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猪发情周期的时间序列卵巢转录组分析揭示了类固醇代谢和黄体发育过程中的基因表达变化。

Time Series Ovarian Transcriptome Analyses of the Porcine Estrous Cycle Reveals Gene Expression Changes during Steroid Metabolism and Corpus Luteum Development.

作者信息

Park Yejee, Park Yoon-Been, Lim Seok-Won, Lim Byeonghwi, Kim Jun-Mo

机构信息

Functional Genomics & Bioinformatics Laboratory, Department of Animal Science and Technology, Chung-Ang University, Anseong 17546, Gyeonggi-do, Korea.

出版信息

Animals (Basel). 2022 Feb 4;12(3):376. doi: 10.3390/ani12030376.

Abstract

The porcine estrous cycle is influenced by reproductive hormones, which affect porcine reproduction and result in physiological changes in the reproductive organs. The ovary is involved in ovulation, luteinization, corpus luteum development, and luteolysis. Here, we aimed to provide a comprehensive understanding of the gene expression patterns in porcine ovarian transcriptomes during the estrous cycle through differentially expressed genes profiling and description of molecular mechanisms. The transcriptomes of porcine ovary were obtained during the estrous cycle at three-day intervals from day 0 to day 18 using RNA-seq. At seven time points of the estrous cycle, 4414 DEG were identified; these were classified into three clusters according to their expression patterns. During the late metestrus and diestrus periods, the expression in cluster 1 increased rapidly, and steroid biosynthesis was significant in the pathway. Cluster 2 gene expression patterns represented the cytokine-cytokine receptor interaction in significant pathways. In cluster 3, the hedgehog signaling pathway was selected as the significant pathway. Our study exhibited dynamic gene expression changes with these three different patterns of cluster 1, 2, and 3. The results helped identify the functions and related significant genes especially during the late metestrus and diestrus periods in the estrous cycle.

摘要

猪的发情周期受生殖激素影响,这些激素影响猪的繁殖并导致生殖器官发生生理变化。卵巢参与排卵、黄体化、黄体发育和黄体溶解。在此,我们旨在通过差异表达基因分析和分子机制描述,全面了解发情周期中猪卵巢转录组的基因表达模式。使用RNA测序在发情周期的第0天到第18天每隔三天获取猪卵巢的转录组。在发情周期的七个时间点,共鉴定出4414个差异表达基因;根据它们的表达模式将其分为三个簇。在发情后期和间情期,簇1中的表达迅速增加,且类固醇生物合成在该途径中显著。簇2的基因表达模式在显著途径中代表细胞因子 - 细胞因子受体相互作用。在簇3中,刺猬信号通路被选为显著途径。我们的研究展示了簇1、2和3这三种不同模式下基因表达的动态变化。这些结果有助于确定功能以及相关的重要基因,特别是在发情周期的发情后期和间情期。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3370/8833361/6806e0475bab/animals-12-00376-g001.jpg

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