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Phototropism: at the crossroads of light-signaling pathways

机译:趋光性:在光信号通路的十字路口

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Phototropism enables plants to orient growth towards the direction of light and thereby maximizes photosynthesis in low-light environments. In angiosperms, blue-light photoreceptors called phototropins are primarily involved in sensing the direction of light. Phytochromes and cryptochromes (sensing red/far-red and blue light, respectively) also modulate asymmetric hypocotyl growth, leading to phototropism. Interactions between different light-signaling pathways regulating phototropism occur in cryptogams and angiosperms. In this review, we focus on the molecular mechanisms underlying the co-action between photosensory systems in the regulation of hypocotyl phototropism in Arabidopsis thaliana. Recent studies have shown that phytochromes and cryptochromes enhance phototropism by controlling the expression of important regulators of phototro-pin signaling. In addition, phytochromes may also regulate growth towards light via direct interaction with the phototropins.
机译:趋光性使植物能够使生长朝向光的方向,从而使弱光环境下的光合作用最大化。在被子植物中,称为光蛋白的蓝光感光体主要参与感测光的方向。植物色素和隐色素(分别感测红/远红和蓝光)也会调节不对称下胚轴的生长,从而导致光致变色。调节配光性的不同光信号通路之间的相互作用发生在隐孢子虫和被子植物中。在这篇综述中,我们专注于拟南芥下胚轴光嗜性调控中光感测系统之间协同作用的分子机制。最近的研究表明,植物色素和隐色素通过控制phototro-pin信号传导的重要调节子的表达增强了向光性。另外,植物色素还可以通过与光蛋白的直接相互作用来调节向光的生长。

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