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Fish oil-induced milk fat depression and associated downregulation of mammary lipogenic genes in dairy ewes

机译:鱼油引起的乳汁脂肪降低和乳母中的乳脂形成基因相关的下调

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摘要

Several studies in dairy cows have shown a relationship between milk fat depression (MFD) and alterations caused in lipogenic gene expression by dietary nutrients. However, information on small ruminants is not only scarce but also inconsistent. Therefore, this experiment was conducted in dairy ewes to study the effect of a diet known to induce MFD on milk fatty acid (FA) composition and mRNA abundance of key candidate genes involved in mammary lipogenesis. Twelve lactating Assaf ewes (on average 63 d in milk) were randomly assigned to 2 treatments consisting of a total mixed ration based on alfalfa hay and concentrates (50:50), supplemented with 0 (control) or 17 g of fish oil/kg of diet dry matter (FO). Profiles of milk FA and mRNA abundance of candidate genes in bi-opsied mammary tissue were examined before starting the treatments and after 1 and 4.5 wk on the diets. As expected, FO induced MFD and modified milk FA composition. Compared with the control, reductions in milk fat concentration and yield were not detected on d 7, but reached up to 25 and 22%, respectively, on d 30. However, increases in confirmed or putative antilipo-genic FA (trans-10,cis-12 and trans-9,cis-11 18:2, cis-9 16:1, cis-11 18:1, and oxo-FA) were already established on the early stage of the treatment and lasted until the end of the feeding period. These changes were accompanied by decreases in the mRNA abundance of genes encoding lipogenic enzymes. The coordinated nature of the downregulation, which tended to affect most studied metabolic pathways, including FA activation (ACSS1), de novo synthesis (ACACA and FASN), uptake and transport (LPL and FABP3), desaturation (SCD1), and esterification (AGAPT6), supports the involvement of a central regulator of milk fat synthesis. In this regard, without ruling out the potential contribution of PPARG, our results suggest that SREBF1 would have a relevant role in the MFD syndrome in sheep fed FO. Among the other studied transcription factors, the tendency to a downregulation of INSIG1 was associated with that of SREBF1, whereas no variation was detected for SCAP or THRSP. Fish oil had no significant effects on the transcript abundance of CD36, GPAM, DGAT1, LPIN1, and XDH. Overall, changes in potential antilipogenic FA and mRNA abundance of candidate lipogenic genes support a relationship between them and suggest that FO-induced MFD in dairy ewes would be mediated by transcriptional mechanisms.
机译:对奶牛的多项研究表明,牛奶脂肪减少症(MFD)与饮食营养引起的脂肪形成基因表达改变之间存在关联。但是,关于小反刍动物的信息不仅稀缺,而且不一致。因此,该实验是在乳母羊中进行的,目的是研究已知能诱导MFD的饮食对乳脂形成相关关键候选基因的牛奶脂肪酸(FA)组成和mRNA丰度的影响。将十二头泌乳的阿萨法母羊(平均在牛奶中放置63天)随机分配到2种处理中,这些处理基于苜蓿干草和浓缩物(50:50)的总混合日粮,补充0(对照)或17 g鱼油/ kg饮食中的干物质(FO)。在开始治疗前以及饮食1周和4.5周后,检查了双切除乳腺组织中的牛奶FA和候选基因的mRNA丰度的概况。不出所料,FO诱导了MFD和改性牛奶FA成分。与对照组相比,在第7天未检测到乳脂浓度和产量的降低,但在第30天分别达到了25%和22%。但是,已确认的或推定的抗脂质FA(trans-10,顺式12和反式9,顺式11 18:2,顺式9 16:1,顺式11 18:1和oxo-FA)已在治疗初期建立,并持续到治疗结束喂养期。这些变化伴随着编码脂肪生成酶的基因的mRNA丰度下降。下调的协调性质倾向于影响大多数研究的代谢途径,包括FA活化(ACSS1),从头合成(ACACA和FASN),摄取和转运(LPL和FABP3),去饱和(SCD1)和酯化(AGAPT6) ),支持牛奶脂肪合成的中央调节剂的参与。在这方面,在不排除PPARG的潜在作用的情况下,我们的结果表明SREBF1在饲喂FO的绵羊的MFD综合征中具有相关作用。在其他研究的转录因子中,INSIG1下调的趋势与SREBF1的下降趋势相关,而SCAP或THRSP均未发现变异。鱼油对CD36,GPAM,DGAT1,LPIN1和XDH的转录本丰度没有显着影响。总体而言,候选脂肪生成基因的潜在抗脂肪生成FA和mRNA丰度的变化支持它们之间的关系,并暗示FO诱导乳母羊中的MFD将由转录机制介导。

著录项

  • 来源
    《Journal of dairy science》 |2016年第10期|7971-7981|共11页
  • 作者单位

    Instituto de Ganaderia de Montana (CSIC-ULE), Finca Marzanas s, 24346 Grulleros, Leon, Spain;

    Instituto de Ganaderia de Montana (CSIC-ULE), Finca Marzanas s, 24346 Grulleros, Leon, Spain;

    Instituto de Ganaderia de Montana (CSIC-ULE), Finca Marzanas s, 24346 Grulleros, Leon, Spain;

    Instituto de Ganaderia de Montana (CSIC-ULE), Finca Marzanas s, 24346 Grulleros, Leon, Spain;

    Instituto de Ganaderia de Montana (CSIC-ULE), Finca Marzanas s, 24346 Grulleros, Leon, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fatty acid; gene expression; marine lipid; nutrigenomics; sheep;

    机译:脂肪酸;基因表达;海洋脂质营养学;羊;
  • 入库时间 2022-08-17 23:23:23

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