恒温和波动温度对北极红点鲑(Salvelinus alpinus)新陈代谢反应的促进作用截然不同。

IF 2.8 2区 生物学 Q2 BIOLOGY
Journal of Experimental Biology Pub Date : 2024-11-01 Epub Date: 2024-11-05 DOI:10.1242/jeb.249475
S Braz-Mota, K M Ollerhead, S G Lamarre, V M F Almeida-Val, A L Val, T J MacCormack
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引用次数: 0

摘要

北极变暖的速度是全球平均速度的三倍,这给北极红点鲑(Salvelinus alpinus)等适应寒冷的鱼类带来了挑战。我们评估了北极红点鲑对不同热适应情景的应激和代谢反应,以确定对热变化的反应是否与对稳定暴露的反应不同。将鱼暴露在 4 种处理之一中 7 天:(1)对照组(12 °C);(2)平均值(16 °C),相当于昼夜热循环的平均温度;(3)恒定高温(20 °C);(4)昼夜热循环(每 24 小时从 12 °C到 20 °C)。暴露于 20 °C 会导致血浆乳酸和葡萄糖增加、抗氧化系统失衡以及肝脏氧化应激。20 °C处理也会提高蛋白质合成的分数率,并导致心脏氧化应激。与平均温度(16 °C)相比,昼夜热循环中的应激反应更为明显,这表明峰值暴露温度或变化在生理上非常重要。昼夜热循环鱼的皮质醇含量最高,肝脏出现氧化应激。鳃Na+/K+-ATP酶活性在昼夜热循环鱼类中也显著降低,表明鳃重塑是对渗透调节压力的反应。暴露在恒定的 20 °C环境中比昼夜热循环更具挑战性,这表明了每日降温对恢复的重要性。北极红点鲑栖息在一个温度多变的环境中,在北极迅速变暖的背景下,了解这种环境如何影响它们的生理机能对于制定保护策略至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Acclimation to constant and fluctuating temperatures promotes distinct metabolic responses in Arctic char (Salvelinus alpinus).

The Arctic is warming three times faster than the global average, imposing challenges to cold-adapted fish, such as Arctic char (Salvelinus alpinus). We evaluated stress and metabolic responses of Arctic char to different thermal acclimation scenarios to determine whether responses to thermal variation differed from those to stable exposures. Fish were exposed for 7 days to one of four treatments: (1) control (12°C); (2) mean (16°C), corresponding to the mean temperature of the diel thermal cycle; (3) constant high temperature (20°C); and (4) diel thermal cycling (12 to 20°C every 24 h). Exposure to 20°C causes increases plasma lactate and glucose, an imbalance in antioxidant systems, and oxidative stress in the liver. The 20°C treatment also elevated fractional rates of protein synthesis and caused oxidative stress in the heart. Stress responses were more pronounced in diel thermal cycling than in mean (16°C) fish, indicating that peak exposure temperatures or variation are physiologically important. Cortisol was highest in diel thermal cycling fish and oxidative stress was noted in the liver. Gill Na+/K+-ATPase activity was also significantly reduced in diel thermal cycling fish, suggesting gill remodeling in response to an osmoregulatory stress. Exposure to a constant 20°C was more challenging than a diel thermal cycle, demonstrating the importance of daily cooling to recovery. Arctic char inhabit a thermally variable environment and understanding how this impacts their physiology will be critical for informing conservation strategies in the context of a rapidly warming Arctic.

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来源期刊
CiteScore
5.50
自引率
10.70%
发文量
494
审稿时长
1 months
期刊介绍: Journal of Experimental Biology is the leading primary research journal in comparative physiology and publishes papers on the form and function of living organisms at all levels of biological organisation, from the molecular and subcellular to the integrated whole animal.
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