首页> 外文期刊>畜牧与生物技术杂志(英文版) >Effect of diets supplemented with linseed alone or combined with vitamin E and selenium or with plant extracts, on Longissimus thoracis transcriptome in growing-finishing Italian Large White pigs
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Effect of diets supplemented with linseed alone or combined with vitamin E and selenium or with plant extracts, on Longissimus thoracis transcriptome in growing-finishing Italian Large White pigs

机译:日粮单独添加亚麻籽或与维生素E,硒或植物提取物配合使用,对生长肥育的意大利大型白猪的苏门答腊转录组的影响

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摘要

Background:Supplementing farm animals diet with functional ingredients may improve the nutritional quality of meat products.Diet composition has been also demonstrated to influence the gene expression with effect on biological processes and pathways.However,the knowledge on the effect of nutrients at the molecular level is scant.In particular,studies on the effects of antioxidants and polyphenols dietary supplementation have been investigated mainly in rodents,and only scarcely in farm animals so far.RNA-Seq with next-generation sequencing is increasingly the method of choice for studying changes in the transcriptome and it has been recently employed also in pig nutrigenomics studies to identify diet-induced changes in gene expression.The present study aimed to investigate the effect of diets enriched with functional ingredients (linseed,vitamin E and plant extracts) on the transcriptome of pig Longissimus thoracis to elucidate the role of these compounds in influencing genes involved in muscle physiology and metabolism compared to a standard diet.Results:Eight hundred ninety-three significant differentially expressed genes (DEGs) (FDR adjusted P-value ≤ 0.05) were detected by RNA-Seq analysis in the three diet comparisons (D2-D1,D3-D1,D4-D1).The functional analysis of DEGs showed that the diet enriched with n-3 PUFA from linseed (D2) mostly downregulated genes in pathways and biological processes (BPs) related to muscle development,contraction,and glycogen metabolism compared to the standard diet.The diet supplemented with linseed and vitamin E/Selenium (D3) showed to mostly downregulate genes linked to oxidative phosphorylation.Only few genes involved in extracellular matrix (ECM) organization were upregulated by the D3.Finally,the comparison D4-D1 showed that the diet supplemented with linseed and plant extracts (D4) upregulated the majority of genes compared to D1 that were involved in a complex network of pathways and BPs all connected by hub genes.In particular,IGF2 was a hub gene connecting protein metabolism,ECM organization,immune system and lipid biosynthesis pathways.Conclusion:The supplementation of pig diet with n-3 PUFA from linseed,antioxidants and plant-derived polyphenols can influence the expression of a relevant number of genes in Longissimus thoracis muscle that are involved in a variety of biochemical pathways linked to muscle function and metabolism.
机译:背景:向牲畜饮食中添加功能成分可以改善肉制品的营养质量。饮食组成也被证明会影响基因表达,从而影响生物过程和途径。但是,在分子水平上了解养分作用的知识特别是关于抗氧化剂和多酚膳食补充剂的研究主要是在啮齿动物中进行的,到目前为止,仅在农场动物中才进行过很少的研究。带有下一代测序的RNA-Seq越来越成为研究动物体内变化的首选方法。这项研究最近也被用于猪营养学研究中,以鉴定饮食引起的基因表达变化。本研究旨在研究富含功能成分(亚麻籽,维生素E和植物提取物)的饮食对大豆的转录组的影响。猪胸大肌阐明这些化合物在影响相关基因中的作用结果:在三个饮食比较中(D2-D1),通过RNA-Seq分析检测了893个显着差异表达基因(DEG)(FDR调整的P值≤0.05)。 ,D3-D1,D4-D1).DEG的功能分析表明,富含亚麻籽(D2)的n-3 PUFA的饮食在与肌肉发育,收缩和糖原有关的途径和生物过程(BP)中大多下调了基因。与标准饮食相比,补充亚麻籽和维生素E /硒(D3)的饮食显示大部分下调了与氧化磷酸化有关的基因。只有很少的细胞外基质(ECM)组织相关的基因被D3上调。比较D4-D1表明,与D1相比,添加亚麻籽和植物提取物(D4)的饮食上调了大多数基因,而D1则参与了复杂的途径网络和BP的复杂网络,这些网络都通过中枢基因连接。 r,IGF2是连接蛋白质代谢,ECM组织,免疫系统和脂质生物合成途径的枢纽基因。结论:从亚麻籽,抗氧化剂和植物衍生的多酚中补充猪日粮中的n-3 PUFA可以影响相关数目的表达基因在胸肌中与多种与肌肉功能和代谢有关的生化途径有关。

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  • 来源
    《畜牧与生物技术杂志(英文版)》 |2019年第1期|159-171|共13页
  • 作者单位

    Interdepartmental Centre for Industrial Agrifood Research(CIRI-AGRO),University of Bologna, Via Quinto Bucci 336, 1-47521 Cesena, Italy;

    Interdepartmental Centre for Industrial Agrifood Research(CIRI-AGRO),University of Bologna, Via Quinto Bucci 336, 1-47521 Cesena, Italy;

    Interdepartmental Centre for Industrial Agrifood Research(CIRI-AGRO),University of Bologna, Via Quinto Bucci 336, 1-47521 Cesena, Italy;

    Department of Agricultural and Food Sciences(DISTAL), University of Bologna, Viale Fanin 46, 1-40127 Bologna, Italy;

    Department of Agricultural and Food Sciences(DISTAL), University of Bologna, Viale Fanin 46, 1-40127 Bologna, Italy;

    Department of Agricultural and Food Sciences(DISTAL), University of Bologna, Viale Fanin 46, 1-40127 Bologna, Italy;

    Department of Life Sciences, University of Modena and Reggio Emilia, Via G.Amendola 2, 1-42122 Reggio Emilia, Italy;

    Interdepartmental Research Centre for Agri-Food Biological Resources Improvement and Valorisation(BIOGEST-SITEIA), University of Modena and Reggio Emilia, P.le Europa, 1, 1-42124 Reggio Emilia, Italy;

    Interdepartmental Centre for Industrial Agrifood Research(CIRI-AGRO),University of Bologna, Via Quinto Bucci 336, 1-47521 Cesena, Italy;

    Department of Agricultural and Food Sciences(DISTAL), University of Bologna, Viale Fanin 46, 1-40127 Bologna, Italy;

    Interdepartmental Centre for Industrial Agrifood Research(CIRI-AGRO),University of Bologna, Via Quinto Bucci 336, 1-47521 Cesena, Italy;

    Department of Agricultural and Food Sciences(DISTAL), University of Bologna, Viale Fanin 46, 1-40127 Bologna, Italy;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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