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    • Image courtesy of cell.com

      cell.com

      • Microbial nitrogen-transforming networks both attenuate and exacerbate human-induced global change. They produce and consume the powerful greenhouse gas nitrous oxide, lead to eutrophication of aquatic systems and, at the same time, remove nitrogen from wastewater.
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  2. Feb 5, 2018 · Microbial nitrogen-transforming networks both attenuate and exacerbate human-induced global change. They produce and consume the powerful greenhouse gas nitrous oxide, lead to...

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  3. In this Review, we summarize our current understanding of the microbial nitrogen-cycling network, including novel processes, their underlying biochemical pathways, the involved microorganisms, their environmental importance and industrial applications.

    • Marcel M. M. Kuypers, Hannah K. Marchant, Boran Kartal
    • 2018
  4. Feb 5, 2018 · This Review summarizes the current understanding of the microbial nitrogen-cycling network, including novel processes, their underlying biochemical pathways, the involved microorganisms, their environmental importance and industrial applications.

  5. Aug 8, 2022 · The microbial nitrogen cycle comprises six distinct N-transformation processes, including ammonification, nitrogen fixation, nitrification, denitrification, anaerobic ammonium oxidation...

  6. Mar 8, 2023 · Numerous important redox reactions of nitrogen in nature are carried out almost exclusively by microorganisms, which is why microbial participation in the nitrogen cycle is of great importance. Nitrogen exists in different oxidation states, ranging from −3 in ammonium to +5 in nitrate.

  7. Apr 12, 2024 · Here, we explore microbial N cycling in coastal Antarctica, unraveling the biological origin of NO 3− via oxygen isotopes in soil and lake sediment, and through the reconstruction of 1968...

  8. Oct 23, 2014 · These findings imply that we still have much to learn about the microbial nitrogen cycle, the organisms responsible for it and their interactions in natural and human environments. Progress in N cycle research has been facilitated by recent rapid technological advances, especially in genomics and isotopic approaches.