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The ARF7 and ARF19 Transcription Factors Positively Regulate PHOSPHATE STARVATION RESPONSE1 in Arabidopsis Roots

机译:ARF7和ARF19转录因子正调控拟南芥根中的磷酸饥饿反应1。

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摘要

PHOSPHATE STARVATION RESPONSE1 (PHR1) is a key regulatory component of the response to phosphate (Pi) starvation. However, the regulation of PHR1 in this response remains poorly understood. Here, we report that PHR1 is a target of the transcription factors AUXIN RESPONSE FACTOR7 (ARF7) and ARF19 and is positively regulated by auxin signaling in Arabidopsis (Arabidopsis thaliana) roots. PHR1 expression was induced by exogenous auxin and suppressed by auxin transport inhibitors in Arabidopsis roots. In the PHR1 promoter, three auxin-response elements, which are bound directly by ARF7 and ARF19, were shown to be essential for PHR1 expression. The arf7, arf19, and arf7 arf19 mutants showed down-regulated expression of PHR1 and downstream Pi starvation-induced genes in roots; they also exhibited defective Pi uptake in roots and overaccumulation of anthocyanin in shoots. The induction of lateral root formation in response to low Pi and to exogenous auxin was decreased in the phr1 mutant, whereas the expression of LATERAL ORGAN BOUNDARIES-DOMAIN16 (LBD16) and LBD29 was not changed significantly. PHR1 acted independently of LBD16 and LBD29 in the regulation of lateral root formation in response to low Pi. Under low-Pi conditions, lateral root impairment in the arf7 arf19 mutant was partially rescued by constitutive expression of PHR1, demonstrating that reduced PHR1 expression contributed to the arf7 arf19 phenotype. In addition to PHR1, other genes encoding MYB-CC members also were targets of ARF7 and ARF19. Our work thus reveals a mechanism coordinating auxin signaling and the PHR1 regulon in Arabidopsis responses to Pi deficiency.
机译:磷酸盐饥饿反应1(PHR1)是对磷酸盐(Pi)饥饿反应的关键调控成分。但是,在这种反应中对PHR1的调控仍知之甚少。在这里,我们报告说,PHR1是转录因子AUXIN RESPONSE FACTOR7(ARF7)和ARF19的目标,并受到拟南芥(Arabidopsis thaliana)根中生长素信号的正调控。在拟南芥根中,外源生长素诱导PHR1表达,并被生长素转运抑制剂抑制。在PHR1启动子中,三个生长素反应元件直接与ARF7和ARF19结合,被证明对PHR1表达至关重要。 arf7,arf19和arf7 arf19突变体在根中显示出下调PHR1和下游Pi饥饿诱导基因的表达。它们在根部还表现出不良的Pi吸收和芽中花青素的过度积累。在phr1突变体中,低磷和外源生长素对侧根形成的诱导作用降低,而侧向器官BOUNDARIES-DOMAIN16(LBD16)和LBD29的表达没有明显改变。 PHR1在响应低Pi的侧根形成过程中独立于LBD16和LBD29起作用。在低Pi条件下,arf7 arf19突变体的侧根损伤可通过PHR1的组成型表达部分挽救,这表明 PHR1 减少表达有助于 arf7 arf19 表型。除 PHR1 外,其他编码MYB-CC成员的基因也是ARF7和ARF19的靶标。因此,我们的工作揭示了在拟南芥对Pi缺乏反应中协调生长素信号传导和PHR1调节子的机制。

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