MacGregor-Chatwin Craig, Nürnberg Dennis J, Jackson Philip J, Vasilev Cvetelin, Hitchcock Andrew, Ho Ming-Yang, Shen Gaozhong, Gisriel Christopher J, Wood William H J, Mahbub Moontaha, Selinger Vera M, Johnson Matthew P, Dickman Mark J, Rutherford Alfred William, Bryant Donald A, Hunter C Neil
School of Biosciences, University of Sheffield, Sheffield, UK.
Department of Life Sciences, Imperial College London, London, UK.
Sci Adv. 2022 Feb 11;8(6):eabj4437. doi: 10.1126/sciadv.abj4437. Epub 2022 Feb 9.
Cyanobacteria are ubiquitous in nature and have developed numerous strategies that allow them to live in a diverse range of environments. Certain cyanobacteria synthesize chlorophylls d and f to acclimate to niches enriched in far-red light (FRL) and incorporate paralogous photosynthetic proteins into their photosynthetic apparatus in a process called FRL-induced photoacclimation (FaRLiP). We characterized the macromolecular changes involved in FRL-driven photosynthesis and used atomic force microscopy to examine the supramolecular organization of photosystem I associated with FaRLiP in three cyanobacterial species. Mass spectrometry showed the changes in the proteome of PCC 7203 that accompany FaRLiP. Fluorescence lifetime imaging microscopy and electron microscopy reveal an altered cellular distribution of photosystem complexes and illustrate the cell-to-cell variability of the FaRLiP response.
蓝藻在自然界中无处不在,并已发展出多种策略,使其能够生活在各种不同的环境中。某些蓝藻合成叶绿素d和f以适应富含远红光(FRL)的生态位,并在一个称为FRL诱导的光适应(FaRLiP)的过程中将旁系光合蛋白纳入其光合装置。我们表征了FRL驱动的光合作用中涉及的大分子变化,并使用原子力显微镜检查了三种蓝藻物种中与FaRLiP相关的光系统I的超分子组织。质谱分析显示了伴随FaRLiP的PCC 7203蛋白质组的变化。荧光寿命成像显微镜和电子显微镜揭示了光系统复合物细胞分布的改变,并说明了FaRLiP反应的细胞间变异性。