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Diatom Phytochromes Reveal the Existence of Far-Red-Light-Based Sensing in the Ocean

机译:硅藻植物色素揭示了海洋中基于远红光的感知的存在

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The absorption of visible light in aquatic environments has led to the common assumption that aquatic organisms sense and adapt to penetrative blue/green light wavelengths but show little or no response to the more attenuated red/far-red wavelengths. Here, we show that two marine diatom species, Phaeodactylum tricornutum and Thalassiosira pseudonana, possess a bona fide red/far-red light sensing phytochrome (DPH) that uses biliverdin as a chromophore and displays accentuated red-shifted absorbance peaks compared with other characterized plant and algal phytochromes. Exposure to both red and far-red light causes changes in gene expression in P. tricornutum, and the responses to far-red light disappear in DPH knockout cells, demonstrating that P. tricornutum DPH mediates far-red light signaling. The identification of DPH genes in diverse diatom species widely distributed along the water column further emphasizes the ecological significance of far-red light sensing, raising questions about the sources of far-red light. Our analyses indicate that, although far-red wavelengths from sunlight are only detectable at the ocean surface, chlorophyll fluorescence and Raman scattering can generate red/far-red photons in deeper layers. This study opens up novel perspectives on phytochrome-mediated far-red light signaling in the ocean and on the light sensing and adaptive capabilities of marine phototrophs.
机译:可见光在水生环境中的吸收已导致一个普遍的假设,即水生生物感知并适应穿透性的蓝/绿光波长,但对减弱的红/远红波长几乎没有反应或没有反应。在这里,我们显示了两个海洋硅藻物种:三角藻和拟南芥,拥有真正的红色/远红色光敏植物色素(DPH),该色素使用biliverdin作为发色团,并且与其他特征化植物相比显示出红色移移的吸收峰和藻类植物色素。暴露于红光和远红光下都会导致三角果假单胞菌的基因表达发生变化,并且在DPH敲除细胞中对远红光的反应消失,这表明三角果假单胞菌DPH介导了远红光信号。在沿水柱广泛分布的多种硅藻物种中,DPH基因的鉴定进一步强调了远红光感测的生态意义,从而引发了有关远红光来源的问题。我们的分析表明,尽管仅在海洋表面可以检测到来自太阳光的远红光波长,但叶绿素荧光和拉曼散射可以在更深的层中产生红/远红光子。这项研究为海洋中植物色素介导的远红光信号以及海洋光养生物的光感测和适应能力开辟了新的视角。

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