Particle-associated denitrification is the primary source of N<sub>2</sub>O in oxic coastal waters.

Wan, Xianhui S; Sheng, Hua-Xia; Liu, Li; Shen, Hui; Tang, Weiyi; Zou, Wenbin; Xu, Min N; Zheng, Zhenzhen et al. · Nat Commun · 2023

basic_science · Level V

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Abstract

The heavily human-perturbed coastal oceans are hotspots of nitrous oxide (N<sub>2</sub>O) emission to the atmosphere. The processes underpinning the N<sub>2</sub>O flux, however, remain poorly understood, leading to large uncertainties in assessing global N<sub>2</sub>O budgets. Using a suite of nitrogen isotope labeling experiments, we show that multiple processes contribute to N<sub>2</sub>O production throughout the estuarine-coastal gradient, sustaining intensive N<sub>2</sub>O flux to the atmosphere. Unexpectedly, denitrification, rather than ammonia oxidation as previously assumed, constitutes the major source of N<sub>2</sub>O in well-oxygenated coastal waters. Size-fractionated manipulation experiments with gene analysis further reveal niche partitioning of ammonia oxidizers and denitrifiers across the particle size spectrum; denitrification dominated on large particles and ammonia oxidizers on small particles. Total N<sub>2</sub>O production rate increases with substrate and particle concentrations, suggesting a crucial interplay between nutrients and particles in controlling N<sub>2</sub>O production. The controlling factors identified here may help understand climate feedback mechanisms between human activity and coastal oceans.