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April 29, 2026Communications Earth & Environment0 citationsOpen Access

Proterozoic coevolution of phytoplankton and the surface Earth redox landscape

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THTianzheng HuangBSBing Shen

Key Points

  • To explore the impact of the biological pump on the redox landscape and oxygenation of Earth's surface during the Proterozoic.
  • Developed a numerical model to simulate redox landscape changes
  • Analyzed biomarker data and isotopic and redox proxy records
  • Assessed the relationship between eukaryotic phytoplankton and oxygen levels
  • Model results indicate that phytoplankton reduced the ocean-atmosphere redox gradient
  • The evolution of the biological pump structure drove a shift toward more oxic conditions
  • Findings suggest that the biosphere primarily influenced ocean-atmosphere redox conditions during the Proterozoic

Abstract

The surface Earth oxygenation is the key process in the evolution of a planet habitable for complex life forms. As the landmark of biosphere evolution, the emergence of animal implies the atmospheric oxygen level reaching a threshold of 10% present atmospheric level. However, before this critical point, neither the evolution nor the key control of the redox landscape of the ocean-atmosphere system has been resolved. In this study, we hypothesize that the biological pump structure, placed the key control on the redox landscape of surface Earth. Our numerical model results indicate that with the Proterozoic evolution of eukaryotic phytoplanktons, the redox gradient between the ocean and atmosphere was reduced, and the ocean and atmosphere oxygenation evolved from decoupled to coupled. The Proterozoic evolution of biological pump structure significantly drove redox landscape of the surface Earth system toward more oxic, manifested as the reduction in the oceanic dissolved organic carbon and then H2S reservoir. In the Proterozoic, ocean-atmosphere redox conditions were likely influenced mainly by the biosphere, especially phytoplankton and the biological pump, according to analysis of biomarker data, isotopic and redox proxy records.

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Cite This Study

Huang et al. (2026) studied this question.

synapsesocial.com/papers/69f154a4879cb923c4944d16https://doi.org/10.1038/s43247-026-03531-x
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