三种海龟代谢的热依赖性及活动的影响。

IF 2.8 2区 生物学 Q2 BIOLOGY
Journal of Experimental Biology Pub Date : 2025-08-01 Epub Date: 2025-07-22 DOI:10.1242/jeb.250844
Manfred R Enstipp, Virginie Plot, Stéphane Ciccione, Katia Ballorain, Jean-Yves Georges
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引用次数: 0

摘要

温度对生命和跨组织层次的生物过程的结构至关重要。对于异温海龟来说,温度深刻地影响着它们的新陈代谢、整体生理、行为和分布。海龟在全球范围内受到威胁,详细了解它们的能量需求对于理解它们在海洋生态系统中的作用和指导保护工作至关重要。采用流式呼吸法研究了水温(Tw)季节变化对绿海龟、红海龟和玳瑁三种海龟静息耗氧量(V * O2)的影响。冬季和夏季之间的Tw变化(最大范围:20.3-31.9°C)对质量比V (O2)有明显影响,夏季各物种的质量比V (O2)平均增加了约50%。因此,所有物种的代谢热敏性相似,Q10值在2.1 - 2.7之间,典型的爬行动物。所有物种呼吸频率(fR)的变化与sV (O2)的变化是平行的。在单独的试验中,我们记录了在水箱中休息和游泳的红海龟的身体加速度(PDBA)和V (O2),以研究活动对代谢的影响,并建立了一个预测方程,该方程可用于根据身体加速度记录估计海龟在海上的能量消耗。适度的游泳活动使sV (O2)比休息时增加3.2倍。我们发现sV O2与PDBA呈显著正相关(r2=0.63, P
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The thermal dependence of metabolism in three sea turtle species and the effects of activity.

Temperature is of central importance to life and structures biological processes across levels of organization. For ectothermic marine turtles, temperature profoundly affects their metabolism, overall physiology, behaviour and distribution. Marine turtles are globally threatened and a detailed understanding of their energy requirements is essential to comprehend their role in marine ecosystems and to guide conservation efforts. We used flow-through respirometry to study the effects of seasonal changes in water temperature (Tw) on the resting oxygen consumption rates (V̇O2) of three sea turtle species (green, loggerhead and hawksbill turtles). Tw changes between winter and summer (maximum range: 20.3-31.9°C) had a clear effect on mass-specific V̇O2 (sV̇O2) that increased on average by ∼50% across species in summer. Hence, the thermal sensitivity of metabolism was similar in all species with Q10 values ranging between 2.1 and 2.7, typical for reptiles. Changes in sV̇O2 were paralleled by changes in respiratory frequency (fR) in all species. In separate trials with loggerhead turtles resting and swimming in a tank, we recorded body acceleration (PDBA) together with V̇O2 to investigate the effects of activity on metabolism and to establish a predictive equation that can be used to estimate turtle energy expenditure at sea from the recording of body acceleration. Moderate swimming activity increased sV̇O2 up to 3.2 times over resting. We found a significant positive relationship between sV̇O2 and PDBA (r2=0.63, P<0.0001) with small associated error estimates, indicating that body acceleration is a good predictor of V̇O2 in loggerhead turtles, similar to what has previously been reported for green turtles.

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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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