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Arabidopsis ACC Oxidase 1 Coordinated by Multiple Signals Mediates Ethylene Biosynthesis and Is Involved in Root Development

机译:拟南芥ACC氧化酶1协调多个信号介导乙烯的生物合成并参与根系发育。

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摘要

Ethylene regulates numerous aspects of plant growth and development. Multiple external and internal factors coordinate ethylene production in plant tissues. Transcriptional and post-translational regulations of ACC synthases (ACSs), which are key enzymes mediating a rate-limiting step in ethylene biosynthesis have been well characterized. However, the regulation and physiological roles of ACC oxidases (ACOs) that catalyze the final step of ethylene biosynthesis are largely unknown in Arabidopsis. Here, we show that Arabidopsis ACO1 exhibits a tissue-specific expression pattern that is regulated by multiple signals, and plays roles in the lateral root development in Arabidopsis. Histochemical analysis of the ACO1 promoter indicated that ACO1 expression was largely modulated by light and plant hormones in a tissue-specific manner. We demonstrated that point mutations in two E-box motifs on the ACO1 promoter reduce the light-regulated expression patterns of ACO1. The aco1-1 mutant showed reduced ethylene production in root tips compared to wild-type. In addition, aco1-1 displayed altered lateral root formation. Our results suggest that Arabidopsis ACO1 integrates various signals into the ethylene biosynthesis that is required for ACO1’s intrinsic roles in root physiology.
机译:乙烯调节植物生长和发育的许多方面。多种外部和内部因素协调植物组织中乙烯的生产。 ACC合酶(ACS)的转录和翻译后调控是调解乙烯生物合成中限速步骤的关键酶,已被很好地表征。然而,在拟南芥中很大程度上未知催化ACC氧化酶(ACO)催化乙烯生物合成的最终步骤的生理功能。在这里,我们显示拟南芥ACO1展示了一种组织特异性表达模式,该模式受多种信号调节,并在拟南芥的侧根发育中发挥作用。 ACO1启动子的组织化学分析表明,ACO1表达在很大程度上受光和植物激素以组织特异性方式调节。我们证明了在ACO1启动子上的两个E-box图案中的点突变减少了ACO1的光调节表达模式。与野生型相比,aco1-1突变体在根尖显示出减少的乙烯生成。此外,aco1-1显示出改变的侧根形成。我们的结果表明,拟南芥ACO1将各种信号整合到乙烯生物合成中,这是ACO1在根系生理中固有作用所必需的。

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