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Substantial oxygen consumption by aerobic nitrite oxidation in oceanic oxygen minimum zones

Earth Sciences

Substantial oxygen consumption by aerobic nitrite oxidation in oceanic oxygen minimum zones

J. M. Beman, S. M. Vargas, et al.

Dive into the fascinating world of oceanic oxygen minimum zones (OMZs) where dissolved oxygen levels drop below 20 µM, leading to remarkable biogeochemical dynamics. This research, conducted by J. M. Beman and team, reveals how nitrite oxidation significantly influences oxygen consumption in these zones, especially when oxygen levels plummet. Discover the intricate coupling between nitrite-oxidizing Nitrospina and nitrate reduction that sustains these vital oceanic processes!... show more
Abstract
Oceanic oxygen minimum zones (OMZs) are globally significant sites of biogeochemical cycling where microorganisms deplete dissolved oxygen (DO) to concentrations <20 µM. Amid intense competition for DO in these metabolically challenging environments, aerobic nitrite oxidation may consume significant amounts of DO and help maintain low DO concentrations, but this remains unquantified. Using parallel measurements of oxygen consumption rates and 15N-nitrite oxidation rates applied to both water column profiles and oxygen manipulation experiments, we show that the contribution of nitrite oxidation to overall DO consumption systematically increases as DO declines below 2 µM. Nitrite oxidation can account for all DO consumption only under DO concentrations <393 nM found in and below the secondary chlorophyll maximum. These patterns are consistent across sampling stations and experiments, reflecting coupling between nitrate reduction and nitrite-oxidizing Nitrospina with high oxygen affinity (based on isotopic and omic data). Collectively our results demonstrate that nitrite oxidation plays a pivotal role in the maintenance and biogeochemical dynamics of OMZs.
Publisher
Nature Communications
Published On
Dec 02, 2021
Authors
J. M. Beman, S. M. Vargas, J. M. Wilson, E. Perez-Coronel, J. S. Karolewski, S. Vazquez, A. Yu, A. E. Cairo, M. E. White, I. Koester, L. I. Aluwihare, S. D. Wankel
Tags
oceanic oxygen minimum zones
dissolved oxygen
nitrite oxidation
biogeochemical cycling
microorganisms
nitrate reduction
Nitrospina
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