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Genome-wide DNA Methylation Profiles of Small Intestine and Liver in Fast-growing and Slow-growing Weaning Piglets

机译:快速生长和缓慢生长的断奶仔猪的小肠和肝脏全基因组DNA甲基化分布

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摘要

Although growth rate is one of the main economic traits of concern in pig production, there is limited knowledge on its epigenetic regulation, such as DNA methylation. In this study, we conducted methyl-CpG binding domain protein-enriched genome sequencing (MBD-seq) to compare genome-wide DNA methylation profile of small intestine and liver tissue between fast- and slow-growing weaning piglets. The genome-wide methylation pattern between the two different growing groups showed similar proportion of CpG (regions of DNA where a cytosine nucleotide occurs next to a guanine nucleotide in the linear sequence) coverage, genomic regions, and gene regions. Differentially methylated regions and genes were also identified for downstream analysis. In canonical pathway analysis using differentially methylated genes, pathways (triacylglycerol pathway, some cell cycle related pathways, and insulin receptor signaling pathway) expected to be related to growth rate were enriched in the two organ tissues. Differentially methylated genes were also organized in gene networks related to the cellular development, growth, and carbohydrate metabolism. Even though further study is required, the result of this study may contribute to the understanding of epigenetic regulation in pig growth.
机译:尽管生长速度是养猪生产中关注的主要经济特征之一,但对其表观遗传调控(例如DNA甲基化)的认识有限。在这项研究中,我们进行了甲基CpG结合域蛋白富集的基因组测序(MBD-seq),以比较快速生长和缓慢生长的断奶仔猪的小肠和肝脏组织的全基因组DNA甲基化分布。两个不同生长群体之间的全基因组甲基化模式显示出相似的CpG(线性区域中胞嘧啶核苷酸紧随鸟嘌呤核苷酸出现的DNA区域)覆盖率,基因组区域和基因区域。还鉴定了差异甲基化的区域和基因用于下游分析。在使用差异甲基化基因的规范途径分析中,预期与生长速率相关的途径(三酰基甘油途径,一些细胞周期相关途径和胰岛素受体信号传导途径)在两个器官组织中富集。在与细胞发育,生长和碳水化合物代谢有关的基因网络中还组织了差异甲基化的基因。即使需要进一步的研究,这项研究的结果也可能有助于了解猪生长中的表观遗传调控。

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