Ocean deoxygenation after the Sturtian Snowball
Abstract The abrupt ending of the Sturtian ‘Snowball’ glaciation was characterised by enhanced chemical weathering and carbon cycle perturbations, but there is less certainty over how oxygen levels responded to those changes. Here we reconcile conflicting views using a carbonate-based multiproxy dat...
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| Format: | Article |
| Language: | English |
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Nature Portfolio
2025-07-01
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| Series: | Nature Communications |
| Online Access: | https://doi.org/10.1038/s41467-025-60700-w |
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| author | Kun Zhang Susan H. Little Alexander J. Dickson Graham A. Shields |
| author_facet | Kun Zhang Susan H. Little Alexander J. Dickson Graham A. Shields |
| author_sort | Kun Zhang |
| collection | DOAJ |
| description | Abstract The abrupt ending of the Sturtian ‘Snowball’ glaciation was characterised by enhanced chemical weathering and carbon cycle perturbations, but there is less certainty over how oxygen levels responded to those changes. Here we reconcile conflicting views using a carbonate-based multiproxy dataset from the Taishir Formation in Mongolia. The geochemical data reveal an episode of ocean deoxygenation, followed by a shift toward less reducing, but still largely anoxic conditions in a post-glacial ocean characterised by nutrient and sulfate limitation. Ocean redox dynamics and biogeochemical cycling following the Sturtian deglaciation were likely dictated by unique tectonic and climatic regimes that facilitated the buildup of a recalcitrant dissolved organic carbon pool in the deep ocean. Post-glacial eutrophication may help to explain the delayed diversification of algal clades, but the persistence of ocean anoxia, excepting transient oxidation pulses, likely hindered the emergence of obligate aerobes, such as animals, until the Ediacaran Period. |
| format | Article |
| id | doaj-art-e73d53e6f47d42da9d2ff81c19de973d |
| institution | Kabale University |
| issn | 2041-1723 |
| language | English |
| publishDate | 2025-07-01 |
| publisher | Nature Portfolio |
| record_format | Article |
| series | Nature Communications |
| spelling | doaj-art-e73d53e6f47d42da9d2ff81c19de973d2025-08-20T03:37:37ZengNature PortfolioNature Communications2041-17232025-07-0116111010.1038/s41467-025-60700-wOcean deoxygenation after the Sturtian SnowballKun Zhang0Susan H. Little1Alexander J. Dickson2Graham A. Shields3Department of Earth Sciences, University College LondonDepartment of Earth Sciences, University College LondonCentre of Climate, Ocean and Atmosphere, Department of Earth Sciences, Royal Holloway University of London, EghamDepartment of Earth Sciences, University College LondonAbstract The abrupt ending of the Sturtian ‘Snowball’ glaciation was characterised by enhanced chemical weathering and carbon cycle perturbations, but there is less certainty over how oxygen levels responded to those changes. Here we reconcile conflicting views using a carbonate-based multiproxy dataset from the Taishir Formation in Mongolia. The geochemical data reveal an episode of ocean deoxygenation, followed by a shift toward less reducing, but still largely anoxic conditions in a post-glacial ocean characterised by nutrient and sulfate limitation. Ocean redox dynamics and biogeochemical cycling following the Sturtian deglaciation were likely dictated by unique tectonic and climatic regimes that facilitated the buildup of a recalcitrant dissolved organic carbon pool in the deep ocean. Post-glacial eutrophication may help to explain the delayed diversification of algal clades, but the persistence of ocean anoxia, excepting transient oxidation pulses, likely hindered the emergence of obligate aerobes, such as animals, until the Ediacaran Period.https://doi.org/10.1038/s41467-025-60700-w |
| spellingShingle | Kun Zhang Susan H. Little Alexander J. Dickson Graham A. Shields Ocean deoxygenation after the Sturtian Snowball Nature Communications |
| title | Ocean deoxygenation after the Sturtian Snowball |
| title_full | Ocean deoxygenation after the Sturtian Snowball |
| title_fullStr | Ocean deoxygenation after the Sturtian Snowball |
| title_full_unstemmed | Ocean deoxygenation after the Sturtian Snowball |
| title_short | Ocean deoxygenation after the Sturtian Snowball |
| title_sort | ocean deoxygenation after the sturtian snowball |
| url | https://doi.org/10.1038/s41467-025-60700-w |
| work_keys_str_mv | AT kunzhang oceandeoxygenationafterthesturtiansnowball AT susanhlittle oceandeoxygenationafterthesturtiansnowball AT alexanderjdickson oceandeoxygenationafterthesturtiansnowball AT grahamashields oceandeoxygenationafterthesturtiansnowball |