Khan J R, Lazado C C, Methling C, Skov P V
DTU Aqua, Section for Aquaculture, North Sea Research Centre, Technical University of Denmark, P.O. Box 101, 9850, Hirtshals, Denmark.
Nofima, The Norwegian Institute of Food, Fisheries and Aquaculture Research, Ås, Norway.
Fish Physiol Biochem. 2018 Feb;44(1):329-341. doi: 10.1007/s10695-017-0438-0. Epub 2017 Nov 3.
Rainbow trout Oncorhynchus mykiss (~ 180 g, 16 °C and < 5 kg m) that were feed deprived and kept in total darkness showed a significant increase in critical swimming speed (U ) between 1 and 12 days of deprivation (from 3.35 to 4.46 body length (BL) s) with no increase in maximum metabolic rate (MMR). They also showed a significant decrease in the estimated metabolic rate at 0 BL s over 12 days which leads to a higher factorial aerobic metabolic scope at day 12 (9.38) compared to day 1 (6.54). Routine metabolic rates were also measured in ~ 90 g rainbow trout that were swimming freely in large circular respirometers at 16 °C. These showed decreasing consumption oxygen rates and reductions in the amount of oxygen consumed above standard metabolic rate (a proxy for spontaneous activity) over 12 days, though this happened significantly faster when they were kept in total darkness when compared to a 12:12-h light-dark (LD) photoperiod. Weight loss during this period was also significantly reduced in total darkness (3.33% compared to 4.98% total body weight over 12 days). Immunological assays did not reveal any consistent up- or downregulation of antipathogenic and antioxidant enzymes in the serum or skin mucus of rainbow trout between 1 and 12 days of feed and light deprivation. Overall, short periods of deprivation do not appear to significantly affect the performance of rainbow trout which appear to employ a behavioural energy-sparing strategy, albeit more so in darkness than under a 12:12-h LD regime.
饥饿且处于完全黑暗环境中的虹鳟(Oncorhynchus mykiss,体重约180克,水温16°C,体长小于5千克米)在饥饿1至12天期间,临界游泳速度(U)显著增加(从3.35体长/秒增加到4.46体长/秒),而最大代谢率(MMR)没有增加。它们在12天内估计的0体长/秒时的代谢率也显著下降,这导致第12天的有氧代谢范围系数(9.38)高于第1天(6.54)。还对约90克重的虹鳟在16°C的大型圆形呼吸计中自由游泳时的常规代谢率进行了测量。结果显示,在12天内,它们的耗氧率下降,高于标准代谢率的耗氧量(自发活动的一个指标)减少,不过与12:12小时光暗(LD)光周期相比,当它们处于完全黑暗环境中时,这种情况发生得明显更快。在此期间,完全黑暗环境中的体重减轻也显著减少(12天内体重减轻3.33%,而12:12小时光暗光周期下为4.98%)。免疫分析未发现虹鳟在饥饿和光照剥夺1至12天期间血清或皮肤黏液中抗病原体和抗氧化酶有任何一致的上调或下调。总体而言,短时间的剥夺似乎不会显著影响虹鳟的性能,虹鳟似乎采用了行为节能策略,尽管在黑暗环境中比在12:12小时光暗光周期下更明显。