体重和体长测量结果计算比生长率(SGR)和饲料转化率(FCR)。每小时测量一次常规代谢率(RMR)作为鱼缸中的氧气消耗率,并与游泳速度成正相关。总氨氮(TAN)的排泄率显示出随着游泳速度的增加而降低的趋势,但是它们和所得的氮商(NQ)均未表明游泳显着降低了用于促进新陈代谢的膳食蛋白质比例。精力充沛的预算显示,能量消耗与当前养鱼速度,被迫游泳并因此受到限制性喂养的鱼的生长速度和饲料利用率较弱之间存在正相关关系。结果表明,对于虹鳟鱼来说,水流尽管能促进底物利用率的小幅积极变化,但却会对生长产生负面影响。我们假设这可能是由于饮食限制所导致的饮食能量供应不足,不足以支付游泳的额外费用和支持增长。

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