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The energetic consequence of specific dynamic action in southern bluefin tuna Thunnus maccoyii

机译:南部蓝鳍金枪鱼Thunnus maccoyii特定动力作用的能量结果

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摘要

The effect of feeding on the rate of oxygen consumption (M-O2) of four groups of three southern bluefin tuna Thunnus maccoyii (SBT) was examined in a large static respirometer at water temperatures of 18.2 - 20.3 degrees C. Six feeding events of rations between 2.1 - 8.5% body mass (%M-b) of Australian sardines (Sardinops neopilchardus) were recorded (two of the groups were fed twice). Before feeding, fish swam between 0.71 and 1.4 body lengths s(-1) (BL s(-1)) and the routine metabolic rate (RMR) was 366 +/- 32.5 mg kg(-1) h(-1) (mean +/- s.e.m.). For all trials, M-O2 was elevated post feeding, presumably as a result of specific dynamic action (SDA). Swimming velocity was also elevated post feeding for periods similar to that of M-O2 (between 20 - 45 h, longest for the largest rations). Post feeding swimming velocity increased to between 0.87 - 2.6 BL s(-1) and was also dependent on ration consumed. It is suggested that the purpose of increased post-feeding swimming velocity was to increase ventilation volume as a response to the enhanced metabolic demand associated with SDA. Peak post-prandial M-O2 increased linearly with ration size to a maximum of 1290 mg kg(-1) h(- 1), corresponding to 2.8 times the RMR. When converted to its energy equivalent, total magnitude of SDA was linearly correlated with ration size to a maximum of 192 kJ kg(-1) h(-1), and as a proportion of gross energy ingested (SDA coefficient), it averaged 35 +/- 2.2%. These results demonstrate that, although the factorial increase of SDA in SBT is similar to that of other fish species, the absolute energetic cost of SDA is much higher. These results support the contention that tuna are energy speculators, gambling high rates of energy expenditure for potentially higher rates of energy returns. The ration that southern bluefin tuna require to equal the combined metabolic costs of SDA and RMR is estimated in this study to be 3.5% M-b of Australian sardines per day.
机译:在大型静态​​呼吸计中,在水温为18.2-20.3摄氏度的条件下,研究了饲喂对四组三个南方蓝鳍金枪鱼金枪鱼(SBT)的耗氧率(M-O2)的影响。六次饲喂配给记录到澳大利亚沙丁鱼(Sardinops neopilchardus)的体重在2.1%至8.5%之间(两组)(两次喂食两次)。喂食前,鱼游在0.71至1.4体长s(-1)(BL s(-1))之间,常规代谢率(RMR)为366 +/- 32.5 mg kg(-1)h(-1)(平均值+/- sem)。对于所有试验,M-O2在进食后均升高,大概是由于特定的动态作用(SDA)导致的。喂食后的游泳速度也提高了,类似于M-O2(在20-45小时之间,最大口粮时间最长)。喂食后的游泳速度增加到0.87-2.6 BL s(-1)之间,并且还取决于消耗的口粮。建议提高喂食后游泳速度的目的是增加通气量,以应对与SDA相关的代谢需求增加。餐后M-O2峰值随口粮大小线性增加,最大为1290 mg kg(-1)h(-1),相当于RMR的2.8倍。当换算成它的能量当量时,SDA的总大小与口粮大小线性相关,最大为192 kJ kg(-1)h(-1),占摄入的总能量的比例(SDA系数)平均为35 +/- 2.2%。这些结果表明,尽管SBT中SDA的阶乘增加与其他鱼类相似,但SDA的绝对能量消耗要高得多。这些结果支持了金枪鱼是能源投机者的论点,他们将高能源消耗率赌博以获取更高的能源回报率。在这项研究中,南部蓝鳍金枪鱼所需的定量等于SDA和RMR的总代谢成本,相当于澳大利亚沙丁鱼每天M-b的3.5%。

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