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Small sinking particles control anammox rates in the Peruvian oxygen minimum zone

机译:小沉没颗粒在秘鲁氧气最小区域中控制厌氧率

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摘要

Anaerobic oxidation of ammonium (anammox) in oxygen minimum zones (OMZs) is a major pathway of oceanic nitrogen loss. Ammonium released from sinking particles has been suggested to fuel this process. During cruises to the Peruvian OMZ in April-June 2017 we found that anammox rates are strongly correlated with the volume of small particles (128-512 μm), even though anammox bacteria were not directly associated with particles. This suggests that the relationship between anammox rates and particles is related to the ammonium released from particles by remineralization. To investigate this, ammonium release from particles was modelled and theoretical encounters of free-living anammox bacteria with ammonium in the particle boundary layer were calculated. These results indicated that small sinking particles could be responsible for ~75% of ammonium release in anoxic waters and that free-living anammox bacteria frequently encounter ammonium in the vicinity of smaller particles. This indicates a so far underestimated role of abundant, slow-sinking small particles in controlling oceanic nutrient budgets, and furthermore implies that observations of the volume of small particles could be used to estimate N-loss across large areas.
机译:氧气最小区域(OMZS)中的铵(厌氧毒素)的厌氧氧化是海洋氮气损失的主要途径。已经提出了从沉没的颗粒中释放的铵来燃料。在2017年4月至6月到秘鲁欧姆斯的巡航期间,我们发现厌氧率与小颗粒的体积强烈相关(128-512μm),即使厌氧菌细菌没有与颗粒直接相关。这表明厌氧率和颗粒之间的关系与通过再矿化通过颗粒释放的铵。为了研究这一点,计算从颗粒中释放的铵释放,并计算颗粒边界层中铵中的自由活厌氧菌细菌的理论遇食。这些结果表明,小沉降颗粒可能负责氧氧水域中的〜75%的铵释放,并且在较小的颗粒附近经常遇到铵的自由活的厌氧菌细菌。这表明在控制海洋营养预算方面迄今为止丰富,缓慢沉没的小颗粒的作用,并且此外意味着小颗粒体积的观察可用于估计大面积的N-损失。

著录项

  • 来源
    《Oceanographic Literature Review》 |2021年第7期|1468-1468|共1页
  • 作者单位

    Max Planck Institute for Marine Microbiology Bremen Germany;

    Max Planck Institute for Marine Microbiology Bremen Germany;

    Max Planck Institute for Marine Microbiology Bremen Germany;

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  • 正文语种 eng
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