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解读鱼类的热弹性:虹鳟鱼的急性升温耐受性与神经功能衰竭有关。

Decoding thermal resilience in fish: acute warming tolerance is associated with neural failure in rainbow trout.

作者信息

Ekström Andreas, Senčić Irena, Brijs Jeroen, Gräns Albin, Sandblom Erik

机构信息

Department of Biological and Environmental Sciences, University of Gothenburg, Gothenburg, Sweden.

University of Innsbruck, Innsbruck, Austria.

出版信息

Biol Lett. 2025 Jul;21(7):20250132. doi: 10.1098/rsbl.2025.0132. Epub 2025 Jul 30.

Abstract

As an effect of climate change, heatwaves pose an increasingly more frequent and severe threat to fish populations. Yet, the physiological mechanisms underlying thermal tolerance in fish remain unclear. One hypothesis is that thermal tolerance may be limited by neural failure at high temperatures. Here, we used an electrophysiological approach to test this by assessing the relationship between brain function, determined via recordings of visually evoked responses (VERs) on the electroencephalogram (EEG), and cardioventilatory performance, determined via recordings of ventilatory electromyography (EMG) and electrocardiogram (ECG), in adult rainbow trout () exposed to a critical thermal maximum (CT) protocol. Our results show that normal brain function is preserved at moderate to high temperatures; however, at CT, the fish exhibited loss of VERs, indicating brain dysfunction associated with insensibility. This suggests a strong link between neural failure and upper thermal tolerance in fish. Although heart and ventilatory rates increased with warming, heart rate significantly declined at CT. Interestingly, ventilation rate remained high even at extreme temperatures and at CT, indicating that neural ventilatory drive was maintained across thermal extremes. The factors underlying thermally induced neural failure and its implications for fish in a warming world require further investigation.

摘要

作为气候变化的一个影响,热浪对鱼类种群构成了越来越频繁和严重的威胁。然而,鱼类耐热性的生理机制仍不清楚。一种假说认为,耐热性可能受到高温下神经功能衰竭的限制。在此,我们采用电生理方法进行测试,通过评估成年虹鳟鱼在临界热最大值(CT)实验中的脑功能(通过脑电图(EEG)记录视觉诱发电位(VER)来确定)与心肺通气性能(通过通气肌电图(EMG)和心电图(ECG)记录来确定)之间的关系。我们的结果表明,在中等到高温下,正常脑功能得以保留;然而,在CT时,鱼出现VER丧失,表明与昏迷相关的脑功能障碍。这表明鱼类神经功能衰竭与耐热上限之间存在紧密联系。尽管心率和通气率随温度升高而增加,但在CT时心率显著下降。有趣的是,即使在极端温度和CT时,通气率仍保持较高水平,表明在整个温度极端范围内神经通气驱动得以维持。热诱导神经功能衰竭的潜在因素及其对变暖世界中鱼类的影响需要进一步研究。

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