Department of Plant Biotechnology and Bioinformatics, Ghent University, Technologiepark 71, Ghent 9052, Belgium.
Center of Plant Systems Biology, VIB, Technologiepark 71, Ghent 9052, Belgium.
Plant Cell Physiol. 2022 Jan 25;63(1):104-119. doi: 10.1093/pcp/pcab149.
The synthetic strigolactone (SL) analog, rac-GR24, has been instrumental in studying the role of SLs as well as karrikins because it activates the receptors DWARF14 (D14) and KARRIKIN INSENSITIVE 2 (KAI2) of their signaling pathways, respectively. Treatment with rac-GR24 modifies the root architecture at different levels, such as decreasing the lateral root density (LRD), while promoting root hair elongation or flavonol accumulation. Previously, we have shown that the flavonol biosynthesis is transcriptionally activated in the root by rac-GR24 treatment, but, thus far, the molecular players involved in that response have remained unknown. To get an in-depth insight into the changes that occur after the compound is perceived by the roots, we compared the root transcriptomes of the wild type and the more axillary growth2 (max2) mutant, affected in both SL and karrikin signaling pathways, with and without rac-GR24 treatment. Quantitative reverse transcription (qRT)-PCR, reporter line analysis and mutant phenotyping indicated that the flavonol response and the root hair elongation are controlled by the ELONGATED HYPOCOTYL 5 (HY5) and MYB12 transcription factors, but HY5, in contrast to MYB12, affects the LRD as well. Furthermore, we identified the transcription factors TARGET OF MONOPTEROS 5 (TMO5) and TMO5 LIKE1 as negative and the Mediator complex as positive regulators of the rac-GR24 effect on LRD. Altogether, hereby, we get closer toward understanding the molecular mechanisms that underlay the rac-GR24 responses in the root.
合成的独脚金内酯(SL)类似物 rac-GR24 对于研究 SL 以及卡瑞琳作为信号分子的作用非常重要,因为它分别激活了它们信号通路中的 DWARF14(D14)和 KARRIKIN INSENSITIVE 2(KAI2)受体。rac-GR24 的处理会在不同层面上改变根的结构,例如降低侧根密度(LRD),同时促进根毛伸长或类黄酮积累。以前,我们已经表明,rac-GR24 处理会在根中转录激活类黄酮的生物合成,但到目前为止,参与该反应的分子参与者仍然未知。为了更深入地了解该化合物被根感知后发生的变化,我们比较了 rac-GR24 处理前后野生型和更具侧枝生长 2(max2)突变体的根转录组,max2 突变体在 SL 和卡瑞琳信号通路中都受到影响。定量反转录(qRT)-PCR、报告线分析和突变体表型分析表明,类黄酮反应和根毛伸长受延长下胚轴 5(HY5)和 MYB12 转录因子的控制,但与 MYB12 相反,HY5 也影响 LRD。此外,我们确定了转录因子 TARGET OF MONOPTEROS 5(TMO5)和 TMO5 LIKE1 作为 rac-GR24 对 LRD 影响的负调控因子,而 Mediator 复合物作为正调控因子。总之,通过这项研究,我们更深入地了解了 rac-GR24 响应在根中的分子机制。