Global patterns and drivers of nitrogen isotope signal in modern marine sediments.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 41290668.
- Also identified by DOI 10.1038/s41467-025-66439-8 and PMC identifier 12728178.
- Licence recorded as CC BY-NC-ND.
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Abstract
Marine nitrogen cycle, shaped by nitrogen input and loss processes, regulates ocean productivity and leaves a distinct imprint on the ratio of stable nitrogen isotopes, δ<sup>15</sup>N. However, quantifying spatial patterns and centennial-scale variations in marine nitrogen cycling through δ<sup>15</sup>N fingerprints remains poorly constrained. Here, we present a global database of δ<sup>15</sup>N in marine sediments, comprising over 8400 seafloor samples, and create 148 time series from sediment cores spanning the past century. Our findings reveal that bulk δ<sup>15</sup>N in global marine sediments predominantly records organic matter, despite the non-negligible role of inorganic nitrogen. A widespread centennial δ<sup>15</sup>N increase, averaging 1.3‰ (interquartile range: 0.6 <math xmlns="http://www.w3.org/1998/Math/MathML"><mo>-</mo></math> 3.3‰) per 100 years, coinciding with total nitrogen enrichment, indicates external nitrogen inputs, productivity, and accelerated denitrification across global coastal oceans. However, in river-influenced continental margins, terrestrial sedimentary processes can obscure the <sup>15</sup>N-enriched signal, as riverine export of <sup>15</sup>N-depleted refractory organic matter likely lowers sedimentary δ<sup>15</sup>N.