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海洋变暖加上欧米伽-3 营养供应减少,损害了一种海洋鱼类的心肺功能。

Ocean warming combined with lower omega-3 nutritional availability impairs the cardio-respiratory function of a marine fish.

机构信息

UMR 7266 LIENSs (University of La Rochelle - CNRS), 2 rue Olympe de Gouges, 17000 La Rochelle, France

UMR 7266 LIENSs (University of La Rochelle - CNRS), 2 rue Olympe de Gouges, 17000 La Rochelle, France.

出版信息

J Exp Biol. 2019 Apr 15;222(Pt 8):jeb187179. doi: 10.1242/jeb.187179.

DOI:10.1242/jeb.187179
PMID:30630962
Abstract

Highly unsaturated fatty acids of the omega-3 series (HUFA) are major constituents of cell membranes, yet are poorly synthesised by consumers. Their production, mainly supported by aquatic microalgae, has been decreasing with global change. The consequences of such reductions may be profound for ectotherm consumers, as temperature tightly regulates the HUFA content in cell membranes, maintaining their functionality. Integrating individual, tissue and molecular approaches, we examined the consequences of the combined effects of temperature and HUFA depletion on the key cardio-respiratory functions of the golden grey mullet, an ectotherm grazer of high ecological importance. For 4 months, fish were exposed to two contrasting HUFA diets [4.8% eicosapentaenoic acid (EPA)+docosahexaenoic acid (DHA) on dry matter (DM) versus 0.2% EPA+DHA on DM] at 12 and 20°C. Ventricular force development coupled with gene expression profiles measured on cardiac muscle suggest that combining HUFA depletion with warmer temperatures leads to: (1) a proliferation of sarcolemmal and sarcoplasmic reticulum Ca channels and (2) a higher force-generating ability by increasing extracellular Ca influx via sarcolemmal channels when the heart has to sustain excessive effort due to stress and/or exercise. At the individual scale, these responses were associated with a greater aerobic scope, maximum metabolic rate and net cost of locomotion, suggesting the higher energy cost of this strategy. This impaired cardiac performance could have wider consequences for other physiological performance such as growth, reproduction or migration, all of which greatly depend on heart function.

摘要

高度不饱和脂肪酸(HUFA)的 omega-3 系列是细胞膜的主要成分,但消费者自身很难合成。这些脂肪酸的主要来源是水生微藻,而随着全球变化,其产量一直在下降。对于变温动物消费者来说,这种减少可能会产生深远的影响,因为温度会严格调节细胞膜中 HUFA 的含量,以维持其功能。我们综合运用个体、组织和分子方法,研究了温度和 HUFA 耗竭对金灰鲻这一具有重要生态意义的变温摄食者关键心肺功能的综合影响。在 4 个月的时间里,鱼被暴露在两种不同的 HUFA 饮食中[干物质上 4.8%的二十碳五烯酸(EPA)+二十二碳六烯酸(DHA)与干物质上 0.2%的 EPA+DHA],温度分别为 12°C 和 20°C。心室力的发展与心肌上测量的基因表达谱相结合,表明 HUFA 耗竭与温暖的温度相结合会导致:(1)肌膜和肌浆网 Ca 通道的增殖;(2)通过肌膜通道增加细胞外 Ca 流入,从而提高产生力的能力,当心脏由于应激和/或运动而不得不维持过度的努力时,这种情况就会发生。在个体层面上,这些反应与更大的有氧范围、最大代谢率和净运动成本相关,这表明这种策略的能量成本更高。这种受损的心脏功能可能会对其他生理性能产生更广泛的影响,如生长、繁殖或迁徙,所有这些都极大地依赖于心脏功能。

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