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去卵巢及雌二醇处理母羊甲状腺微小RNA谱对人工光周期的反应

The Response of the miRNA Profiles of the Thyroid Gland to the Artificial Photoperiod in Ovariectomized and Estradiol-Treated Ewes.

作者信息

Ren Zizhen, Wang Wei, He Xiaoyun, Chu Mingxing

机构信息

State Key Laboratory of Animal Biotech Breeding, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

出版信息

Animals (Basel). 2024 Dec 24;15(1):11. doi: 10.3390/ani15010011.

Abstract

The photoperiod has been considered to be a key environmental factor in sheep reproduction, and some studies have shown that the thyroid gland plays an important role in mammalian reproduction, but the molecular mechanism is still unclear. In this study, we used the artificial-light-controlled, ovariectomized, and estradiol-treated model (OVX + E2 model); healthy and consistent 2-3-year-old Sunite multiparous ewes were collected; and thyroids were collected for testing, combined with RNA-seq technology and bioinformatics analysis, to analyze the effects of different photoperiods (long photoperiod treatment for 42 days, LP42; short photoperiod treatment for 42 days, SP42; SP42 transferred to LP42, SPLP42) on the variations in the miRNA profiles of the thyroid gland. A total of 105 miRNAs were differentially expressed in the thyroid gland, most of which were new miRNAs. Through GO and KEGG enrichment analysis, the results showed that the photoperiod response characteristics of Sunite ewes were affected by Olfactory transduction, Wnt signaling pathways, and Apelin signaling pathways. A different illumination time may have a certain influence on the downstream of these pathways, which leads to the change in animal estrus state. In addition, lncRNA-mRNA-miRNA network analysis revealed the target binding sites of identified miRNAs in DE-circRNA and DE-mRNA, such as Novel_369, Novel_370, Novel_461, and so on. The results of this study will provide some new insights into the function of miRNA and the changes in sheep thyroid glands under different photoperiods.

摘要

光照周期被认为是影响绵羊繁殖的关键环境因素,一些研究表明甲状腺在哺乳动物繁殖中起重要作用,但其分子机制仍不清楚。本研究采用人工光照控制、去卵巢及雌二醇处理模型(OVX + E2模型);选取健康、一致的2 - 3岁苏尼特多胎母羊;采集甲状腺进行检测,结合RNA测序技术和生物信息学分析,分析不同光照周期(长光照周期处理42天,LP42;短光照周期处理42天,SP42;SP42转至LP42,SPLP42)对甲状腺miRNA谱变化的影响。共105个miRNA在甲状腺中差异表达,其中大部分为新的miRNA。通过GO和KEGG富集分析,结果表明苏尼特母羊的光照周期反应特征受嗅觉转导、Wnt信号通路和Apelin信号通路影响。不同的光照时间可能对这些通路的下游产生一定影响,从而导致动物发情状态的改变。此外,lncRNA - mRNA - miRNA网络分析揭示了已鉴定的miRNA在DE - circRNA和DE - mRNA中的靶标结合位点,如Novel_369、Novel_370、Novel_461等。本研究结果将为miRNA的功能以及不同光照周期下绵羊甲状腺的变化提供一些新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f17e/11718883/4cac5d2a2129/animals-15-00011-g001.jpg

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