Institute of Biology, Biotechnology and Environmental Protection, Faculty of Natural Sciences, University of Silesia, 40-007 Katowice, Poland.
Int J Mol Sci. 2024 Aug 25;25(17):9217. doi: 10.3390/ijms25179217.
The embryogenic transition of plant somatic cells to produce somatic embryos requires extensive reprogramming of the cell transcriptome. The prominent role of transcription factors (TFs) and miRNAs in controlling somatic embryogenesis (SE) induction in plants was documented. The profiling of expression in the embryogenic culture of Arabidopsis implied the contribution of the miR156 and miR169 to the embryogenic induction. In the present study, the function of miR156 and miR169 and the candidate targets, and genes, were investigated in Arabidopsis SE. The results showed that misexpression of and candidate target genes (, , , , , , , , ) negatively affected the embryogenic potential of transgenic explants, suggesting that specific fine-tuning of the miR156 and target genes expression levels seems essential for efficient SE induction. The results revealed that under the control of miR156 might contribute to SE induction by regulating the master regulators of SE, the () genes (, , ). Moreover, the role of miR169 and its candidate targets in SE induction was demonstrated. The results showed that several miR169 targets, including , , , , and , positively regulated SE. We found, that miR169 via seems to modulate the expression of a master SE regulator and other auxin-related genes: (, ) and in SE induction. The study provided new insights into miR156- and miR169- functions in the auxin-related and LEC-controlled regulatory network of SE.
植物体细胞胚胎发生需要细胞转录组的广泛重编程。转录因子(TFs)和 microRNAs(miRNAs)在控制植物体细胞胚胎发生(SE)诱导中的突出作用已有文献记载。拟南芥胚胎发生培养中 表达谱的分析表明,miR156 和 miR169 对胚胎发生诱导有贡献。本研究调查了 miR156 和 miR169 及其候选靶基因 和 在拟南芥 SE 中的功能。结果表明,和候选靶基因(、、、、、、、、)的过表达显著降低了转基因外植体的胚胎发生潜力,表明 miR156 和靶基因表达水平的特定微调对于有效的 SE 诱导似乎是必不可少的。结果表明,miR156 控制下的 可能通过调节 SE 的主调控因子(、、)基因(、、)来促进 SE 诱导。此外,还证明了 miR169 及其候选靶基因在 SE 诱导中的作用。结果表明,包括、、、、和在内的几个 miR169 靶基因正向调节 SE。我们发现,miR169 通过 似乎调节 SE 中主调控因子 和其他生长素相关基因:(、)和 的表达。该研究为 miR156 和 miR169 在 SE 中生长素相关和 LEC 控制的调控网络中的功能提供了新的见解。