School of Life Sciences, Southwest University, Chongqing, China.
Key Laboratory of Eco-Environments of Three Gorges Reservoir Region, Ministry of Education, School of Life Sciences, Southwest University, Chongqing, China.
Plant Cell Rep. 2023 Dec 22;43(1):8. doi: 10.1007/s00299-023-03120-8.
PDE1 acts as a mediator of primary root growth in response to Pi deficiency. Phosphorus is commonly considered as a limiting nutrient for plant growth, which is mainly due to the immobility and uneven distribution of phosphate (Pi) in soils so that available Pi is not adequate in the rhizosphere. Although various mediators have been identified in Pi sensing and response, more details need to be uncovered in plant Pi-deficiency tolerance. Here, we isolated a mutant, termed pde1 (phosphate-deficiency sensitive 1), showing the hypersensitive Pi-deficiency-induced growth inhibition of primary roots. PDE1 encodes a hydroxyphenylpyruvate reductase with rare activity in vitro and repressed by Pi deficiency. Histochemical analysis displayed that Pi-deprived pde1 accumulated more Fe and reactive oxygen species (ROS) in primary roots than the wild type (WT). Addition of ferrozine, a Fe chelator, or a ROS scavenger (e.g., thiourea and potassium iodide), alleviated the sensitivity of Pi-deficiency in pde1 primary roots. By contrast, pde1 showed reduced cotyledon expansion rate with treatment of HO compared to WT. Taken together, these results suggested that PDE1 is responsible for regulating primary root growth in response to Pi deficiency, which is associated with ROS.
PDE1 作为一种介导物,在响应磷缺乏时调节主根生长。磷通常被认为是植物生长的限制营养元素,这主要是由于磷酸盐(Pi)在土壤中的不流动性和不均匀分布,使得根际中的有效 Pi 不足。虽然已经鉴定出了多种在 Pi 感应和响应中的介导物,但在植物对 Pi 缺乏的耐受中,还需要揭示更多的细节。在这里,我们分离到一个突变体,称为 pde1(对磷缺乏敏感 1),该突变体表现出对主根生长的 Pi 缺乏诱导的过度敏感抑制。PDE1 编码一种羟苯基丙酮酸还原酶,其在体外的活性很少,并且受到 Pi 缺乏的抑制。组织化学分析显示,与野生型(WT)相比,Pi 剥夺的 pde1 在主根中积累了更多的 Fe 和活性氧物质(ROS)。添加铁螯合剂 ferrozine 或 ROS 清除剂(如硫脲和碘化钾)可缓解 pde1 主根对 Pi 缺乏的敏感性。相比之下,与 WT 相比,pde1 在 HO 处理下表现出减少的子叶扩展率。综上所述,这些结果表明,PDE1 负责调节主根生长对 Pi 缺乏的响应,这与 ROS 有关。