Claireaux G, Chabot D
Université de Bretagne Occidentale, LEMAR (UMR 6539), Unité PFOM-ARN, Centre Ifremer de Bretagne, Plouzané 29280, France.
Department of Fisheries and Oceans, Institut Maurice-Lamontagne, Mont-Joli, QC, G5H 3Z4 Canada.
J Fish Biol. 2016 Jan;88(1):232-51. doi: 10.1111/jfb.12833.
The problem of understanding the effect of the environment on fish activities and performance, in any generalized way, remains intractable. Solving this issue is, however, a key to addressing contemporary environmental concerns. As suggested 20 years ago by W. H. Neill, the authors returned to the drawing board, using as a background the conceptual scheme initially proposed by F. E. J. Fry. They revisited the effect of ambient oxygen availability upon fish metabolism and clarified the definitions of limiting, critical and incipient lethal oxygen (ILO) levels. The concepts of oxy-conformer and oxy-regulator are revisited, and P. W. Hochachka's idea of scope for survival is explored. Finally, how the cardiovascular system contributes to the capacity of fishes to respond to the reduced oxygen availability is considered. Various hands-on recommendations and software (R scripts) are provided for researchers interested in investigating these concepts.
以任何广义的方式理解环境对鱼类活动和性能的影响这一问题仍然难以解决。然而,解决这个问题是应对当代环境问题的关键。正如20年前W. H. 尼尔所建议的那样,作者们回到了绘图板前,以F. E. J. 弗莱最初提出的概念框架为背景。他们重新审视了环境氧气供应对鱼类新陈代谢的影响,并阐明了限制、临界和初始致死氧(ILO)水平的定义。重新探讨了氧顺应者和氧调节者的概念,并探讨了P. W. 霍查卡的生存范围概念。最后,考虑了心血管系统如何有助于鱼类应对氧气供应减少的能力。为有兴趣研究这些概念的研究人员提供了各种实用建议和软件(R脚本)。