首页> 美国卫生研究院文献>Frontiers in Endocrinology >Genome-Wide Analysis on the Landscape of Transcriptomes and Their Relationship With DNA Methylomes in the Hypothalamus Reveals Genes Related to Sexual Precocity in Jining Gray Goats
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Genome-Wide Analysis on the Landscape of Transcriptomes and Their Relationship With DNA Methylomes in the Hypothalamus Reveals Genes Related to Sexual Precocity in Jining Gray Goats

机译:全基因组的转录组景观及其与下丘脑中DNA甲基化组的关系的分析揭示了济宁灰山羊性早熟相关基因

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摘要

The Jining Gray goat is famous for its sexual precocity; however, the exact regulatory mechanism is still unknown. The hypothalamus is the key centrum in the process of animal reproduction, especially in signal transduction, and the initiation of puberty. The identification of potential genes and pathways in the hypothalamus of Jining Gray goat is critical to understanding the regulatory mechanism of sexual precocity in these goats. In this study, mRNA transcriptome analysis of the hypothalamus of juvenile and pubertal goats revealed eight genes (NTS, ADORA1, CRH, UCN3, E2F2, PDGFRB, GNRH1, and CACNA1C) and three pathways [neuroactive ligand-receptor interaction; gonadotropin-releasing hormone (GnRH) signal; melanoma] that are involved in this regulation. Subsequent methylation analysis on differentially methylated region (DMR) genes revealed the potential regulation network that influences pubertal onset. Correlation analysis verified the methylation level of some DMR genes correlates negatively with expression level. Integrated analysis between transcriptomes and methylomes identified 80 candidate genes involved in GnRH and neuroactive ligand signal pathways, of which CACNA1C and CRH were differentially expressed genes (DEGs) influenced by methylation level. The GnRH gene was the only DEG not affected by its methylation level. In summary, in this study, we identified eight genes and three pathways that are related to pubertal onset in Jining Gray goats, and the expression of CACNA1C and CRH genes of the GnRH and neuroactive ligand signal pathways were influenced by DNA methylation, while that of the GnRH gene was not affected.
机译:济宁灰山羊以性早熟闻名。但是,确切的调节机制仍是未知的。下丘脑是动物繁殖过程中的关键中心,特别是在信号转导和青春期的起始过程中。济宁灰山羊下丘脑潜在基因和途径的鉴定对于了解这些山羊性早熟的调控机制至关重要。在这项研究中,对幼山羊和青春期山羊的下丘脑的mRNA转录组分析揭示了八个基因(NTS,ADORA1,CRH,UCN3,E2F2,PDGFRB,GNRH1和CACNA1C)和三个途径[神经活性配体-受体相互作用;促性腺激素释放激素(GnRH)信号;黑色素瘤]。随后对差异甲基化区域(DMR)基因的甲基化分析揭示了影响青春期发作的潜在调控网络。相关性分析验证了一些DMR基因的甲基化水平与表达水平呈负相关。转录组和甲基化组之间的综合分析确定了80个参与GnRH和神经活性配体信号通路的候选基因,其中CACNA1C和CRH是受甲基化水平影响的差异表达基因(DEG)。 GnRH基因是唯一不受其甲基化水平影响的DEG。综上所述,我们在济宁灰山羊中鉴定了与青春期发病相关的8个基因和3条途径,并且DNA甲基化影响了GnRH和神经活性配体信号途径的CACNA1C和CRH基因的表达。 GnRH基因不受影响。

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