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Relative enrichment of ammonium and its impacts on open-ocean phytoplankton community composition under a high-emissions scenario

  • Pearse J. Buchanan
  • , Juan J. Pierella Karlusich
  • , Robyn E. Tuerena
  • , Roxana Shafiee
  • , E. Malcolm S. Woodward
  • , Chris Bowler
  • , Alessandro Tagliabue

Producción científica: Articlerevisión exhaustiva

2 Citas (Scopus)
2 Descargas (Pure)

Resumen

Ammonium (NH+4 ) is an important component of the ocean’s dissolved inorganic nitrogen (DIN) pool, especially in stratified marine environments where intense recycling of organic matter elevates its supply over other forms. Using a global-ocean biogeochemical model with good fidelity to the sparse NH+4 data that are available, we project increases in the NH+4 : DIN ratio in over 98 % of the ocean by the end of the 21st century under a high-emission scenario. This relative enrichment of NH+4 is driven largely by circulation changes and secondarily by warming-induced increases in microbial metabolism, as well as reduced nitrification rates due to pH decreases. Supplementing our model projections with geochemical measurements and phytoplankton abundance data from Tara Oceans, we demonstrate that shifts in the form of DIN to NH+4 may impact phytoplankton communities by disadvantaging nitrate-dependent taxa like diatoms while promoting taxa better adapted to NH+4 . This could have cascading effects on marine food webs, carbon cycling and fishery productivity. Overall, the form of bioavailable nitrogen emerges as a potentially underappreciated driver of ecosystem structure and function in the changing ocean.
Idioma originalEnglish
Páginas (desde-hasta)4865-4883
Número de páginas19
PublicaciónBiogeosciences
Volumen22
N.º18
DOI
EstadoPublished - 23 sept 2025

ODS de las Naciones Unidas

Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

  1. Life below water
    Life below water

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