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Heat shock influences the fatty acid composition of the muscle of the Antarctic fish Trematomus bernacchii

机译:热激影响南极鱼Trematomus bernacchii肌肉的脂肪酸组成

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In the Ross Sea region (average temperature of - 1.87 degrees C), shelf water warming up to +0.8-+1.4 degrees C is predicted by 2200, so there is an urgent need to understand how organisms can respond to rising temperatures. In this study, we analyzed the effect of a heat shock on the fatty acid (FM) composition of muscle of the Antarctic teleost Trematomus bernacchii, caught in Terra Nova Bay (Ross Sea), and held in fish tanks at 0, +1 or +2 degrees C, for 1, 5 and 10 days. In general, heat shock produced, beyond a reduction in total lipid content correlated to the temperature, an increase in the percentage of saturated FM, and a decrease in mono-unsaturated FAs; however, the level of poly-unsaturated FM did not seem to directly correlate with temperature. Principal component analysis indicated that both temperature and exposure time affect the composition of FM in the muscle probably through an alteration of the metabolic pathways of FM. In this study, we demonstrated that T. bernacchii was capable to rapidly acclimatize to a heat shock. This study contributes to increasing knowledge on the effect of temperature on the lipid composition of T. bernacchii and is complementary to previous studies on the gene expression and biochemistry of this species face multiple stressors.
机译:在罗斯海地区(平均温度为-1.87摄氏度),预计到2200年架子水会升温至+ 0.8- + 1.4摄氏度,因此迫切需要了解生物体如何应对不断升高的温度。在这项研究中,我们分析了热休克对捕捞在Terra Nova湾(罗斯海),并以0,+ 1或+1保持在鱼缸中的南极硬骨Trematomus bernacchii肌肉的脂肪酸(FM)组成的影响。 +2摄氏度,持续1、5和10天。通常,除了与温度相关的总脂质含量减少,饱和FM百分比增加和单不饱和FA减少外,还会产生热激。但是,多不饱和FM的水平似乎与温度没有直接关系。主成分分析表明,温度和暴露时间都可能通过改变FM的代谢途径来影响肌肉中FM的组成。在这项研究中,我们证明了伯纳奇T.能够迅速适应热休克。这项研究有助于增加对温度对伯纳奇锥虫脂质组成的影响的认识,并补充了以前对该物种的基因表达和生物化学面临多重压力的研究。

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