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Photoreceptors in Arabidopsis thaliana: light perception, signal transduction and entrainment of the endogenous clock

机译:拟南芥中的感光细胞:光感知,信号转导和内源性时钟的夹带。

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摘要

To keep track of fluctuations in spectral composition and intensity of incoming sunlight, plants engage a plethora of photosensory pigments. Absorption of light by these photoreceptors sets in motion signaling cascades that ultimately influence the plant's physiology. Many light-controlled processes are based on modulation of gene activity in response to changes in irradiation. The molecular basis of this regulation and the downstream components transducing signals from the photoreceptors are not fully understood yet, but recent evidence suggests that some of those routes are rather short. The phytochrome photoreceptors have been found to influence light-responsive promoters by direct contact with transcription factors. Additionally, the cryptochrome blue-light receptors directly interact with a key repressor of photomorphogenesis, suggesting that light activation of photoreceptors could initiate photomorphogenesis through posttranslational regulation. This review focuses on recent insights into photosensory transduction mechanisms as well as on our current understanding of light entrainment of the endogenous clock.
机译:为了跟踪入射太阳光的光谱成分和强度的波动,植物会使用大量的光感色素。这些感光器吸收的光在运动信号级联反应中起作用,最终影响植物的生理。许多光控过程是基于对辐照变化的基因活性调节。目前尚不完全了解这种调节的分子基础以及从感光体转导信号的下游成分,但是最近的证据表明,其中一些途径相当短。已经发现植物色素感光体通过直接与转录因子接触而影响光响应性启动子。此外,隐色蓝光受体直接与光形态发生的关键阻遏物相互作用,这表明光感受器的光活化可以通过翻译后调节来启动光形态发生。这篇综述着重于对光传感转导机制的最新见解,以及我们目前对内源时钟的光夹带的理解。

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