College of Life Science, Jilin Agricultural University, Changchun, Jilin, 130118, China; Jilin Engineering Research Center Ginseng Genetic Resources Development and Utilization, Jilin Agricultural University, Changchun, Jilin, 130118, China.
Plant Physiol Biochem. 2024 Oct;215:109026. doi: 10.1016/j.plaphy.2024.109026. Epub 2024 Aug 8.
MicroRNA (miRNA) is a class of non-coding endogenous small-molecule, single-stranded RNAs, and it is involved in post-transcriptional gene expression regulation in plants and plays an important role in plant growth and development. Among them, miRNA156 regulates members of target SPL gene family and thus participates in plant growth and development, hormonal response and adversity stress. However, it has not been reported in ginseng. In this study, based on the previous analysis of the SPL gene family, the age-related and stably expressed SPL gene PgSPL24-09 was obtained in roots. The binding site of miRNA156 to this gene was analyzed using target gene prediction tools, and the interactions between miRNA156 and PgSPL24-09 gene were verified by dual luciferase reporter gene assay and RT-qPCR. At the same time, miRNA156 silencing vector and overexpression vector were constructed and transformed into ginseng adventitious roots and Arabidopsis thaliana to analyze the molecular mechanism of miRNA156-SPL module in regulating the growth of ginseng adventitious roots. This study provides a theoretical basis for the in-depth study of the molecular role of miRNAs in ginseng growth, and also lays the foundation for the study of the role of miRNA156-SPL module in regulating the growth and development of ginseng.
MicroRNA (miRNA) 是一类非编码内源性小分子单链 RNA,参与植物中转录后基因表达调控,在植物生长发育中发挥重要作用。其中,miRNA156 调控靶基因 SPL 家族成员,从而参与植物的生长发育、激素响应和逆境胁迫等过程。然而,在人参中尚未有报道。本研究在前人对 SPL 基因家族分析的基础上,从人参根中获得了一个与年龄相关且稳定表达的 SPL 基因 PgSPL24-09。利用靶基因预测工具分析了该基因与 miRNA156 的结合位点,并通过双荧光素酶报告基因检测和 RT-qPCR 验证了 miRNA156 与 PgSPL24-09 基因之间的相互作用。同时,构建了 miRNA156 沉默载体和过表达载体,并转化到人参不定根和拟南芥中,分析 miRNA156-SPL 模块在调节人参不定根生长中的分子机制。本研究为人参生长过程中 miRNA 的分子作用提供了理论依据,也为 miRNA156-SPL 模块在调节人参生长发育中的作用研究奠定了基础。