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大西洋鳕鱼(Gadus morhua)中脂肪酸延长酶(elovl)基因家族的特征、肝脏elovl和δ-6脂肪酸去饱和酶转录本表达以及对含亚麻荠油日粮的脂肪酸反应

Characterization of the fatty acyl elongase (elovl) gene family, and hepatic elovl and delta-6 fatty acyl desaturase transcript expression and fatty acid responses to diets containing camelina oil in Atlantic cod (Gadus morhua).

作者信息

Xue Xi, Feng Charles Y, Hixson Stefanie M, Johnstone Kim, Anderson Derek M, Parrish Christopher C, Rise Matthew L

机构信息

Department of Ocean Sciences, Memorial University of Newfoundland, 1 Marine Lab Road, St. John's, NL A1C 5S7, Canada.

Genome Atlantic, 1344 Summer Street, Halifax, NS B3H 0A8, Canada.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2014 Sep;175:9-22. doi: 10.1016/j.cbpb.2014.06.005. Epub 2014 Jun 24.

Abstract

For aquaculture to become sustainable, there is a need to substitute fish oil [FO, rich in ω3 long chain polyunsaturated fatty acids (LC-PUFA) such as 20:5ω3 (EPA) and 22:6ω3 (DHA)] in aquafeed with plant oils such as camelina oil [CO, rich in C18 PUFA such as 18:3ω3 (ALA) and 18:2ω6 (LNA)]. The LC-PUFA are essential components in fish diets for maintaining optimal health, physiology and growth. However, most marine fish including Atlantic cod are inefficient at producing LC-PUFA from shorter chain precursors. Since elovl genes encode enzymes that play key roles in fatty acid biosynthesis, we hypothesized that they may be involved in Atlantic cod responses to diets rich in 18:3ω3 and 18:2ω6. Ten members of the cod elovl gene family were characterized at the mRNA level. RT-PCR was used to study constitutive expression of elovl transcripts in fifteen tissues. Some transcripts (e.g. elovl5) were ubiquitously expressed, while others had tissue-specific expression (e.g. elovl4a in brain and eye). Cod fed a CO-containing diet (100% CO replacement of FO and including solvent-extracted fish meal) had significantly lower weight gain, with significant up-regulation of elovl5 and fadsd6 transcripts in the liver as shown by QPCR analysis, compared with cod on a FO control diet after a 13-week trial. Multivariate statistical analyses (SIMPER and PCA) indicated that high 18:3ω3 and/or low ω3 LC-PUFA levels in the liver were associated with the up-regulation of elovl5 and fadsd6, which are involved in LC-PUFA biosynthesis in cod.

摘要

为了使水产养殖可持续发展,有必要用植物油(如富含18:3ω3(ALA)和18:2ω6(LNA)等C18多不饱和脂肪酸的亚麻荠油[CO])替代水产饲料中的鱼油[FO,富含20:5ω3(EPA)和22:6ω3(DHA)等ω3长链多不饱和脂肪酸(LC-PUFA)]。LC-PUFA是鱼类维持最佳健康、生理状态和生长所需的必需成分。然而,包括大西洋鳕鱼在内的大多数海洋鱼类从较短链前体合成LC-PUFA的效率较低。由于elovl基因编码在脂肪酸生物合成中起关键作用的酶,我们推测它们可能参与大西洋鳕鱼对富含18:3ω3和18:2ω6的饲料的反应。在mRNA水平上对鳕鱼elovl基因家族的10个成员进行了表征。利用RT-PCR研究了elovl转录本在15种组织中的组成型表达。一些转录本(如elovl5)普遍表达,而其他转录本具有组织特异性表达(如脑和眼中的elovl4a)。在为期13周的试验后,与喂食FO对照饲料的鳕鱼相比,喂食含CO饲料(100%用CO替代FO并包括溶剂萃取鱼粉)的鳕鱼体重增加显著降低,QPCR分析显示肝脏中elovl5和fadsd6转录本显著上调。多变量统计分析(SIMPER和PCA)表明,肝脏中高含量的18:3ω3和/或低含量的ω3 LC-PUFA与elovl5和fadsd6的上调有关,这两种基因参与鳕鱼的LC-PUFA生物合成。

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