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首页> 外文期刊>Aquaculture >Effect of partial substitution of dietary fish oil by vegetable oils on desaturation and beta -oxidation of [1-14C]18:3n-3 (LNA) and [1-14C]20:5n-3 (EPA) in hepatocytes and enterocytes of European sea bass (Dicentrarchus labrax L.).
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Effect of partial substitution of dietary fish oil by vegetable oils on desaturation and beta -oxidation of [1-14C]18:3n-3 (LNA) and [1-14C]20:5n-3 (EPA) in hepatocytes and enterocytes of European sea bass (Dicentrarchus labrax L.).

机译:用植物油部分替代膳食鱼油对人肝细胞和肠上皮细胞中[1-14C] 18:3n-3(LNA)和[1-14C] 20:5n-3(EPA)脱饱和和β-氧化的影响欧洲鲈鱼(Dicentrarchus labrax L.)。

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摘要

The increasing worldwide aquaculture output and concomitant decrease in the stocks of feed-grade fish used for fish oil production has made fish oil replacement in feeds a priority for the aquaculture industry. The regulation of fatty acid metabolism in fish is important in order to determine strategies for the best use of plant oils in diets for commercially important cultured fish species. We have studied the desaturation/elongation and beta -oxidation of 14C-linolenic (LNA) and 14C-eicosapentaenoic (EPA) acids in hepatocytes and pyloric caecal enterocytes in European sea bass fed diets with partial substitution (60%) of fish oil (FO) with vegetable oils (rapeseed, linseed and palm oil) blended in different proportions, for 64 weeks. The rate of desaturation of 14C-LNA was very low in hepatocytes from all treatments and no significant differences were observed among treatments. The rate of desaturation of 14C-LNA in enterocytes was higher than that in hepatocytes but still low (less than 5% of total radioactivity recovered). The desaturation of 14C-EPA in enterocytes was also higher than in hepatocytes, but again was low and no significant differences were found among treatments. The rates of beta -oxidation of 14C-LNA and 14C-EPA were much higher than the rates of desaturation in both hepatocytes and enterocytes; however, no significant differences were observed in either hepatocytes or enterocytes among treatments. The rates of beta -oxidation of 14C-LNA were considerably higher than those of 14C-EPA in both hepatocytes and enterocytes. In conclusion, European sea bass (a carnivorous marine fish) showed very low desaturation and elongation of LNA to EPA and DHA, and EPA to DHA, higher beta -oxidation of LNA than EPA, and all desaturation and oxidation activities were significantly higher in enterocytes than in hepatocytes. A second major conclusion is that no clear quantitative nutritional effects on the desaturation/elongation and beta -oxidation activities in either hepatocytes or enterocytes of sea bass were observed upon the inclusion of vegetable oils in the diet..
机译:全球水产养殖产量的增加以及用于生产鱼油的饲料级鱼的库存随之减少,这使得饲料中鱼油的替代成为水产养殖业的优先重点。为了确定在商业上重要的养殖鱼类的日粮中最佳利用植物油的策略,鱼中脂肪酸代谢的调节很重要。我们研究了欧洲鲈鱼饲喂日粮中鱼油(FO)的部分替代(60%)后肝细胞和幽门盲肠肠细胞中14C-亚麻酸(LNA)和14C-二十碳五烯酸(EPA)酸的去饱和/伸长和β-氧化)与植物油(菜籽油,亚麻籽和棕榈油)以不同比例混合,持续64周。在所有处理中,肝细胞中14C-LNA的去饱和率都非常低,并且在处理之间未观察到显着差异。肠细胞中14C-LNA的去饱和率高于肝细胞,但仍然很低(回收的总放射性不到5%)。肠细胞中14C-EPA的去饱和度也高于肝细胞,但仍然较低,并且在各处理之间未发现显着差异。 14C-LNA和14C-EPA的β-氧化速率远高于肝细胞和肠上皮细胞的去饱和速率。然而,治疗之间在肝细胞或肠上皮细胞中均未观察到显着差异。肝细胞和肠上皮细胞中14C-LNA的β-氧化速率均明显高于14C-EPA。总之,欧洲鲈鱼(一种肉食性海鱼)对LNA的EPA和DHA以及EPA对DHA的去饱和和伸长非常低,LNA的β-氧化比EPA高,并且所有的去饱和和氧化活性在肠上皮细胞中都更高。比在肝细胞中。第二个主要结论是,在日粮中添加植物油后,未观察到对鲈鱼肝细胞或肠上皮细胞的去饱和/伸长和β-氧化活性的明确定量营养作用。

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