Temperature-dependent exercise recovery is not associated with behavioral thermoregulation in a salmonid fish

IF 2.9 2区 生物学 Q2 BIOLOGY Journal of thermal biology Pub Date : 2024-06-14 DOI:10.1016/j.jtherbio.2024.103888
Lauren E. Rowsey, James D. Kieffer, Ben Speers-Roesch
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Abstract

The relationship between behavioral thermoregulation and physiological recovery following exhaustive exercise is not well understood. Behavioral thermoregulation could be beneficial for exercise recovery; for example, selection of cooler temperatures could reduce maintenance metabolic cost to preserve aerobic scope for recovery cost, or selection of warmer temperatures could accelerate recovery of exercise metabolites. While post-exercise behavioral thermoregulation has been observed in lizards and frogs, little is known about its importance in fish. We examined the influence of post-exercise recovery temperature on metabolic rate, thermal preference, and metabolite concentrations in juvenile brook char (Salvelinus fontinalis). Fish were acclimated to and exercised at 15 °C, then recovered at either 15 °C or 10 °C while their metabolic rate was measured via respirometry. Metabolite concentrations were measured in fish after exercise at 15 °C and recovery under one of three thermal treatments (to simulate various behavioral thermoregulation scenarios): (i) 6 h recovery at 15 °C, (ii) 6 h recovery at 10 °C, or (iii) 3 h recovery at 10 °C followed by 3 h recovery at 15 °C. Thermal preference was quantified using a static temperature preference system (15 °C vs. 10 °C). Metabolic rates returned to resting faster at 10 °C compared with 15 °C, although at 10 °C there was a tradeoff of delayed metabolite recovery. Specifically, post-exercise plasma osmolality, plasma lactate, and muscle lactate remained elevated for the entire period in fish recovering at 10 °C, whereas these parameters returned to resting levels by 6 h in fish from the other two recovery groups. Regardless, fish did not exhibit clear behavioral thermoregulation (i.e., fish overall did not consistently prefer one temperature) to prioritize either physiological recovery process. The advantage of metabolic rate recovery at cooler temperatures may balance against the advantage of metabolite recovery at warmer temperatures, lessening the usefulness of behavioral thermoregulation as a post-exercise recovery strategy in fish.

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温度依赖性运动恢复与鲑鱼的行为体温调节无关
行为体温调节与剧烈运动后的生理恢复之间的关系尚不十分清楚。行为体温调节可能有利于运动恢复;例如,选择较低的温度可以降低维持代谢的成本,从而为恢复成本保留有氧范围,或者选择较高的温度可以加速运动代谢产物的恢复。虽然在蜥蜴和青蛙中观察到了运动后的行为体温调节,但对其在鱼类中的重要性却知之甚少。我们研究了运动后恢复温度对幼年溪鲑(Salvelinus fontinalis)代谢率、热偏好和代谢物浓度的影响。鱼类适应并在 15 °C下运动,然后在15 °C或10 °C下恢复,同时通过呼吸测定法测量其代谢率。在 15 °C下运动并在三种热处理(模拟各种行为体温调节情况)之一下恢复后,测量鱼体内代谢物的浓度:(i) 在 15 °C下恢复 6 小时;(ii) 在 10 °C 下恢复 6 小时;或 (iii) 在 10 °C 下恢复 3 小时,然后在 15 °C 下恢复 3 小时。采用静态温度偏好系统(15 °C与10 °C)对热偏好进行量化。与 15 摄氏度相比,10 摄氏度下代谢率恢复到静止状态的速度更快,但 10 摄氏度下存在代谢物恢复延迟的权衡问题。具体来说,在 10 °C下恢复的鱼类,运动后血浆渗透压、血浆乳酸和肌肉乳酸在整个过程中都保持升高,而其他两个恢复组的鱼类在 6 小时后这些参数就恢复到静止水平。无论如何,鱼类并没有表现出明显的行为体温调节(即鱼类总体上并不一致地偏好一种温度),以优先考虑任何一种生理恢复过程。在较低温度下恢复代谢率的优势可能会抵消在较高温度下恢复代谢物的优势,从而降低行为体温调节作为鱼类运动后恢复策略的作用。
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来源期刊
Journal of thermal biology
Journal of thermal biology 生物-动物学
CiteScore
5.30
自引率
7.40%
发文量
196
审稿时长
14.5 weeks
期刊介绍: The Journal of Thermal Biology publishes articles that advance our knowledge on the ways and mechanisms through which temperature affects man and animals. This includes studies of their responses to these effects and on the ecological consequences. Directly relevant to this theme are: • The mechanisms of thermal limitation, heat and cold injury, and the resistance of organisms to extremes of temperature • The mechanisms involved in acclimation, acclimatization and evolutionary adaptation to temperature • Mechanisms underlying the patterns of hibernation, torpor, dormancy, aestivation and diapause • Effects of temperature on reproduction and development, growth, ageing and life-span • Studies on modelling heat transfer between organisms and their environment • The contributions of temperature to effects of climate change on animal species and man • Studies of conservation biology and physiology related to temperature • Behavioural and physiological regulation of body temperature including its pathophysiology and fever • Medical applications of hypo- and hyperthermia Article types: • Original articles • Review articles
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