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Ethylene's Role in Phosphate Starvation Signaling: More than Just a Root Growth Regulator

机译:乙烯在磷酸饥饿信号中的作用:不仅仅是根生长调节剂

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Phosphate (Pi) is a common limiter of plant growth due to its low availability in most soils. Plants have evolved elaborate mechanisms for sensing Pi deficiency and for initiating adaptive responses to low Pi conditions. Pi signaling pathways are modulated by both local and long-distance, or systemic, sensing mechanisms. Local sensing of low Pi initiates major root developmental changes aimed at enhancing Pi acquisition, whereas systemic sensing governs pathways that modulate expression of numerous genes encoding factors involved in Pi transport and distribution. The gaseous phytohormone ethylene has been shown to play an integral role in regulating local, root developmental responses to Pi deficiency. Comparatively, a role for ethylene in systemic Pi signaling has been more circumstantial. However, recent studies have revealed that ethylene acts to modulate a number of systemically controlled Pi starvation responses. Herein we highlight the findings from these studies and offer a model for how ethylene biosynthesis and responsiveness are integrated into both local and systemic Pi signaling pathways.
机译:磷酸盐(Pi)是植物生长的常见限制因素,因为它在大多数土壤中的利用率较低。植物已经进化出精细的机制来感知Pi缺乏和启动对低Pi条件的适应性反应。 Pi信号传导途径受本地和远距离或系统性传感机制的调节。低磷的局部感测启动了主要的根发育变化,旨在增强磷的获取,而全身感测则控制着调节众多基因编码表达的途径,这些基因编码与磷的运输和分布有关的因子。业已证明,气态植物激素乙烯在调节对Pi缺乏的局部,根系发育反应中起着不可或缺的作用。相比之下,乙烯在系统性Pi信号传导中的作用更为严格。但是,最近的研究表明,乙烯可调节许多系统控制的Pi饥饿反应。本文中,我们重点介绍了这些研究的发现,并提供了乙烯生物合成和响应能力如何整合到局部和全身Pi信号通路中的模型。

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