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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Interaction between omega 6 and omega 3 fatty acids of different chain lengths regulates Atlantic salmon hepatic gene expression and muscle fatty acid profiles
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Interaction between omega 6 and omega 3 fatty acids of different chain lengths regulates Atlantic salmon hepatic gene expression and muscle fatty acid profiles

机译:欧米茄6和ω3不同链长度的脂肪酸之间的相互作用调节大西洋鲑鱼肝基因表达和肌肉脂肪酸谱

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Atlantic salmon smolts (approx. 20-months old) were fed experimental diets with different combinations of omega-6:omega-3 fatty acids (FAs) (high-omega 6, high-omega 3, or balanced) and eicosapentaenoic acid plus docosahexaenoic acid (EPA + DHA) levels (0.3, 1.0 or 1.4%) for 12 weeks. Muscle FA (% total FA) reflected dietary C-18-polyunsaturated FA; however, muscle EPA per cent and content (mg g(-1)) were not different in salmon fed high-omega 3 or balanced diets. Muscle DHA per cent was similar among treatments, while DHA content increased in fish fed 1.4% EPA + DHA, compared with those fed 0.3-1.0% EPA + DHA combined with high-omega 6 FA. Muscle 20:3 omega 6 (DGLA) content was highest in those fed high-omega 6 with 0.3% EPA + DHA. Quantitative polymerase chain reaction analyses on liver RNA showed that the monounsaturated FA synthesis-related gene,scdb,was upregulated in fish fed 1.0% EPA + DHA with high-omega 6 compared to those fed 0.3% EPA + DHA. In high-omega 3-fed salmon, liverelovl2transcript levels were higher with 0.3% EPA + DHA than with 1.0% EPA + DHA. In high-omega 6-fed fish,elovl2did not vary with EPA + DHA levels, but it was positively correlated with muscle ARA, 22:4 omega 3 and DGLA. These results suggest dietary 18:3 omega 3 elongation contributed to maintaining muscle EPA + DHA levels despite a two- to threefold change in dietary proportions, while 18:2 omega 6 with 0.3% EPA + DHA increased muscle DGLA more than arachidonic acid (ARA). Positive correlations between hepaticelovl2andfabp10awith muscle omega 6:omega 3 and EPA + DHA + ARA, respectively, were confirmed by reanalysing data from a previous salmon trial with lower variations in dietary EPA + DHA and omega 6:omega 3 ratios. This article is part of the theme issue 'The next horizons for lipids as 'trophic biomarkers': evidence and significance of consumer modification of dietary fatty acids'.
机译:大西洋鲑鱼熔渣(约20个月)是用不同组合的ω-6喂养的实验饮食:ω-3脂肪酸(Fas)(高ω6,高ω3或平衡)和eicosapentaeno酸加多多酸(EPA + DHA)水平(0.3,1.0或1.4%)12周。肌肉FA(百分比FA)反映了膳食C-18多不饱和FA;然而,肌肉EPA%和含量(mg g(-1)含有高ω3或均衡的饮食中的鲑鱼的不同。肌肉DHA%在治疗中相似,而DHA含量在喂食1.4%EPA + DHA的鱼中增加,而喂食0.3-1.0%EPA + DHA与高ω6 FA相结合。肌肉20:3欧米茄6(Dgla)含量在喂食高ω6的那些中最高,0.3%EPA + DHA。肝脏RNA的定量聚合酶链反应分析表明,与喂养0.3%EPA + DHA的那些,在FED 1.0%EPA + DHA的鱼中升高,在FED.0%EPA + DHA的鱼中上调了单不饱和FA合成相关基因。在高欧米格3奶奶鲑鱼中,利物洛夫劳工标记水平较高0.3%EPA + DHA,而不是1.0%EPA + DHA。在高欧米茄6喂食鱼中,Elovl2did与EPA + DHA水平没有变化,但它与肌肉ARA呈正相关,22:4 OMEGA 3和DGLA。这些结果表明饮食18:3欧米茄3伸长率为维持肌肉EPA + DHA水平,尽管饮食比例的两点为三倍变化,而18:2欧米茄6具有0.3%EPA + DHA的肌肉DGLA多于花生酸(ARA) )。分别通过从先前的鲑鱼试验中的重新安达尔(EPA 3和EPA + DHA + ARA)确认了ω3和EPA + DHA + ARA之间的阳性相关性,并通过饮食EPA + DHA和OMEGA 6的较低变化,ω3:OMEGA 3比率。本文是主题问题的一部分,是脂质的下一个视野作为“营养生物标志物”:消费者修饰膳食脂肪酸的证据和意义。

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