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Estimates of metabolic rate and major constituents of metabolic demand in fishes under field conditions: Methods, proxies, and new perspectives

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.cbpa.2016.04.022

Keywords

Energetics; Respirometry; Ecophysiology; Environmental change; Telemetry

Funding

  1. NSERC Discovery Grant [418503, 435638, 418238]
  2. Canada Research Chairs Program [223744]
  3. NERC Advanced Fellowship [NE/J019100/1]
  4. European Research Council [640004]
  5. Fisheries and Oceans Canada's Strategic Program for Ecosystem-Based Research and Advice (SPERA)

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Metabolic costs are central to individual energy budgets, making estimates of metabolic rate vital to understanding how an organism interacts with its environment as well as the role of species in their ecosystem. Despite the ecological and commercial importance of fishes, there are currently no widely adopted means of measuring field metabolic rate in fishes. The lack of recognized methods is in part due to the logistical difficulties of measuring metabolic rates in free swimming fishes. However, further development and refinement of techniques applicable for field-based studies on free swimming animals would greatly enhance the capacity to study fish under environmentally relevant conditions. In an effort to foster discussion in this area, from field ecologists to biochemists alike, we review aspects of energy metabolism and give details on approaches that have been used to estimate energetic parameters in fishes. In some cases, the techniques have been applied to field conditions; while in others, the methods have been primarily used on laboratory held fishes but should be applicable, with validation, to fishes in their natural environment. Limitations, experimental considerations and caveats of these measurements and the study of metabolism in wild fishes in general are also discussed. Potential novel approaches to FMR estimates are also presented for consideration. The innovation of methods for measuring field metabolic rate in free-ranging wild fish would revolutionize the study of physiological ecology. (C) 2016 Elsevier Inc. All rights reserved.

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