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暴露于数次热波中的斑马鱼肌肉中不存在线粒体反应。

Absence of mitochondrial responses in muscles of zebrafish exposed to several heat waves.

机构信息

Univ Lyon, Université Claude Bernard Lyon 1, CNRS, ENTPE, UMR 5023 LEHNA, F-69622 Villeurbanne, France.

Univ Lyon, Université Claude Bernard Lyon 1, CNRS, ENTPE, UMR 5023 LEHNA, F-69622 Villeurbanne, France.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2022 Dec;274:111299. doi: 10.1016/j.cbpa.2022.111299. Epub 2022 Aug 27.

Abstract

Heat waves are extreme thermal events whose frequency and intensity will increase with global warming. As metabolic responses to temperature are time-dependent, we explored the effects of an exposure to several heat waves on the mitochondrial metabolism of zebrafish Danio rerio. For this purpose, zebrafish were acclimated at 26 °C or 31 °C for 4 weeks and some fish acclimated at 26 °C underwent 2 types of heat waves: 2 periods of 5 days at 31 °C or 10 days at 31 °C. After this acclimation period, mitochondrial respiration of red muscle fibres was measured at 26 °C and 31 °C for each fish, with the phosphorylation (OXPHOS) and basal (LEAK) respirations obtained with activation of complex I, complex II or complexes I and II. The respiratory control ratio (RCR) and the mitochondrial aerobic scope (CAS) were also calculated at both temperatures after the activation of complexes I and II. Under our conditions, heat waves did not result in variations in any mitochondrial parameters, suggesting a high tolerance of zebrafish to environmental temperature fluctuations. However, an acute in vitro warming led to an increase in the LEAK respiration together with a higher temperature effect on complex II than complex I, inducing a decrease of mitochondrial efficiency to produce energy at high temperatures. Increased interindividual variability for some parameters at 26 °C or 31 °C also suggests that each individual has its own ability to cope with temperature fluctuations.

摘要

热浪是极端的热力事件,其频率和强度将随着全球变暖而增加。由于代谢对温度的反应是时间依赖性的,我们探讨了暴露于多次热浪对斑马鱼 Danio rerio 线粒体代谢的影响。为此,斑马鱼在 26°C 或 31°C 下适应 4 周,一些在 26°C 下适应的鱼经历了两种类型的热浪:31°C 下的 5 天或 31°C 下的 10 天。在适应期结束后,测量每条鱼在 26°C 和 31°C 下的红肌纤维线粒体呼吸,通过激活复合物 I、复合物 II 或复合物 I 和 II 获得磷酸化(OXPHOS)和基础(LEAK)呼吸。在激活复合物 I 和 II 后,还在两个温度下计算呼吸控制比(RCR)和线粒体有氧范围(CAS)。在我们的条件下,热浪并没有导致任何线粒体参数的变化,这表明斑马鱼对环境温度波动有很高的耐受性。然而,急性体外升温导致 LEAK 呼吸增加,并且复合物 II 对温度的影响大于复合物 I,导致线粒体在高温下产生能量的效率降低。在 26°C 或 31°C 下一些参数的个体间变异性增加也表明,每个个体都有自己应对温度波动的能力。

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