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Survival of cyanobacteria and mitigation of Fe(II) toxicity effects in a silica-rich Archean ocean

作者:Carolin Dreher, Olaf A. Cirpka, Manuel Schad, Kurt O. Konhauser, Andreas Kappler · 发表于:Nature Communications · 年份:2026 · DOI:10.1038/s41467-026-69826-x · 被引用次数:1 · 研究领域:Marine and coastal ecosystems、Microbial Fuel Cells and Bioremediation、Geochemistry and Elemental Analysis

Abstract Banded iron formations (BIF) were deposited abundantly between 2.7-2.4 Ga from iron- and silica-rich oceans, with cyanobacterial oxygen (O 2 ) as a possible oxidant for Fe(II) (aq) oxidation and Fe(III) oxyhydroxide precipitation. However, toxic reactive oxygen species (ROS) from Fe(II)/O 2 interactions might have inhibited cyanobacterial growth, contributing to the delay between cyanobacterial evolution (>3.0 Ga) and the Great Oxidation Event (2.5 Ga). Here, we explored the impact of Fe(II) (aq) and SiO 2(aq) on Synechococcus sp . PCC 7002. High Fe(II) (aq) ( > 500 µM) increased ROS formation, but elevated SiO 2(aq) (2200 µM) suppressed ROS formation, promoting growth and O 2 production. Diel light cycles further reduced ROS formation compared to continuous illumination. Modelling O 2 distribution based on experimental rates revealed oxygenated surface waters at relevant upwelling rates. Together, our results indicate that high SiO 2(aq) and day-night-light cycles in Archean oceans mitigated ROS stress, enabling cyanobacterial proliferation and enhancing their role in Earth’s oxygenation and BIF deposition.