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加速计估计繁殖期间巨型澳州墨鱼 Sepia apama 的野外代谢率。

Accelerometry estimates field metabolic rate in giant Australian cuttlefish Sepia apama during breeding.

机构信息

Southern Seas Ecology Laboratories, University of Adelaide, SA 5005, Australia.

出版信息

J Anim Ecol. 2011 Mar;80(2):422-30. doi: 10.1111/j.1365-2656.2010.01758.x. Epub 2010 Sep 28.

Abstract
  1. Estimating the metabolic rate of animals in nature is central to understanding the physiological, behavioural and evolutionary ecology of animals. Doubly labelled water and heart-rate methods are the most commonly used approaches, but both have limitations that preclude their application to some systems. 2. Accelerometry has emerged as a powerful tool for estimating energy expenditure in a range of animals, but is yet to be used to estimate field metabolic rate in aquatic taxa. We combined two-dimensional accelerometry and swim-tunnel respirometry to estimate patterns of energy expenditure in giant Australian cuttlefish Sepia apama during breeding. 3. Both oxygen consumption rate (Vo2) and swimming speed showed strong positive associations with body acceleration, with coefficients of determination comparable to those using similar accelerometers on terrestrial vertebrates. Despite increased activity during the day, field metabolic rate rarely approached Vo2, and night-time Vo2 was similar to that at rest. 4. These results are consistent with the life-history strategy of this species, which has a poor capacity to exercise anaerobically, and a mating strategy that is visually based. With the logistical difficulties associated with observation in aquatic environments, accelerometry is likely to prove a valuable tool for estimating energy expenditure in aquatic animals.
摘要
  1. 估算动物在自然界中的代谢率是理解动物生理学、行为学和进化生态学的核心。双标记水法和心率法是最常用的方法,但它们都有局限性,不能应用于某些系统。

  2. 加速度计已成为估算一系列动物能量消耗的有力工具,但尚未用于估算水生类群的野外代谢率。我们将二维加速度计和游泳隧道呼吸计结合起来,估算繁殖期间巨型澳大利亚乌贼 Sepia apama 的能量消耗模式。

  3. 耗氧量(Vo2)和游泳速度均与身体加速度呈正相关,决定系数与在陆地脊椎动物上使用类似加速度计相当。尽管白天活动增加,但野外代谢率很少接近 Vo2,夜间的 Vo2 与休息时相似。

  4. 这些结果与该物种的生活史策略一致,该物种无氧运动能力差,交配策略基于视觉。由于在水生环境中观察存在后勤困难,加速度计可能是估算水生动物能量消耗的有价值工具。

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