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在去卵巢并接受雌二醇处理的绵羊中,发现了下丘脑光周期反应的转录组变化。

Transcriptomic Changes of Photoperiodic Response in the Hypothalamus Were Identified in Ovariectomized and Estradiol-Treated Sheep.

作者信息

He Xiaoyun, Di Ran, Guo Xiaofei, Cao Xiaohan, Zhou Mei, Li Xiaoyu, Xia Qing, Wang Xiangyu, Zhang Jinlong, Zhang Xiaosheng, Liu Qiuyue, Chu Mingxing

机构信息

Key Laboratory of Animal Genetics and Breeding and Reproduction of Ministry of Agriculture and Rural Affairs, Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.

Institute of Animal Husbandry and Veterinary Medicine, Tianjin Academy of Agricultural Sciences, Tianjin, China.

出版信息

Front Mol Biosci. 2022 Apr 11;9:848144. doi: 10.3389/fmolb.2022.848144. eCollection 2022.

Abstract

Accurate timing of seasonal changes is an essential ability for an animal's survival, and the change in the photoperiod is the key factor affecting reproductive seasonality in mammals. Emerging evidence has suggested that multiple hypothalamic genes participate in the photoperiod-induced regulation of reproductive activities in sheep, but the mechanism is still unclear. In this study, we initially examined the plasma level of two major reproductive hormones, namely, follicle-stimulating hormone (FSH) and prolactin (PRL), under different photoperiods in ovariectomized and estradiol-treated (OVX + E) sheep using radioimmunoassay (RIA). Of the two hormones, the concentration of PRL significantly increased with the extension of the photoperiod, while FSH showed the opposite trend. Subsequently, an examination of the transcriptomic variation between the short photoperiod (SP) and long photoperiod (LP) was conducted. Differential expression analyses and functional annotation showed that several key genes in the insulin secretion (, , , and ), GnRH (, , , , and ) pathways, and circadian entrainment (, , , , and ), as well as numerous lncRNAs, including XR_173257.3, XR_173415.3, XR_001435315.1, XR_001024596.2, and XR_001023464.2, were shown potentially vital for the hypothalamic photoperiodic response. Four of the differentially expressed mRNAs and lncRNAs were validated by qPCR. The constructed mRNA-mRNA interaction networks further revealed that transcripts potentially participated in hypothalamic thyroid hormone synthesis, endocrine resistance, and neuroactive ligand-receptor interactions. The interactome analysis of lncRNAs and their targets implied that XR_173257.3 and its target arylalkylamine N-acetyltransferase () and XR_173415.3 and its target might participate in the regulation of seasonal reproduction. Together, the changes in reproductive hormones and transcriptome will help to determine the important photoperiod-induced lncRNAs and mRNAs and provide a valuable resource for further research on reproductive seasonality in sheep.

摘要

准确把握季节变化的时间是动物生存的一项基本能力,而光周期的变化是影响哺乳动物繁殖季节性的关键因素。新出现的证据表明,多个下丘脑基因参与了绵羊光周期诱导的生殖活动调节,但具体机制仍不清楚。在本研究中,我们首先使用放射免疫分析法(RIA)检测了去卵巢并经雌二醇处理(OVX + E)的绵羊在不同光周期下两种主要生殖激素,即促卵泡激素(FSH)和催乳素(PRL)的血浆水平。在这两种激素中,PRL的浓度随着光周期的延长而显著增加,而FSH则呈现相反的趋势。随后,对短光周期(SP)和长光周期(LP)之间的转录组变异进行了检测。差异表达分析和功能注释表明,胰岛素分泌(、、、和)、GnRH(、、、、和)途径以及昼夜节律调节(、、、、和)中的几个关键基因,以及众多lncRNA,包括XR_173257.3、XR_173415.3、XR_001435315.1、XR_001024596.2和XR_001023464.2,对下丘脑光周期反应可能至关重要。通过qPCR验证了4个差异表达的mRNA和lncRNA。构建的mRNA-mRNA相互作用网络进一步揭示,转录本可能参与下丘脑甲状腺激素合成、内分泌抵抗和神经活性配体-受体相互作用。lncRNA及其靶标的相互作用组分析表明,XR_173257.3及其靶标芳基烷基胺N-乙酰基转移酶()以及XR_173415.3及其靶标可能参与季节性繁殖的调节。总之,生殖激素和转录组的变化将有助于确定重要的光周期诱导lncRNA和mRNA,并为进一步研究绵羊的繁殖季节性提供有价值的资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5453/9036065/08b384b90a6f/fmolb-09-848144-g001.jpg

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