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首页> 外文期刊>Journal of Applied Animal Research >Transcriptome analysis reveals key information on improving duck yolk lipid contents induced by dietary fish oil or flaxseed oil
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Transcriptome analysis reveals key information on improving duck yolk lipid contents induced by dietary fish oil or flaxseed oil

机译:转录组分析揭示了改善饮食鱼油或亚麻籽油诱导的鸭黄蛋白脂质含量的关键信息

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Genes participating in the changes of yolk lipids by unsaturated oils remain elusive. In this study, ducks were randomly assigned to 3 groups, fed with basal-diet (C), basal-diet-plus-2%-flaxseed-oil (FL), or basal-diet-plus-2%-fish-oil (F), respectively. A digital-gene-expression-profiling analysis of livers were performed after four weeks. Compared to C, 36 and 25 differently-expressed-genes (DEG) were identified in FL and F, respectively. These genes participated in lipid metabolism pathways. In both F and FL, the sterol 12 α-hydroxylase 1 gene was down regulated, as well as the fatty acid synthase gene and stearoyl-CoA desaturase gene. In FL, the fatty acid desaturase 2 gene (FADS2) and elongation of the very long-chain fatty acids protein 2 gene (ELOVL2) were up regulated, and the CYP2U (cytochrome P450, family 2, subfamily U) was down regulated. However, the FADS2 and ELOVL2 were down regulated in F to possibly prevent the redundancy of body n-3 PUFAs. In conclusion, FL and F had different molecular pathways to reduce yolk cholesterol and increase n-3 PUFAs. However, CYP8B1 and FADS2 were the key genes in the regulation of both of them. α-linolenic acid in the FL might be transformed to longer n-3 PUFAs. In addition, this study adds sequence information to duck.
机译:参与不饱和油脂的蛋黄脂质变化的基因仍然难以捉摸。在这项研究中,鸭子被随机分配给3组,用基底饮食(c),基底饮食 - 加2%-flaxseed-油(Fl),或基础饮食 - 加2%-2%-fish-油(f)分别。四周后,肝脏的数字基因表达 - 分析分析进行进行。与C,36和25分别在FL和F中鉴定出不同表达的基因(DEG)。这些基因参与了脂质代谢途径。在F和F1中,甾醇12α-羟化酶1基因被调节,以及脂肪酸合成酶基因和硬脂酰基 - COA去饱和酶基因。在F1中,调节脂肪酸去饱和酶2基因(FADS2)和非常长链脂肪酸蛋白2基因(ELOVL2)的伸长率,CYP2U(细胞色素P450,Family 2,Subfamily U)被调节。然而,FADS2和ELOVL2在F中调节,以防止体N-3 PUFA的冗余。总之,FL和F具有不同的分子途径来减少蛋黄胆固醇并增加N-3 PUFA。然而,CYP8B1和FADS2是它们两个中的关键基因。 FL中的α-亚麻酸可能转化为更长的N-3 PUFA。此外,本研究将序列信息添加到鸭子上。

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