首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >Influence of dietary docosahexaenoic acid in combination with other long-chain polyunsaturated fatty acids on expression of biosynthesis genes and phospholipid fatty acid compositions in tissues of post-smolt Atlantic salmon (Salmo salar)
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Influence of dietary docosahexaenoic acid in combination with other long-chain polyunsaturated fatty acids on expression of biosynthesis genes and phospholipid fatty acid compositions in tissues of post-smolt Atlantic salmon (Salmo salar)

机译:日粮二十二碳六烯酸与其他长链多不饱和脂肪酸的组合对熏鲑大西洋鲑(Salmo salar)组织中生物合成基因和磷脂脂肪酸组成的表达的影响

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摘要

To investigate interactions of dietary LC-PUFA, a dose–response study with a range of docosahexaenoic acid (DHA; 22:6n?3) levels (1 g kg~(?1), 5 g kg~(?1), 10 g kg~(?1), 15 g kg~(?1) and 20 g kg~(?1)) was performed with postsmolts (111 ± 2.6 g; mean ± S.D.) over a nine-week feeding period. Additional diets included 10 g kg~(?1) DHA in combination with 10 g kg~(?1) of either eicosapentaenoic acid (EPA; 20:5n?3) or arachidonic acid (ARA; 20:4n?6), and a diet containing 5 g kg~(?1) each of DHA and EPA. The liver, brain, head kidney and gill were collected at the conclusion of the trial, and lipid and fatty acid compositions were determined as well as expression of genes of LC-PUFA biosynthesis. Total lipid content and class compositionwere largely unaffected by changes in dietary LC-PUFA. However, phospholipid (PL) fatty acid compositions generally reflected that of the diet, although the response varied between tissues. The liver most strongly reflected diet, followed by the head kidney. In both tissues increasing dietary DHA led to significantly increased DHA in PL and inclusion of EPA or ARA led to higher levels of these fatty acids. The brain showed the most conserved composition and gene expression profile, with increased dietary LC-PUFA resulting in only minor changes in PL fatty acids. Dietary LC-PUFA significantly affected the expression of Δ6 and Δ5 desaturases, Elovl 2, 4 and 5, and SREBPs although this varied between tissues with greatest effects observed in the liver followed by the head kidney, similar to PL fatty acid compositions.
机译:为了研究饮食中LC-PUFA的相互作用,采用剂量-反应研究了一系列二十二碳六烯酸(DHA; 22:6n?3)水平(1 g kg〜(?1),5 g kg〜(?1),10在后九周的饲喂期中,用后蜕皮(111±2.6g;平均值±SD)进行1g,1kg,1kg,15g和1g)的饲料。其他饮食包括10 g kg〜(?1)DHA与10 g kg〜(?1)的二十碳五烯酸(EPA; 20:5n?3)或花生四烯酸(ARA; 20:4n?6)组合,以及含有5克DHA和EPA的饮食。试验结束时收集肝,脑,头肾和g,确定脂质和脂肪酸组成以及LC-PUFA生物合成的基因表达。总脂质含量和类别组成在很大程度上不受饮食中LC-PUFA变化的影响。但是,磷脂(PL)脂肪酸组成通常反映了饮食中的脂肪酸组成,尽管各组织之间的反应有所不同。肝脏最能反映饮食,其次是头部肾脏。在这两个组织中,饮食中DHA的增加导致PL中DHA的显着增加,而EPA或ARA的包含导致这些脂肪酸的含量更高。大脑显示出最保守的成分和基因表达谱,饮食中的LC-PUFA含量增加,导致PL脂肪酸的变化很小。日粮LC-PUFA显着影响Δ6和Δ5脱氢酶,Elov1、2、4和5和SREBPs的表达,尽管这在组织之间变化,在肝脏中观察到的作用最大,其次是头部肾脏,类似于PL脂肪酸组成。

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