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A Novel Photosynthetic Strategy for Adaptation to Low-Iron Aquatic Environments

机译:适应低铁水生环境的新型光合作用策略

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Iron (Fe) availability is a major limiting factor for primary production in aquatic environments. Cyanobacteria respond to Fe deficiency by derepressing the isiAB operon, which encodes the antenna protein IsiA and flavodoxin. At nanomolar Fe concentrations, a PSI-IsiA supercomplex forms, comprising a PSI trimer encircled by two complete IsiA rings. This PSI-IsiA supercomplex is the largest photosynthetic membrane protein complex yet isolated. This study presents a detailed characterization of this complex using transmission electron microscopy and ultrafast fluorescence spectroscopy. Excitation trapping and electron transfer are highly efficient, allowing cyanobacteria to avoDE oxDEative stress. This mechanism may be a major factor used by cyanobacteria to successfully adapt to modern low-Fe environments.
机译:铁(Fe)的可用性是水生环境初级生产的主要限制因素。蓝藻细菌通过抑制表达天线蛋白IsiA和黄酮毒素的isiAB操纵子来抑制铁缺乏。在纳摩尔铁浓度下,形成PSI-IsiA超复合物,包括被两个完整IsiA环包围的PSI三聚体。这种PSI-IsiA超复合物是迄今为止最大的光合膜蛋白复合物。这项研究使用透射电子显微镜和超快速荧光光谱法对该复合物进行了详细表征。激发俘获和电子转移非常高效,使蓝细菌避免了氧化应激。该机制可能是蓝细菌成功适应现代低铁环境的主要因素。

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