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Quantifying N2 fixation and its contribution to export production near the Tonga-Kermadec Arc using nitrogen isotope budgets

Heather J. Forrer; Sophie Bonnet; Rachel K. Thomas; Olivier Grosso; Cecile Guieu; Angela N. Knapp
Frontiers in Marine Science · Vol. 10 · 2023

Abstract

The spatial distribution of marine di-nitrogen (N 2 ) fixation informs our understanding of the sensitivities of this process as well as the potential for this new nitrogen (N) source to drive export production, influencing the global carbon (C) cycle and climate. Using geochemically-derived δ 15 N budgets, we quantified rates of N 2 fixation and its importance for supporting export production at stations sampled near the southwest Pacific Tonga-Kermadec Arc. Recent observations indicate that shallow (<300 m) hydrothermal vents located along the arc provide significant dissolved iron to the euphotic zone, stimulating N 2 fixation. Here we compare measurements of water column δ 15 N NO3+NO2 with sinking particulate δ 15 N collected by short-term sediment traps deployed at 170 m and 270 m at stations in close proximity to subsurface hydrothermal activity, and the δ 15 N of N 2 fixation. Results from the δ 15 N budgets yield high geochemically-based N 2 fixation rates (282 to 638 µmol N m -2 d -1 ) at stations impacted by hydrothermal activity, supporting 64 to 92% of export production in late spring. These results are consistent with contemporaneous 15 N 2 uptake rate estimates and molecular work describing high Trichodesmium spp. and other diazotroph abundances associated with elevated N 2 fixation rates. Further, the δ 15 N of sinking particulate N collected at 1000 m over an annual cycle revealed sinking fluxes peaked in the summer and coincided with the lowest δ 15 N, while lower winter sinking fluxes had the highest δ 15 N, indicating isotopically distinct N sources supporting export seasonally, and aligning with observations from most other δ 15 N budgets in oligotrophic regions. Consequently, the significant regional N 2 fixation input to the late spring/summer Western Tropical South Pacific results in the accumulation of low-δ 15 N NO3+NO2 in the upper thermocline that works to lower the elevated δ 15 N NO3+NO2 generated in the oxygen deficient zones in the Eastern Tropical South Pacific.

Bibliographic Information

JournalFrontiers in Marine Science
PublisherFrontiers
Publication Date2023-10-27
Publication Year2023
Volume10
Document TypeJournal Article
eISSN2296-7745
DOI10.3389/fmars.2023.1249115
SubjectMarine science; fisheries; aquaculture; pollution; ocean observation; policy

Access Information

NARA Access CoverageOA / free full text
Journal Homepagehttps://www.frontiersin.org/journals/marine-science
Publisher PageOpen Publisher Page
This article is openly available from the publisher.