Reconciling the importance of meiofauna respiration for oxygen demand in muddy coastal sediments

Adele Maciute*, Oleksandr Holovachov, Ronnie N. Glud, Elias Broman, Peter Berg, Francisco J.A. Nascimento, Stefano Bonaglia

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Abstract

Meiofauna, organisms smaller than 1 mm, are the most abundant and diverse invertebrates inhabiting the world's ocean floor but their contribution to benthic oxygen demand is still poorly constrained. This knowledge is crucial for understanding seabed respiration, global marine carbon, and oxygen cycles, which are relevant to all nutrient cycling and energy flows in the ecosystem. It is common to predict meiofauna respiration based on their biomass or volume, which are difficult to quantify, and thus meiofauna are rarely included in biogeochemistry studies. In addition, it is still unknown how well the generalized allometric relations describe all meiofauna respiration. Therefore, we used a novel approach specially developed for single meiofauna respiration measurements to derive the respiration rates of 10 meiofauna groups in two marine and one brackish coastal muddy environments under oxic and hypoxic conditions, representing natural sediment conditions. Our estimates suggest that large ostracods and juveniles of macrofauna (e.g., bivalves, trumpet worms, and priapulids) had the highest individual respiration rates. Meiofauna community as a whole contributed 3–33% to sediment oxygen uptake. However, the most important contributors to the overall sediment oxygen uptake were nematodes and foraminifera which had lower respiration rates but were highly abundant. Therefore, out of more than 22 meiofauna phyla, we recommend that nematode and foraminifera respiration, which contributes 3–30% (total 3–33%) to sediment oxygen uptake, should be taken into consideration in any estimations of benthic oxygen and carbon cycles.

OriginalsprogEngelsk
TidsskriftLimnology and Oceanography
Vol/bind68
Udgave nummer8
Sider (fra-til)1895-1905
ISSN0024-3590
DOI
StatusUdgivet - aug. 2023

Bibliografisk note

Funding Information:
The authors acknowledge financial support from the Swedish Research Council Formas (grant no. 2017‐01513 to S.B.). The Swedish Environmental Protection Agency's Research (grant no. NV‐802‐0151‐18 to F.J.A.N) in collaboration with the Swedish Agency for Marine and Water Management. The European Commission through HADES‐ERC (grant no. 669947), Danish National Research Foundation through the Danish Center for Hadal Research, HADAL (grant no. DNRF145), and the US National Science Foundation (grant no. OCE‐1851424). They also acknowledge the Askö and Kristineberg marine station staff for the help during sampling, and Irina Polovodova Asteman and Phoebe O'brien for assistance in foraminifera picking.

Publisher Copyright:
© 2023 The Authors. Limnology and Oceanography published by Wiley Periodicals LLC on behalf of Association for the Sciences of Limnology and Oceanography.

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