Related Experiment Video
Updated: Nov 19, 2025

Laboratory Simulation of an IronII-rich Precambrian Marine Upwelling System to Explore the Growth of Photosynthetic Bacteria
Published on: July 24, 2016
Carbon isotope evidence for the global physiology of Proterozoic cyanobacteria
Sarah J Hurley1,2, Boswell A Wing3, Claire E Jasper3
1Department of Geological Sciences, University of Colorado Boulder, Boulder, CO 80302, USA. sarah.hurley@colorado.edu jeffrey.c.cameron@colorado.edu.
Abstract:
Ancestral cyanobacteria are assumed to be prominent primary producers after the Great Oxidation Event [≈2.4 to 2.0 billion years (Ga) ago], but carbon isotope fractionation by extant marine cyanobacteria (α-cyanobacteria) is inconsistent with isotopic records of carbon fixation by primary producers in the mid-Proterozoic eon (1.8 to 1.0 Ga ago). To resolve this disagreement, we quantified carbon isotope fractionation by a wild-type planktic β-cyanobacterium (Synechococcus sp. PCC 7002), an engineered Proterozoic analog lacking a CO2-concentrating mechanism, and cyanobacterial mats. At mid-Proterozoic pH and pCO2 values, carbon isotope fractionation by the wild-type β-cyanobacterium is fully consistent with the Proterozoic carbon isotope record, suggesting that cyanobacteria with CO2-concentrating mechanisms were apparently the major primary producers in the pelagic Proterozoic ocean, despite atmospheric CO2 levels up to 100 times modern. The selectively permeable microcompartments central to cyanobacterial CO2-concentrating mechanisms ("carboxysomes") likely emerged to shield rubisco from O2 during the Great Oxidation Event.
Related Concept Videos
Bacterial Phylum Cyanobacteria
Anoxygenic Photosynthesis
Comparing Mitochondrial, Chloroplast, and Prokaryotic Genomes
Green Algae
What is Evolutionary History?
Carbon-dioxide Fixation

