光合作用
氧化剂
蓝藻
铜绿微囊藻
化学
水华
生物
浮游植物
生物化学
细菌
有机化学
营养物
遗传学
作者
Mihebai Yilimulati,Jiyuan Jin,Xin Wang,Xiaomeng Wang,Dmitriy Shevela,Bing Wu,Kai Wang,Lang Zhou,Yunlu Jia,Bingcai Pan,Govindjee Govindjee,Shujuan Zhang
标识
DOI:10.1021/acs.est.1c04683
摘要
Selective inhibition of photosynthesis is a fundamental strategy to solve the global challenge caused by harmful cyanobacterial blooms. However, there is a lack of specificity of the currently used cyanocides, because most of them act on cyanobacteria by generating nontargeted oxidative stress. Here, for the first time, we find that the simplest β-diketone, acetylacetone, is a promising specific cyanocide, which acts on Microcystis aeruginosa through targeted binding on bound iron species in the photosynthetic electron transport chain, rather than by oxidizing the components of the photosynthetic apparatus. The targeted binding approach outperforms the general oxidation mechanism in terms of specificity and eco-safety. Given the essential role of photosynthesis in both natural and artificial systems, this finding not only provides a unique solution for the selective control of cyanobacteria but also sheds new light on the ways to modulate photosynthesis.
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