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转录组测序揭示了牦牛睾丸间质细胞和支持细胞之间的差异。

Transcriptome sequencing reveals differences between leydig cells and sertoli cells of yak.

作者信息

Wang Yaying, Pan Yangyang, Wang Meng, Afedo Seth Yaw, Zhao Ling, Han Xiaohong, Liu Minqing, Zhao Tian, Zhang Tongxiang, Ding Tianyi, Wang Jinglei, Cui Yan, Yu Sijiu

机构信息

College of Veterinary Medicine, Gansu Agricultural University, Lanzhou, China.

Gansu Province Livestock Embryo Engineering Research Center, Lanzhou, China.

出版信息

Front Vet Sci. 2022 Aug 24;9:960250. doi: 10.3389/fvets.2022.960250. eCollection 2022.

Abstract

In this study, we detected the expression of mRNAs, lncRNAs, and miRNAs in primary cultured leydig cells (LCs) and sertoli cells (SCs) of yak by RNA sequencing technology. A total of 84 differently expression mRNAs (DEmRNAs) (LCs vs. SCs: 15 up and 69 down), 172 differently expression lncRNAs (DElncRNAs) (LCs vs. SCs: 36 up and 136 down), and 90 differently expression miRNAs (DEmiRNAs) (LCs vs. SCs: 72 up and 18 down) were obtained between the two types of cells. GO enrichment and KEGG analysis indicated that the differential expression genes (DEGs) were more enriched in the regulation of actin cytoskeleton, Rap1/MAPK signaling pathway, steroid biosynthesis, focal adhesion, and pathways associated with metabolism. Targeted regulation relationship pairs of 3β-HSD and MSTRG.54630.1, CNTLN and MSTRG.19058.1, BRCA2 and MSTRG.28299.4, CA2 and novel-miR-148, and ceRNA network of LAMC3-MSTRG.68870.1- bta-miR-7862/novel-miR-151/novel-miR-148 were constructed by Cytoscape software. In conclusion, the differences between LCs and SCs were mainly reflected in steroid hormone synthesis, cell proliferation and metabolism, and blood-testicular barrier (BTB) dynamic regulation, and 3β-HSD, CNTLN, BRCA2, CA2, and LAMC3 may be the key factors causing these differences, which may be regulated by ncRNAs. This study provides a basic direction for exploring the differential regulation of LCs and SCs by ncRNAs.

摘要

在本研究中,我们通过RNA测序技术检测了牦牛原代培养的睾丸间质细胞(LCs)和支持细胞(SCs)中mRNA、lncRNA和miRNA的表达。在这两种细胞之间共获得了84个差异表达的mRNA(DEmRNAs)(LCs与SCs:15个上调和69个下调)、172个差异表达的lncRNA(DElncRNAs)(LCs与SCs:36个上调和136个下调)以及90个差异表达的miRNA(DEmiRNAs)(LCs与SCs:72个上调和18个下调)。GO富集和KEGG分析表明,差异表达基因(DEGs)在肌动蛋白细胞骨架调节、Rap1/MAPK信号通路、类固醇生物合成、粘着斑以及与代谢相关的通路中富集程度更高。利用Cytoscape软件构建了3β-HSD与MSTRG.54630.1、CNTLN与MSTRG.19058.1、BRCA2与MSTRG.28299.4、CA2与novel-miR-148的靶向调控关系对以及LAMC3-MSTRG.68870.1-bta-miR-7862/novel-miR-151/novel-miR-148的ceRNA网络。综上所述,LCs和SCs之间的差异主要体现在类固醇激素合成、细胞增殖与代谢以及血睾屏障(BTB)动态调节方面,3β-HSD、CNTLN、BRCA2、CA2和LAMC3可能是导致这些差异的关键因素,它们可能受非编码RNA调控。本研究为探索非编码RNA对LCs和SCs的差异调控提供了一个基本方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76a7/9449347/bf922aff8e91/fvets-09-960250-g0001.jpg

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