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追逐准确的结果:详尽的追逐方案低估了欧洲鲈鱼 Perca fluviatilis 的最大代谢率估计值。

Chasing away accurate results: exhaustive chase protocols underestimate maximum metabolic rate estimates in European perch Perca fluviatilis.

机构信息

Department of Ecology and Genetics, Uppsala University, Uppsala, Sweden.

出版信息

J Fish Biol. 2020 Dec;97(6):1644-1650. doi: 10.1111/jfb.14519. Epub 2020 Oct 14.

Abstract

Metabolic rates are one of many measures that are used to explain species' response to environmental change. Static respirometry is used to calculate the standard metabolic rate (SMR) of fish, and when combined with exhaustive chase protocols it can be used to measure maximum metabolic rate (MMR) and aerobic scope (AS) as well. While these methods have been tested in comparison to swim tunnels and chambers with circular currents, they have not been tested in comparison with a no-chase control. We used a repeated-measures design to compare estimates of SMR, MMR and AS in European perch Perca fluviatilis following three protocols: (a) a no-chase control; (b) a 3-min exhaustive chase; and (c) a 3-min exhaustive chase followed by 1-min air exposure. We found that, contrary to expectations, exhaustive chase protocols underestimate MMR and AS at 18°C, compared to the no-chase control. This suggests that metabolic rates of other species with similar locomotorty modes or lifestyles could be similarly underestimated using chase protocols. These underestimates have implications for studies examining metabolic performance and responses to climate change scenarios. To prevent underestimates, future experiments measuring metabolic rates should include a pilot with a no-chase control or, when appropriate, an adjusted methodology in which trials end with the exhaustive chase instead of beginning with it.

摘要

代谢率是用于解释物种对环境变化响应的众多措施之一。静态呼吸测量法用于计算鱼类的标准代谢率(SMR),当与详尽的追逐方案结合使用时,它还可以用于测量最大代谢率(MMR)和有氧范围(AS)。虽然这些方法已经与圆形水流的游泳隧道和腔室进行了比较测试,但尚未与无追逐对照进行比较测试。我们使用重复测量设计来比较三种方案下的欧洲鲈鱼 Perca fluviatilis 的 SMR、MMR 和 AS 估计值:(a)无追逐对照;(b)3 分钟的详尽追逐;和(c)3 分钟的详尽追逐后 1 分钟的空气暴露。我们发现,与预期相反,在 18°C 时,与无追逐对照相比,详尽追逐方案会低估 MMR 和 AS。这表明,使用追逐方案可能会类似地低估其他具有类似运动模式或生活方式的物种的代谢率。这些低估对研究代谢性能和对气候变化情景的响应有影响。为了防止低估,未来测量代谢率的实验应包括带有无追逐对照的试验或在适当情况下采用调整后的方法,其中试验以详尽追逐而不是从详尽追逐开始结束。

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