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Genome-Wide DNA Methylation and Gene Expression Profiles in Cows Subjected to Different Stress Level as Assessed by Cortisol in Milk

机译:根据皮质醇在牛奶中进行不同应力水平的牛的基因组DNA甲基化和基因表达谱

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摘要

Dairy cattle health, wellbeing and productivity are deeply affected by stress. Its influence on metabolism and immune response is well known, but the underlying epigenetic mechanisms require further investigation. In this study, we compared DNA methylation and gene expression signatures between two dairy cattle populations falling in the high- and low-variant tails of the distribution of milk cortisol concentration (MC), a neuroendocrine marker of stress in dairy cows. Reduced Representation Bisulfite Sequencing was used to obtain a methylation map from blood samples of these animals. The high and low groups exhibited similar amounts of methylated CpGs, while we found differences among non-CpG sites. Significant methylation changes were detected in 248 genes. We also identified significant fold differences in the expression of 324 genes. KEGG and Gene Ontology (GO) analysis showed that genes of both groups act together in several pathways, such as nervous system activity, immune regulatory functions and glucocorticoid metabolism. These preliminary results suggest that, in livestock, cortisol secretion could act as a trigger for epigenetic regulation and that peripheral changes in methylation can provide an insight into central nervous system functions.
机译:奶牛健康,福利和生产力深受压力影响。它对新陈代谢和免疫反应的影响是众所周知的,但潜在的表观遗传机制需要进一步调查。在这项研究中,我们比较了DNA甲基化和基因表达签名在落入牛奶皮质醇浓度(MC)分布的高和低变异尾部,是奶牛奶牛的胁迫的神经内分泌标记。降低的表示亚硫酸氢盐测序用于从这些动物的血液样品中获得甲基化图。高和低组表现出类似的甲基化CPG,而我们发现非CPG位点之间的差异。在248个基因中检测到显着的甲基化变化。我们还确定了324个基因表达的显着倍差差异。 Kegg和Gene本体论(GO)分析表明,两组的基因在几种途径中起作用,如神经系统活性,免疫调节功能和糖皮质激素代谢。这些初步结果表明,在牲畜中,皮质醇分泌可以作为表观遗传调节的触发,并且甲基化的外周变化可以对中枢神经系统功能提供洞察。

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