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The Arabidopsis SAL1-PAP Pathway: A Case Study for Integrating Chloroplast Retrograde Light and Hormonal Signaling in Modulating Plant Growth and Development?

机译:拟南芥SAL1-PAP途径:整合叶绿体逆行光和激素信号调控植物生长发育的案例研究?

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摘要

Plant growth and development are dependent on chloroplast development and function. Constitutive high level accumulation of a chloroplast stress signal, 3′-phosphoadenosine-5′-phosphate (PAP), confers drought tolerance to plants, but slow downs and alters plant growth and development. PAP, a by-product of sulfur metabolism, is maintained at very low levels by the SAL1 phosphatase during vegetative growth of Arabidopsis and accumulates in rosettes during drought and excess light. Eight independent forward genetic screens in Arabidopsis identified SAL1 as the regulator of multiple phenotypes related to stress responses, hormonal signaling and/or perception. In this perspective article, we collate all the sal1 phenotypes published in the past two decades, and distill the different pathways affected. Our meta-analysis of publicly available sal1 microarray data coupled to preliminary hormonal treatment and profiling results on sal1 indicate that homeostasis and responses to multiple hormones in sal1 are altered during rosette growth, suggesting a potential connection between SAL1-PAP stress retrograde pathway and hormonal signaling. We propose the SAL1-PAP pathway as a case study for integrating chloroplast retrograde signaling, light signaling and hormonal signaling in plant growth and morphogenesis.
机译:植物的生长和发育取决于叶绿体的发育和功能。叶绿体胁迫信号(3'-磷酸腺苷-5'-磷酸(PAP))的组成型高水平积累赋予植物抗旱性,但减慢并改变了植物的生长发育。 PAP是硫代谢的副产物,在拟南芥营养生长期间,SAL1磷酸酶将其维持在非常低的水平,而在干旱和光线过强的情况下,其会积聚在玫瑰丛中。拟南芥中的八个独立的前向遗传筛选确定SAL1是与应激反应,激素信号和/或知觉有关的多种表型的调节剂。在这篇有远见的文章中,我们整理了过去二十年来发表的所有sal1表型,并提炼了受影响的不同途径。我们对可公开获得的sal1基因芯片数据的荟萃分析,再加上初步的激素治疗和sal1的分析结果,表明玫瑰花结生长过程中稳态和对sal1中多种激素的反应均发生改变,表明SAL1-PAP应激逆行途径与激素信号传导之间存在潜在的联系。我们提出SAL1-PAP途径作为在植物生长和形态发生中整合叶绿体逆行信号,光信号和激素信号的案例研究。

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