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The relationship between membrane fatty acid content and mitochondrial efficiency differs within- and between- omega-3 dietary treatments

机译:膜脂肪酸含量与线粒体效率之间的关系在ω-3膳食处理中的不同之处不同

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An important, but underappreciated, consequence of climate change is the reduction in crucial nutrient production at the base of the marine food chain: the long-chain omega-3 highly unsaturated fatty acids (n-3 HUFA). This can have dramatic consequences on consumers, such as fish as they have limited capacity to synthesise n-3 HUFA de novo. The n-3 HUFA, such as docosahexaenoic acid (DHA, 22:6n-3) and eicosapentaenoic acid (EPA, 20:5n-3), are critical for the structure and function of all biological membranes. There is increasing evidence that fish will be badly affected by reductions in n-3 HUFA dietary availability, however the underlying mechanisms remain obscure. Hypotheses for how mitochondrial function should change with dietary n-3 HUFA availability have generally ignored ATP production, despite its importance to a cell's total energetics capacity, and in turn, whole-animal performance. Here we (i) quantified individual variation in mitochondrial efficiency (ATP/O ratio) of muscle and (ii) examined its relationship with content in EPA and DHA in muscle membrane of a primary consumer fish, the golden grey mullet Chelon auratus, receiving either a high or low n-3 HUFA diet. Mitochondria of fish fed on the low n-3 HUFA diet had higher ATP/O ratio than those of fish maintained on the high n-3 HUFA diet. Yet, mitochondrial efficiency varied up about 2-fold among individuals on the same dietary treatment, resulting in some fish consuming half the oxygen and energy substrate to produce the similar amount of ATP than conspecific on similar diet. This variation in mitochondrial efficiency among individuals from the same diet treatment was related to individual differences in fatty acid composition of the membranes: a high ATP/O ratio was associated with a high content in EPA and DHA in biological membranes. Our results highlight the existence of interindividual differences in mitochondrial efficiency and its potential importance in explaining intraspecific variation in response to food chain changes.
机译:气候变化的重要性但低估的是,海洋食品链基地的关键营养产量减少:长链ω-3高度不饱和脂肪酸(N-3 HUFA)。这对消费者来说可能具有显着的后果,例如鱼类,因为它们具有合成N-3 Hufa de Novo的能力有限。 N-3 HUFA,如十二碳六烯酸(DHA,22:6N-3)和己酰亚苯甲酸(EPA,20:5N-3)对所有生物膜的结构和功能至关重要。越来越多的证据表明,鱼类将受到N-3 HUFA饮食可用性的减少严重影响,但潜在的机制仍然模糊不清。假设线粒体功能如何随着饮食N-3 HUFA可用性而变化,仍然忽略了ATP生产,尽管其对细胞的总能量容量重视,而且又是全动物的表现。在这里,我们(i)肌肉和(ii)的线粒体效率(ATP / O比率)的个体变化在主要消费鱼的肌肉膜中检查了与EPA和DHA的含量的关系,金灰色Mullet Chelon Auratus接受,接受高或低N-3 HUFA饮食。在低N-3 HUFA饮食中喂养的鱼类粒细胞患者的ATP / O比比在高N-3 HUFA饮食上维护的鱼类较高。然而,线粒体效率在相同膳食处理中的个体上变化了约2倍,导致一些鱼类消耗的一半氧气和能量衬底,以产生类似的ATP量,而不是类似饮食的特异性。来自相同饮食治疗的个体中的这种对线粒体效率的变化与膜的脂肪酸组成的个体差异有关:高ATP / O比与生物膜中的EPA和DHA的高含量相关。我们的结果突出了线粒体效率的间接差异存在的存在及其在解释造成食物链变化的内部变异方面的潜在重要性。

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