鱼类心脏线粒体功能和脂肪酸谱:洞察与热耐受性和年龄有关的生理限制。

IF 2.8 2区 生物学 Q2 BIOLOGY
Simon Chouinard-Boisvert, Léopold Ghinter, Amélie St-Pierre, Mathieu Mortz, Véronique Desrosiers, France Dufresne, Jean-Claude Tardif, Johnny Huard, Pascal Sirois, Samuel Fortin, Pierre U Blier
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引用次数: 0

摘要

心力衰竭是水生外温动物热应激的主要后果之一。线粒体产生心脏使用的大部分 ATP,几乎占心脏细胞体积的一半。因此,有人推测线粒体功能障碍可能与热应激引起的心力衰竭有很大关系。本研究旨在探讨 CTmax 是否与三刺粘鸟(G. aculeatus)心脏线粒体的热敏感性有关,以及是否受心脏脂肪酸组成和年龄的影响。为此,我们测量了 30 条鱼的 CTmax。心脏线粒体的耗氧量是在三种温度下通过高分辨率呼吸测定法测量的,心脏脂质分布图是通过气相色谱法(GC)和火焰离子化检测器(FID)获得的。鱼龄通过耳石读数估算。脂肪酸图谱显示与 CTmax 无关,但 EPA 水平在年龄较大的个体中较高。使用高分辨率呼吸测定法测量了 35 条鱼的线粒体呼吸。线粒体呼吸受温度影响很大,由复合体 I 和复合体 I+II 支持的 OXPHOS 呼吸急剧下降,而非耦合呼吸在 CTmax 温度下趋于平稳。我们的研究结果表明,在高温条件下,复合体Ⅰ是温度对线粒体呼吸影响的重要调节因子,但在生理条件下(最大 OXPHOS),它并不是主要的限制因子。线粒体呼吸也受鱼龄的影响,鱼龄越大,线粒体呼吸量越低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mitochondrial functions and fatty acid profiles in fish heart: an insight into physiological limitations linked to thermal tolerance and age.

Heart failure is among the first major consequences of heat stress in aquatic ectotherms. Mitochondria produce most of the ATP used by the heart and represent almost half of the volume in cardiac cells. It has therefore been hypothesized that mitochondrial dysfunction may be a major cause of heart failure associated with heat stress. The present study aims to investigate if CTmax is linked to the thermal sensitivity of cardiac mitochondria in the three-spined stickleback (Gasterosteus aculeatus), and if it is influenced by heart fatty acid composition and age. To do so, we measured the CTmax of 30 fish. The cardiac mitochondrial oxygen consumption was measured by high resolution respirometry at three temperatures and heart lipid profiles were obtained by gas chromatography (GC) coupled with a flame ionization detector (FID). Fish age was estimated via otolith readings. Fatty acid profiles showed no correlation with CTmax, but EPA levels were higher in older individuals. Mitochondrial respiration was measured in 35 fish using high-resolution respirometry. It was strongly affected by temperature and showed a drastic drop in OXPHOS respiration fed by complex I and complex I+complex II, while uncoupled respiration plateaued at CTmax temperature. Our results suggest that complex I is an important modulator of the impact of temperature on mitochondrial respiration at high temperatures but is not the main limiting factor in physiological conditions (maximal OXPHOS). Mitochondrial respiration was also affected by fish age, showing a general decrease in older individuals.

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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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