Yao Baojin, Zhang Mei, Liu Meixin, Lu Bocheng, Leng Xiangyang, Hu Yaozhong, Zhao Daqing, Zhao Y U
Jilin Ginseng Academy, Changchun University of Chinese Medicine, Changchun 130117, China.
J Biosci. 2019 Mar;44(1).
Antler growth is a unique event compared to other growth and development processes in mammals. Antlers grow extremely fast during the rapid growth stage when growth rate peaks at 2 cm per day. Antler growth is driven by a specific endochondral ossification process in the growth center that is in the distal region of the antler tip. In this study, we used state-of-art RNA-seq technology to analyze the expression profiles of mRNAs and miRNAs during antler growth. Our results indicated that the expression levels of multiple genes involved in chondrogenesis and endochondral ossification, including and , were significantly increased at the rapid growth stage. Our results also indicated that there were multiple differentially expressed miRNAs interacting with differentially expressed genes with opposite expression patterns. Furthermore, some of the miRNAs, including miR-3072-5p, miR-1600, miR-34-5p, miR-6889-5p and miR-6729-5p, simultaneously interacted with and controlled multiple genes involved in the process of chondrogenesis and endochondral ossification. Therefore, we established a miRNA-mRNA regulatory network by identifying miRNAs and their target genes that were differentially expressed in the antler growth centers by comparing the rapid growth stage and the initial growth stage.
与哺乳动物的其他生长和发育过程相比,鹿茸生长是一个独特的过程。在快速生长阶段,鹿茸生长极快,生长速度峰值可达每天2厘米。鹿茸生长由位于鹿茸尖端远端区域的生长中心内特定的软骨内成骨过程驱动。在本研究中,我们使用先进的RNA测序技术分析鹿茸生长过程中mRNA和miRNA的表达谱。我们的结果表明,在快速生长阶段,多个参与软骨形成和软骨内成骨的基因(包括 和 )的表达水平显著增加。我们的结果还表明,存在多个差异表达的miRNA与表达模式相反的差异表达基因相互作用。此外,一些miRNA,包括miR-3072-5p、miR-1600、miR-34-5p、miR-6889-5p和miR-6729-5p,同时与多个参与软骨形成和软骨内成骨过程的基因相互作用并对其进行调控。因此,通过比较快速生长阶段和初始生长阶段,我们通过鉴定在鹿茸生长中心差异表达的miRNA及其靶基因,建立了一个miRNA-mRNA调控网络。