首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Life in the fast lane: The free-ranging activity, heart rate and metabolism of an Antarctic fish tracked in temperate waters
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Life in the fast lane: The free-ranging activity, heart rate and metabolism of an Antarctic fish tracked in temperate waters

机译:快车道上的生活:在温带水域中追踪的南极鱼的自由活动,心律和新陈代谢

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The fish species Notothenia angustata inhabits temperate waters (10 ℃), yet retains physiological traits that show it once existed at sub-zero temperatures. We determined the free-ranging activity, heart rate and metabolism of N. angustata and compared it with Notothenia coriiceps, an ecologically and morphologically congeneric cousin that still inhabits sub-zero waters. Firstly, the association between heart rate (fH) and oxygen consumption (MO_2) was first determined in the laboratory. The fish were then released into their respective environments and fH recorded by a miniature archival electronic tag, from which the metabolic rate of the free-ranging fish was extrapolated. Free-ranging activity of wild fish was monitored throughout the study using implanted acoustic tags and a static hydrophone array. Results showed that the difference in standard metabolic rate (SMR) between N. angustata and N. coriiceps fitted the Arrhenius model for inter-species thermal sensitivity in fish (Q_(10)= 1.76). However, the inter-species disparity in total metabolic rate (TMR) was far greater. This was attributable to N. angustata swimming at higher speeds and covering a 5-fold greater area over 24 h compared with N. coriiceps. As a result, activity (and associated feeding) comprised a far larger portion of TMR in N. angustata (27.9%) than for N. coriiceps (5.7%). We conclude that the increased time spent swimming by N. angustata was presumably to forage for food to acquire sufficient energy to fuel its elevated SMR. This resulted in a much greater inter-species difference in TMR than may be predicted by the disparity in environmental temperature.
机译:鱼类Notothenia angustata栖息于温带水域(10℃),但保留了生理特征,表明其曾经存在于零度以下的温度。我们确定了N. angustata的自由放养活动,心率和新陈代谢,并将其与仍居住在零度以下水域的生态和形态相似的表亲表皮动物Notothenia coriiceps进行了比较。首先,首先在实验室中确定心率(fH)与耗氧量(MO_2)之间的关联。然后将鱼放到各自的环境中,并用微型档案电子标签记录fH,从中推断自由放养鱼的代谢率。在整个研究过程中,使用植入的声标签和静态水听器阵列监控了野生鱼类的自由放养活动。结果表明,N。angustata和N. coriiceps之间的标准代谢率(SMR)差异符合Arrhenius模型对鱼类的种间热敏感性(Q_(10)= 1.76)。但是,总代谢率(TMR)的种间差异更大。这可归因于比目鱼猪笼草在更高的速度下游泳,并且在24小时内覆盖了5倍大的面积。结果,活动(和相关的进食)在阿古斯塔猪笼草(27.9%)中所占的TMR比例要比对Coriicepseps猪(5.7%)所占的比例大得多。我们得出的结论是,增加了由马氏烟草(N. angustata)游泳所花费的时间,这可能是为了觅食以获得足够的能量来为其SMR升高提供能量。这导致TMR的种间差异比环境温度差异所预测的要大得多。

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