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日粮脂肪酸组成改变虹鳟鱼红肌中的线粒体磷脂和氧化能力。

Dietary fatty acid composition changes mitochondrial phospholipids and oxidative capacities in rainbow trout red muscle.

作者信息

Guderley H, Kraffe E, Bureau W, Bureau D P

机构信息

Département de Biologie, Université Laval, G1K 7P4, Quebec, QC, Canada.

出版信息

J Comp Physiol B. 2008 Mar;178(3):385-99. doi: 10.1007/s00360-007-0231-y. Epub 2008 Jan 22.

Abstract

Dietary conditioning of juvenile trout changed the acyl chain composition of mitochondrial phospholipids and the oxidative capacities of muscle mitochondria. Trout were fed three diets differing only in fatty acid (FA) composition. The highly unsaturated 22:6 n-3 (DHA) accounted for 0.4, 14, and 30% of fatty acids in Diets 1, 2 and 3. After 10 weeks of growth, the dietary groups differed markedly in FA composition of mitochondrial phospholipids, with significant dietary effects for virtually all FA. Mean mitochondrial DHA levels were 19, 40 and 33% in trout fed Diets 1, 2 and 3. Mitochondrial oxidative capacities changed with diet, while mitochondrial concentrations of cytochromes and of the adenylate nucleotide translocase (nmol mg(1) protein) did not. Mitochondria from fish fed Diet 1 had higher non-phosphorylating (state 4) rates at 5 degrees C than those fed other diets. When phosphorylating (state 3) rates differed between dietary groups, rates at 5 and 15 degrees C were higher for fish fed the more unsaturated diets. Stepwise multiple regressions indicated that FA composition could explain much (42-70%) of the variability of state 4 rates, particularly at 5 degrees C. At 15 degrees C, FA composition explained 16-42% of the variability of states 3 and 4 rates. Similar conclusions were obtained for the complete data set (trout fed diets 1, 2 and 3) and for the data from trout achieving similar growth rates (e.g. those fed Diets 1 and 2). Neither general characteristics of membrane FA, such as % saturates, unsaturation index, n-3, n-6 or n-3/n-6 nor levels of abundant unsaturated FA such as DHA or 18:1(n-9 + n-7), were systematically correlated with mitochondrial capacities even though they differed considerably between trout fed the different diets. Relatively minor FA (20:5n-3, 20:0, 18:2n-6, 18:3n-3, 18:0 and 15:0) showed better correlations with mitochondrial oxidative capacities. This supports the concept that acyl chain composition modulates mitochondrial capacities via interactions between membrane proteins and specific FA of particular phospholipid classes in their microenvironment.

摘要

幼鳟的饮食调节改变了线粒体磷脂的酰基链组成以及肌肉线粒体的氧化能力。给鳟鱼投喂三种仅脂肪酸(FA)组成不同的饲料。高度不饱和的22:6 n-3(DHA)在饲料1、2和3中的脂肪酸中分别占0.4%、14%和30%。生长10周后,不同饮食组的线粒体磷脂FA组成存在显著差异,几乎所有FA都有显著的饮食效应。饲喂饲料1、2和3的鳟鱼线粒体DHA平均水平分别为19%、40%和33%。线粒体氧化能力随饮食而变化,而细胞色素和腺苷酸转运酶的线粒体浓度(nmol mg⁻¹蛋白质)则没有变化。饲喂饲料1的鱼的线粒体在5℃时的非磷酸化(状态4)速率高于饲喂其他饲料的鱼。当不同饮食组之间的磷酸化(状态3)速率存在差异时,饲喂不饱和程度更高饲料的鱼在5℃和15℃时的速率更高。逐步多元回归表明,FA组成可以解释状态4速率变异性的很大一部分(42 - 70%),特别是在5℃时。在15℃时,FA组成解释了状态3和4速率变异性的16 - 42%。对于完整数据集(饲喂饲料1、2和3的鳟鱼)以及生长速率相似的鳟鱼数据(例如饲喂饲料1和2的鳟鱼),都得出了类似的结论。膜FA的一般特征,如饱和脂肪酸百分比、不饱和指数、n-3、n-6或n-3/n-6,以及丰富的不饱和FA如DHA或18:1(n-9 + n-7)的水平,即使在饲喂不同饲料的鳟鱼之间有很大差异,也与线粒体能力没有系统的相关性。相对较少的FA(20:5n-3、20:0、18:2n-6、18:3n-3、18:0和15:0)与线粒体氧化能力表现出更好的相关性。这支持了酰基链组成通过膜蛋白与特定磷脂类在其微环境中的特定FA之间的相互作用来调节线粒体能力的概念。

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