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温度暴露时间对高山红点鲑常规代谢率和体重缩放的影响()。

Effect of Time of Temperature Exposure on Routine Metabolic Rate and Body Mass Scaling in Alpine Charr ().

作者信息

Raffard Allan, Daufresne Martin, Guillard Jean, Lubin François-Raphaël, Réalis-Doyelle Emilie, Rogissart Hervé, Teulier Loïc

机构信息

Univ. Savoie Mont Blanc INRAE, CARRTEL Thonon-les-Bains France.

Pôle ECLA (OFB, INRAE, USMB) Thonon-les-Bains France.

出版信息

Ecol Evol. 2025 Aug 6;15(8):e71907. doi: 10.1002/ece3.71907. eCollection 2025 Aug.

Abstract

The thermal dependence of metabolism has attracted much attention because metabolism is linked to many ecological properties, from individuals to ecosystems. The rate at which physiological traits change is an important factor to account for when assessing thermal plasticity since the time of exposure might allow organisms to compensate for the effect of temperature on performance. Here, we studied short- and long-term thermal plasticity of metabolic rate and its scaling with body mass of Alpine charr (). To do so, we raised juveniles from Lake Geneva at 4.5°C and 8.5°C, measured their routine metabolic rate at their incubation temperature (long exposure, > 6 months), and individuals raised at 4.5°C were also tested at 8.5°C (short exposure, < 24 h). The metabolic rate of Alpine charr increased with temperature, as theoretically expected. We found no effects of duration of exposure on metabolic rate or its scaling with body mass. Despite a long-term exposure to higher temperature, individuals did not adjust their metabolic rate as compared to individuals exposed to a rapid increase in temperature, questioning the capacity of Alpine charr to compensate for temperature increase through their metabolic rate. Therefore, our data reveal no compensation mechanisms of Alpine charr to counterbalance the acute effect of temperature. Further studies will be required to fully understand the adaptive potential of Alpine charr in the context of global change.

摘要

代谢的热依赖性备受关注,因为代谢与从个体到生态系统的许多生态特性相关联。在评估热可塑性时,生理特征变化的速率是一个重要因素,因为暴露时间可能使生物体能够补偿温度对性能的影响。在此,我们研究了高山红点鲑代谢率的短期和长期热可塑性及其与体重的比例关系。为此,我们将来自日内瓦湖的幼鱼分别饲养在4.5°C和8.5°C环境下,测量它们在孵化温度下(长期暴露,>6个月)的常规代谢率,并且对饲养在4.5°C环境下的个体也在8.5°C环境下进行了测试(短期暴露,<24小时)。如理论预期,高山红点鲑的代谢率随温度升高而增加。我们发现暴露持续时间对代谢率或其与体重的比例关系没有影响。尽管长期暴露于较高温度,但与经历温度快速升高的个体相比,这些个体并未调整其代谢率,这对高山红点鲑通过代谢率补偿温度升高的能力提出了质疑。因此,我们的数据表明高山红点鲑不存在抵消温度急性影响的补偿机制。需要进一步研究以全面了解全球变化背景下高山红点鲑的适应潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6df/12328023/2c9661ee1dd0/ECE3-15-e71907-g001.jpg

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