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Mitochondrial acclimation potential to ocean acidification and warming of Polar cod (Boreogadus saida) and Atlantic cod (Gadus morhua)

机译:线粒体适应海洋酸化和极地鳕鱼(Boreogadus saya)和大西洋鳕鱼(Gadus morhua)变暖的潜力

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摘要

Background: Ocean acidification and warming are happening fast in the Arctic but little is known about the effects of ocean acidification and warming on the physiological performance and survival of Arctic fish.udResults: In this study we investigated the metabolic background of performance through analyses of cardiac mitochondrial function in response to control and elevated water temperatures and PCO2 of two gadoid fish species, Polar cod (Boreogadus saida), an endemic Arctic species, and Atlantic cod (Gadus morhua), which is a temperate to cold eurytherm and currently expanding into Arctic waters in the wake of ocean warming. We studied their responses to the above-mentioned drivers and their acclimation potential through analysing the cardiac mitochondrial function in permeabilised cardiac muscle fibres after 4 months of incubation at different temperatures (Polar cod: 0, 3, 6, 8 °C and Atlantic cod: 3, 8, 12, 16 °C), combined with exposure to present (400μatm) and year 2100 (1170μatm) levels of CO2.udOXPHOS, proton leak and ATP production efficiency in Polar cod were similar in the groups acclimated at 400μatm and 1170μatm of CO2, while incubation at 8 °C evoked increased proton leak resulting in decreased ATP production efficiency and decreased Complex IV capacity. In contrast, OXPHOS of Atlantic cod increased with temperature without compromising the ATP production efficiency, whereas the combination of high temperature and high PCO2 depressed OXPHOS and ATP production efficiency.udConclusions: Polar cod mitochondrial efficiency decreased at 8 °C while Atlantic cod mitochondria were more resilient to elevated temperature; however, this resilience was constrained by high PCO2. In line with its lower habitat temperature and higher degree of stenothermy, Polar cod has a lower acclimation potential to warming than Atlantic cod.
机译:背景:北极地区的海洋酸化和变暖正在迅速发生,但是人们对海洋酸化和变暖对北极鱼类的生理性能和生存的影响知之甚少。 ud结果:在本研究中,我们通过对北极鱼类的代谢背景进行了研究。响应线粒体的功能,响应于两种g游鱼类的控制和升高的水温和PCO2,北极鳕是北极的特有物种,鳕鱼是温带到低温的温带鱼,目前正在向海洋变暖后的北极水域。我们通过分析在不同温度下孵育4个月(极性鳕鱼:0、3、6、8°C和大西洋鳕鱼)透化的心肌纤维中的线粒体功能,研究了它们对上述驱动因子的反应及其适应潜力。 3、8、12、16°C),再加上目前(400μatm)和2100年(1170μatm)的CO2暴露水平。 udOXPHOS,极地鳕鱼的质子泄漏和ATP生产效率在适应于400μatm和2。 1170μatm的CO2,同时在8°C下孵育会引起质子泄漏增加,从而导致ATP产生效率降低和Complex IV容量降低。相比之下,大西洋鳕鱼的OXPHOS随温度增加而不会降低ATP的生产效率,而高温和高PCO2的组合降低了OXPHOS和ATP的生产效率。 ud结论:极地鳕鱼的线粒体效率在8°C时下降,而大西洋鳕鱼的线粒体则在对高温更具弹性;但是,这种弹性受到高PCO2的限制。与较低的栖息地温度和较高的狭窄程度相呼应,极地鳕鱼的变暖潜力低于大西洋鳕鱼。

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