光敏色素
三角褐指藻
远红色
胆绿素
生物
海链藻
硅藻
光养
红灯
吸光度
光合作用
植物
四吡咯
荧光
生物物理学
生态学
光学
浮游植物
生物化学
物理
血红素
酶
营养物
血红素加氧酶
作者
Antonio Emidio Fortunato,Marianne Jaubert,Gen Enomoto,Jean‐Pierre Bouly,Raffaella Raniello,Michael Thaler,Shruti Malviya,Juliana Bernardes,Fabrice Rappaport,Bernard Gentili,Marie J. J. Huysman,Alessandra Carbone,Chris Bowler,Maurizio Ribera d’Alcalà,Masahiko Ikeuchi,Angela Falciatore
出处
期刊:The Plant Cell
[Oxford University Press]
日期:2016-03-01
卷期号:28 (3): 616-628
被引量:124
摘要
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.
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