College of Landscape Architecture, Beijing University of Agriculture, Beijing, 102206, China.
Beijing Laboratory of Urban and Rural Ecological Environment, Beijing, 102206, China.
Planta. 2024 Sep 28;260(5):109. doi: 10.1007/s00425-024-04539-3.
MiR171d and SCL6 are induced by the plant hormone auxin. MiR171d negatively regulates the expression of SCL6, thereby regulating the growth and development of plant adventitious roots. Under natural conditions, it is difficult to induce rooting in the process of propagating Acer rubrum L. via branches, which seriously limits its wide application in landscaping construction. In this study, the expression of Ar-miR171d was downregulated and the expression of ArSCL6 was upregulated after 300 mg/L indole-3-butyric acid (IBA) treatment. The transient interaction of Ar-miR171d and ArSCL6 in tobacco cells further confirmed their cleavage activity. Transgenic function verification confirmed that OE-Ar-miR171d inhibited adventitious root (AR) development, while OE-ArSCL6 promoted AR development. Tissue-specific expression verification of the ArSCL6 promoter demonstrated that it was specifically expressed in the plant root and leaf organs. Subcellular localization and transcriptional activation assays revealed that both ArSCL6 and ArbHLH089 were located in the nucleus and exhibited transcriptional activation activity. The interaction between the two was verified by bimolecular fluorescence complementarity (BIFC) experiments. These results help elucidate the regulatory mechanisms of the Ar-miR171d-ArSCL6 module during the propagation of A. rubrum and provide a molecular basis for the rooting of branches.
miR171d 和 SCL6 受植物激素生长素诱导。miR171d 负调控 SCL6 的表达,从而调节植物不定根的生长和发育。在自然条件下,通过枝条繁殖红枫(Acer rubrum L.)很难诱导生根,这严重限制了其在园林建设中的广泛应用。在本研究中,300mg/L 吲哚丁酸(IBA)处理后,Ar-miR171d 的表达下调,ArSCL6 的表达上调。烟草细胞中 Ar-miR171d 和 ArSCL6 的瞬时相互作用进一步证实了它们的切割活性。转基因功能验证证实,OE-Ar-miR171d 抑制不定根(AR)的发育,而 OE-ArSCL6 促进 AR 的发育。ArSCL6 启动子的组织特异性表达验证表明,它在植物根和叶片器官中特异性表达。亚细胞定位和转录激活分析表明,ArSCL6 和 ArbHLH089 均位于细胞核内,并具有转录激活活性。通过双分子荧光互补(BIFC)实验验证了两者之间的相互作用。这些结果有助于阐明 Ar-miR171d-ArSCL6 模块在红枫繁殖过程中的调控机制,并为枝条生根提供了分子基础。