首页> 美国卫生研究院文献>Plant Physiology >Focus Issue on Light Signaling: CYP72B1 Inactivates Brassinosteroid Hormones: An Intersection between Photomorphogenesis and Plant Steroid Signal Transduction
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Focus Issue on Light Signaling: CYP72B1 Inactivates Brassinosteroid Hormones: An Intersection between Photomorphogenesis and Plant Steroid Signal Transduction

机译:关于光信号的焦点问题:CYP72B1灭活油菜素类固醇激素:光形态发生与植物类固醇信号传导之间的交叉点

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摘要

Active brassinosteroids, such as brassinolide (BL) and castasterone, are growth promoting plant hormones. An Arabidopsis cytochrome P450 monooxygenase encoded by CYP72B1 has been implicated in brassinosteroid catabolism as well as photomorphogenesis. We expressed CYP72B1 in yeast, coupled with brassinosteroid feeding, and established the biochemical function to be the hydroxylation of BL and castasterone, to give 26-hydroxybrassinolide and 26-hydroxycastasterone, respectively. Brassinosteroid feeding experiments with wild-type Arabidopsis, a CYP72B1 null mutant, and a CYP72B1 overexpression line demonstrated that carbon 26 hydroxylation of active brassinosteroids is an endogenous function of CYP72B1. Seedling growth assays demonstrated that 26-hydroxybrassinolide is an inactive brassinosteroid. Genetic and physiological analysis of the hypocotyl response to exogenous BL and varying intensities of white and monochromatic light suggested that CYP72B1 modulates photomorphogenesis primarily through far-red light and to a lesser extent through blue- and red-light pathways. CYP72B1 transcript accumulation in dark-grown seedlings was organ specific and down-regulated after 1 h of illumination in dim white, red, and blue light, but not far-red light. CYP72B1 translational fusions with the β-glucuronidase reporter gene demonstrated that protein levels increased in the hypocotyl elongation zone when shifted from the dark to far-red light, but not blue or red light. We propose a model in which Arabidopsis seedling development switches from dark-grown development (skotomorphogenesis) to light-grown development (photomorphogenesis) in part by rapid modulation of brassinosteroid sensitivity and levels. CYP72B1 provides an intersection between the light and brassinosteroid pathways mainly by far-red-light-dependent modulation of brassinosteroid levels.
机译:活跃的油菜素类固醇,例如油菜素内酯(BL)和Castasterone,是促进生长的植物激素。 CYP72B1编码的拟南芥细胞色素P450单加氧酶已与油菜素类固醇分解代谢和光形态发生有关。我们在酵母中表达CYP72B1,再加上油菜素类固醇喂养,并确定其生化功能是BL和Castasterone的羟基化,分别得到26-羟基油菜素内酯和26-羟基卡斯特甾酮。用野生型拟南芥,CYP72B1无效突变体和CYP72B1过表达系进行油菜素类固醇喂养实验表明,活性油菜素类固醇的碳26羟基化是CYP72B1的内源功能。幼苗生长试验表明26-羟基油菜素内酯是一种惰性的油菜素类固醇。遗传和生理学分析下胚轴对外源BL和不同强度的白光和单色光的反应表明CYP72B1主要通过远红光来调节光形态发生,在较小程度上通过蓝光和红光通路进行调节。 CYP72B1转录本在深色生长的幼苗中的积累是器官特异性的,在昏暗的白色,红色和蓝色光(而非远红外光)照射1 h后,其下调。 CYP72B1与β-葡糖醛酸糖苷酶报道基因的翻译融合表明,当蛋白质的浓度从暗光转换为远红光时,在下胚轴延伸区中蛋白质水平增加,但从蓝光或红光中转移却没有。我们提出了一个模型,其中拟南芥的幼苗发育部分由快速调节油菜素类固醇的敏感性和水平,从暗黑发育(skotomorphogenesis)切换到浅黑发育(photomorphogenesis)。 CYP72B1主要通过远红光依赖的油菜素类固醇水平调节,在光和油菜素类固醇途径之间提供交叉点。

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