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哈萨克产后母羊子宫复旧相关关键miRNA及miRNA-mRNA调控网络的鉴定与验证

Identification and validation of key miRNAs and miRNA-mRNA regulatory network associated with uterine involution in postpartum Kazakh sheep.

作者信息

Yang Heng, Fu Lin, Luo Qifeng, Li Licai, Zheng Fangling, Wen Jiayu, Li Chenjing, Luo Xingxiu, Zhao Zongsheng, Xu Huihao

机构信息

College of Veterinary Medicine, Southwest University, Rongchang 402460, Chongqing, China.

Immunology Research Center, Medical Research Institute, Southwest University, Rongchang 402460, Chongqing, China.

出版信息

Arch Anim Breed. 2021 Apr 23;64(1):119-129. doi: 10.5194/aab-64-119-2021. eCollection 2021.

Abstract

MicroRNAs (miRNAs) are widely expressed in different mammalian tissues and exert their biological effects through corresponding target genes. miRNA target genes can be rapidly and efficiently identified and screened by combining bioinformatics prediction and experimental validation. To investigate the possible molecular regulatory mechanisms involving miRNAs during uterine involution in postpartum ewes, we used Illumina HiSeq sequencing technology to screen for the number and characteristics of miRNAs in faster uterine involution and normal uterine involution group. A total of 118 differentially expressed miRNAs, including 33 known miRNAs and 85 new miRNAs, were identified in the hypothalamic library, whereas 54 miRNAs, including 5 known miRNAs and 49 new miRNAs, were identified in the uterine library. Screening with four types of gene prediction software revealed 73 target genes associated with uterine involution, and subsequently, GO annotation and KEGG pathway analysis were performed. The results showed that, in the hypothalamic-uterine axis, uterine involution in postpartum ewes might primarily involve two miRNA-target gene pairs, namely, miRNA-200a-PTEN and miRNA-133-FGFR1, which can participate in GnRH signal transduction in the upstream hypothalamus and in the remodeling process at the downstream uterus, through the PI3K-AKT signaling pathway to influence the recovery of the morphology and functions of the uterus during the postpartum period in sheep. Therefore, identification of differentially expressed miRNAs in this study fills a gap in the research related to miRNAs in uterine involution in postpartum ewes and provides an important reference point for a comprehensive understanding of the molecular mechanisms underlying the regulation of postpartum uterine involution in female livestock.

摘要

微小RNA(miRNA)在不同的哺乳动物组织中广泛表达,并通过相应的靶基因发挥其生物学作用。通过结合生物信息学预测和实验验证,可以快速、有效地鉴定和筛选miRNA靶基因。为了研究产后母羊子宫复旧过程中涉及miRNA的可能分子调控机制,我们使用Illumina HiSeq测序技术筛选快速子宫复旧组和正常子宫复旧组中miRNA的数量和特征。在下丘脑文库中鉴定出总共118个差异表达的miRNA,包括33个已知miRNA和85个新miRNA,而在子宫文库中鉴定出54个miRNA,包括5个已知miRNA和49个新miRNA。用四种类型的基因预测软件进行筛选,发现73个与子宫复旧相关的靶基因,随后进行了GO注释和KEGG通路分析。结果表明,在下丘脑-子宫轴中,产后母羊的子宫复旧可能主要涉及两个miRNA-靶基因对,即miRNA-200a-PTEN和miRNA-133-FGFR1,它们可以通过PI3K-AKT信号通路参与上游下丘脑的GnRH信号转导和下游子宫的重塑过程,从而影响绵羊产后子宫形态和功能的恢复。因此,本研究中差异表达miRNA的鉴定填补了产后母羊子宫复旧中miRNA相关研究的空白,并为全面了解雌性家畜产后子宫复旧调控的分子机制提供了重要参考。

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