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Updated: May 20, 2026

Establishment of Microbial Eukaryotic Enrichment Cultures from a Chemically Stratified Antarctic Lake and Assessment of Carbon Fixation Potential
Published on: April 20, 2012
The oligotrophic ocean is autotrophic
Peter J le B Williams1, Paul D Quay, Toby K Westberry
1School of Ocean Sciences, Bangor University, Menai Bridge, Anglesey, UK. pjlw@bangor.ac.uk
Oceanographic studies show conflicting results on whether subtropical gyres are net heterotrophic or autotrophic. This research suggests in vitro methods overestimate respiration or underestimate photosynthesis, indicating net autotrophy.
Area of Science:
- Marine biology
- Oceanography
- Biogeochemistry
Background:
- Oligotrophic subtropical gyres are critical ocean regions with debated carbon cycling dynamics.
- In vitro and in situ measurements yield contradictory conclusions regarding net community production (NCP).
- In vitro observations suggest these regions are net heterotrophic, while in situ data indicate net autotrophy.
Purpose of the Study:
- To resolve the discrepancy between in vitro and in situ measurements of NCP in subtropical gyres.
- To identify potential biases in existing methodologies for assessing ocean carbon metabolism.
Main Methods:
- Evaluation of oxygen-based production estimates for potential biases.
- Analysis of (13)C enrichment in surface dissolved inorganic carbon (DIC).
- Assessment of lateral, vertical, and atmospheric organic carbon inputs.
- Comparison of observed DIC isotopic signatures with predictions from heterotrophic and autotrophic models.
Main Results:
- In situ oxygen-based estimates are unlikely to produce false-positive net autotrophy.
- Observed (13)C enrichment of DIC strongly supports net autotrophy (positive NCP).
- Organic carbon inputs (lateral, vertical, atmospheric) are insufficient to support net heterotrophy.
- Atmospheric organic matter input is too small and would cause (13)C depletion, contrary to observations.
Conclusions:
- In vitro measurements implying net heterotrophy are likely biased.
- The bias stems from an underestimation of photosynthesis and/or an overestimation of respiration in laboratory incubations.
- Subtropical gyres are likely net autotrophic, consistent with in situ observations and DIC isotopic data.
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