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System Responses to Equal Doses of Photosynthetically Usable Radiation of Blue Green and Red Light in the Marine Diatom Phaeodactylum tricornutum

机译:系统对海洋硅藻Phaeodactylum tricornutum中蓝光绿光和红光的等剂量光合作用辐射的系统响应

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摘要

Due to the selective attenuation of solar light and the absorption properties of seawater and seawater constituents, free-floating photosynthetic organisms have to cope with rapid and unpredictable changes in both intensity and spectral quality. We have studied the transcriptional, metabolic and photo-physiological responses to light of different spectral quality in the marine diatom Phaeodactylum tricornutum through time-series studies of cultures exposed to equal doses of photosynthetically usable radiation of blue, green and red light. The experiments showed that short-term differences in gene expression and profiles are mainly light quality-dependent. Transcription of photosynthesis-associated nuclear genes was activated mainly through a light quality-independent mechanism likely to rely on chloroplast-to-nucleus signaling. In contrast, genes encoding proteins important for photoprotection and PSII repair were highly dependent on a blue light receptor-mediated signal. Changes in energy transfer efficiency by light-harvesting pigments were spectrally dependent; furthermore, a declining trend in photosynthetic efficiency was observed in red light. The combined results suggest that diatoms possess a light quality-dependent ability to activate photoprotection and efficient repair of photodamaged PSII. In spite of approximately equal numbers of PSII-absorbed quanta in blue, green and red light, the spectral quality of light is important for diatom responses to ambient light conditions.
机译:由于太阳光的选择性衰减以及海水和海水成分的吸收特性,自由漂浮的光合生物必须应对强度和光谱质量的快速和不可预测的变化。通过对暴露于等剂量的蓝,绿和红光的光合作用的培养物进行时间序列研究,我们已经研究了海洋硅藻三角藻中不同光谱质量的光的转录,代谢和光生理反应。实验表明,基因表达和谱的短期差异主要取决于光质量。与光合作用相关的核基因的转录主要通过可能依赖于叶绿体-核信号的光质量独立机制来激活。相反,编码对光保护和PSII修复很重要的蛋白质的基因高度依赖于蓝光受体介导的信号。聚光颜料在能量转移效率上的变化与光谱有关。此外,在红光下观察到光合作用效率下降的趋势。综合结果表明,硅藻具有光质量依赖性的能力来激活光保护和有效修复光损伤的PSII。尽管在蓝光,绿光和红光中吸收的PSII的量子数量大致相等,但光的光谱质量对于硅藻对环境光条件的响应至关重要。

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