Shanghai Centre for Plant Stress Biology, Chinese Academy of Sciences Centre for Excellence in Molecular Plant Sciences, Chinese Academy of Sciences, Shanghai 201602, People's Republic of China.
Basic Forestry and Proteomics Research Centre, Haixia Institute of Science and Technology, Fujian Agriculture and Forestry University, 350002 Fujian, People's Republic of China.
Proc Natl Acad Sci U S A. 2020 Dec 22;117(51):32223-32225. doi: 10.1073/pnas.2015400117. Epub 2020 Dec 7.
The plant growth hormone auxin controls cell identity, cell division, and expansion. In the primary root of there is a robust auxin gradient with a peak concentration at the tip of the meristem and a significant decrease throughout the elongation zone. The molecular mechanisms of how such a steep auxin gradient is established and maintained, and how this auxin gradient within the root dynamically adjusts in response to environmental stimuli are still largely unknown. Here, using a large-scale mutant screening, we described the identification of PIN2 (PIN-FORMED 2), an auxin efflux facilitator, as a key downstream regulator in glucose-TOR (target of rapamycin) energy signaling. We demonstrate that glucose-activated TOR phosphorylates and stabilizes PIN2 and therefore influences the gradient distribution of PIN2 in the primary root. Interestingly, dysregulation of TOR or PIN2 disrupts the glucose-promoted low auxin region located in the elongation zone that is essential for cell elongation. Taken together, our results shed light on how carbon and metabolic status can be tightly integrated with the hormone-driven processes to orchestrate complex plant growth programs.
植物生长激素生长素控制细胞特性、细胞分裂和扩展。在 的初生根中,存在一个强大的生长素梯度,在顶端分生组织处达到峰值,在伸长区显著下降。生长素梯度如何建立和维持,以及这种根内的生长素梯度如何动态响应环境刺激进行调整,这些分子机制在很大程度上仍然未知。在这里,我们通过大规模的 突变体筛选,描述了生长素外排促进因子 PIN2(PIN-FORMED 2)作为葡萄糖-TOR(雷帕霉素靶蛋白)能量信号的关键下游调节剂的鉴定。我们证明葡萄糖激活的 TOR 可使 PIN2 磷酸化和稳定化,从而影响 初生根中 PIN2 的梯度分布。有趣的是,TOR 或 PIN2 的失调会破坏位于伸长区的葡萄糖促进的低生长素区域,该区域对于细胞伸长是必不可少的。总之,我们的研究结果阐明了碳和代谢状态如何与激素驱动的过程紧密结合,以协调复杂的植物生长程序。