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Reduced representation bisulfite sequencing (RRBS) of dairy goat mammary glands reveals DNA methylation profiles of integrated genome-wide and critical milk-related genes

机译:奶山羊乳腺的代表性减少的亚硫酸氢盐测序(RRBS)显示了整合的全基因组和关键的与牛奶相关的基因的DNA甲基化谱

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摘要

DNA methylation (DNAm), a major element of epigenetics, plays critical roles in individual development. Reduced representation bisulfite sequencing (RRBS) is an effective and economical method for analyzing the DNA methylation of a single base. The aims of this study were to determine the DNAm profiles of the methylation contexts (CGs and non-CGs) of lactation and dry periods of goat mammary glands using the RRBS, and to identify potential milk-related genes. The proportion of CG was the highest among all the sequence contexts. The highest CG levels (72.44% to 75.24%) occurred in the 3′ UTR region, followed by the gene body region (61.14% to 65.45%). The non-CG levels were low compared to the CG levels. Bioinformatic analysis demonstrated that the CGs were mainly enriched at high methylation levels (>90%), while non-CGs were enriched at low methylation levels. Methylation levels of 95 and 54 genes in the lactation period were up- or downregulated, respectively, relative to the dry period, such as PPARα, RXRα and NPY genes. The bisulfite sequencing PCR results showed that the methylation level of goat PPARα gene during the lactation period was significant lower than in the dry period, while the methylation level of the RXRα gene was lower in the dry period than in the lactation period. Meanwhile, the methylation levels of human PPARα and NPY genes were significantly higher in MCF-7 than in MCF-10A cells. These findings provide essential information for DNA methylation profiles of goat mammary gland and detect some potential milk-related genes in dairy goats.
机译:DNA甲基化(DNAm)是表观遗传学的主要元素,在个体发育中起关键作用。简化表示的亚硫酸氢盐测序(RRBS)是一种有效且经济的方法,用于分析单个碱基的DNA甲基化。这项研究的目的是使用RRBS来确定山羊乳腺的泌乳期和干燥期的甲基化环境(CG和非CG)的DNAm图谱,并鉴定潜在的牛奶相关基因。在所有序列背景中,CG的比例最高。最高的CG水平(72.44%至75.24%)发生在3'UTR区域,其次是基因体区域(61.14%至65.45%)。与CG水平相比,非CG水平较低。生物信息学分析表明,CGs主要在高甲基化水平(> 90%)时富集,而非CGs在低甲基化水平时富集。相对于干燥期,哺乳期的95和54个基因的甲基化水平分别上调或下调,例如PPARα,RXRα和NPY基因。亚硫酸氢盐测序PCR结果表明,泌乳期山羊PPARα基因的甲基化水平显着低于干旱期,而RXRα基因的甲基化水平在干旱期比泌乳期低。同时,MCF-7中人PPARα和NPY基因的甲基化水平明显高于MCF-10A细胞。这些发现为山羊乳腺的DNA甲基化概况提供了重要信息,并检测了奶山羊中一些潜在的与牛奶相关的基因。

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