Anhui Key Laboratory of Livestock and Poultry Product Safety Engineering, Institute of Animal Husbandry and Veterinary Medicine, Anhui Academy of Agricultural Sciences, Hefei, 230031, People's Republic of China.
Sci Rep. 2020 Jan 16;10(1):454. doi: 10.1038/s41598-019-57327-5.
The periodic regrowth of rabbit fur is economically important. Here, we aimed to characterise the histological traits and microRNA (miRNA) expression profiles in the skin tissue of Wan Strain Angora rabbits at different weeks after plucking. Haematoxylin-eosin staining showed that hair follicles were in the telogen phase in the first week, while they were in the anagen phase from the fourth to twenty-fourth weeks. In addition, two small RNA libraries derived from skin samples of Wan Strain Angora rabbits at telogen and anagen stages yielded over 24 million high-quality reads. Specifically, 185 miRNAs were differentially expressed between the telogen and anagen phases. The function of the differentially expressed miRNAs was explored by comparing them with known mammalian miRNAs and by Gene Ontology and Kyoto Encyclopedia of Genes and Genomes pathway analysis of their predicted targets. Five new functional miRNAs were validated using quantitative real-time PCR. Moreover, the fibroblast growth factor 5 (FGF5) gene was verified to be a target of conservative_NC_013672.1_9290 and conservative_NC_013675.1_10734. We investigated differential miRNA profiles between the telogen and anagen phases of the hair cycle and our findings provide a basis for future studies focusing on the mechanisms of miRNA-mediated regulation of rabbit hair follicle cycling.
家兔毛周期性再生具有重要的经济意义。本研究旨在描述不同拔毛后周龄 Wan 系安哥拉兔皮肤组织的组织学特征和 microRNA(miRNA)表达谱。苏木精-伊红染色显示,毛囊在第 1 周处于休止期,而在第 4 至 24 周处于生长期。此外,从休止期和生长期 Wan 系安哥拉兔皮肤样本中获得的两个小 RNA 文库产生了超过 2400 万个高质量读数。具体而言,在休止期和生长期之间有 185 个 miRNA 表达差异。通过与已知的哺乳动物 miRNA 进行比较,并对其预测靶基因进行基因本体论和京都基因与基因组百科全书通路分析,探讨了差异表达 miRNA 的功能。使用定量实时 PCR 验证了 5 个新的功能性 miRNA。此外,还验证了成纤维细胞生长因子 5(FGF5)基因是保守_NC_013672.1_9290 和保守_NC_013675.1_10734 的靶基因。我们研究了毛囊周期休止期和生长期之间差异 miRNA 谱,我们的研究结果为 miRNA 介导的调控兔毛囊周期性再生的机制的未来研究提供了基础。