State Key Laboratory of Plant Physiology and Biochemistry, College of Life Sciences, Zhejiang University, Hangzhou, 310058, China,
Plant Mol Biol. 2015 Mar;87(4-5):429-40. doi: 10.1007/s11103-015-0289-y. Epub 2015 Feb 6.
Phosphorus (P) is an essential macronutrient for crop development and production. Phosphate starvation response 1 (PHR1) acts as the central regulator for Pi-signaling and Pi-homeostasis in plants by binding to the cis-element PHR1 binding sequence (P1BS; GNATATNC). However, how phosphate starvation-induced gene expression is regulated remains obscure. In this work, we investigated the DNA binding affinity of the PHR1 ortholog OsPHR2 to its downstream target genes in Oryza sativa (rice). We confirmed that a combination of P1BS and P1BS-like motifs are essential for stable binding by OsPHR2. Furthermore, we report that variations in P1BS motif bases affected the binding affinity of OsPHR2 and that the highest affinity motif was GaATATtC (designated the A-T-type P1BS). We also found that a combination of two A-T-type P1BS elements in tandem, namely HA-P1BS, was very efficient for binding of OsPHR2. Using the cis-regulator HA-P1BS, we modified the promoters of Transporter Traffic Facilitator 1 (PHF1), a key factor controlling endoplasmic reticulum-exit of phosphate transporters to the plasma membrane, for efficient uptake of phosphorous in an energetically neutral way. Transgenic plants with the modified promoters showed significantly enhanced tolerance to low phosphate stress in both solution and soil conditions, which provides a new strategy for crop improvement to enhance tolerance of nutrient deficiency.
磷(P)是作物发育和生产的必需大量营养素。磷酸盐饥饿响应 1(PHR1)通过与顺式元件 PHR1 结合序列(P1BS;GNATATNC)结合,充当植物中 Pi 信号和 Pi 稳态的中央调节剂。然而,磷酸盐饥饿诱导的基因表达如何受到调节仍然不清楚。在这项工作中,我们研究了 PHR1 同源物 OsPHR2 在 Oryza sativa(水稻)中对其下游靶基因的 DNA 结合亲和力。我们证实 P1BS 和 P1BS 样基序的组合对于 OsPHR2 的稳定结合是必需的。此外,我们报告说 P1BS 基序碱基的变化影响了 OsPHR2 的结合亲和力,并且最高亲和力基序是 GaATATtC(指定为 A-T 型 P1BS)。我们还发现,两个 A-T 型 P1BS 元件的串联组合,即 HA-P1BS,非常有效地结合 OsPHR2。使用顺式调节剂 HA-P1BS,我们修饰了 Transporter Traffic Facilitator 1(PHF1)的启动子,PHF1 是控制磷酸盐转运体从内质网到质膜的出胞的关键因素,以高能中性的方式有效吸收磷。具有修饰启动子的转基因植物在溶液和土壤条件下对低磷胁迫的耐受性明显增强,这为提高作物对营养缺乏的耐受性提供了一种新策略。