光合作用
蓝藻
异源的
光系统II
光合能力
代谢工程
氧化还原
化学
生物物理学
生物
生物化学
细菌
遗传学
基因
有机化学
酶
作者
María Santos-Merino,Alejandro Torrado,Geoffry A. Davis,Annika Röttig,Thomas S. Bibby,David Kramer,Daniel C. Ducat
标识
DOI:10.1073/pnas.2021523118
摘要
Significance Cyanobacteria have been increasingly explored as a biotechnological platform, although their economic feasibility relies in part on the capacity to maximize their photosynthetic, solar-to-biomass energy conversion efficiency. Here we show that cyanobacterial photosynthetic capacity can be increased by diverting cellular resources toward heterologous, energy-storing metabolic pathways and by reducing electron flow to photoprotective, but energy-dissipating, oxygen reduction reactions. We further show that these heterologous sinks can partially contribute to photosystem I (PSI) oxidation, suggesting an engineering strategy to improve both energy storage capacity and robustness by selective diversion of excess photosynthetic capacity to productive processes.
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