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May 15, 2026Limnology and Oceanography0 citations

Exploring nitrification's impact on nitrate assimilation: Dual isotope insights from the Amundsen Sea, Antarctica

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XBXueli BaQQQianqian QiJZJun Zhao

Key Points

  • The central aim is to quantify nitrification's role in nitrate assimilation in the Amundsen Sea and identify environmental correlates.
  • Collected nitrate δ 15 N and δ 18 O data from the mixed layer of the continental shelf in the Amundsen Sea.
  • Conducted box modeling to estimate nitrification's contribution to mixed-layer nitrate assimilation, finding it supports 20 ± 14%.
  • Performed redundancy analysis to examine the relationship between nitrification and environmental factors, identifying particulate nitrogen as a strong predictor.
  • Nitrification actively supports 20 ± 14% of mixed-layer nitrate assimilation, with no difference between continental shelf and open ocean waters.
  • Nitrification shows a strong covariance with particulate nitrogen, suggesting its importance in driving nitrification patterns.
  • The spatial variation of the isotope effect of nitrate assimilation is linked to increased nitrification and iron availability on the continental shelf.

Abstract

Abstract Summer nitrification's role in nitrate assimilation remains poorly quantified in the high‐latitude Southern Ocean. This study presents the first nitrate δ 15 N and δ 18 O data from the rapidly melting Amundsen Sea, showing that nitrification is active throughout the continental shelf mixed layer, while nitrate assimilation dominates in adjacent open ocean waters. Box modeling estimates that nitrification supports 20 ± 14% of mixed‐layer nitrate assimilation, with no continental shelf and open ocean difference. Redundancy analysis indicates that nitrification covaries with multiple factors, with particulate nitrogen being the strongest environmental predictor, suggesting a potential role for ammonium availability in shaping nitrification patterns. The isotope effect of nitrate assimilation varies spatially, with lower values on the continental shelf, potentially related to increased nitrification and iron availability. These findings fill a critical gap by quantifying the role of mixed‐layer nitrification in nitrate assimilation and identifying key environmental correlates of nitrification variability in the high‐latitude Southern Ocean.

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Cite This Study

Ba et al. (2026) studied this question.

synapsesocial.com/papers/6a06b940e7dec685947abd75https://doi.org/10.1002/lno.70393
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