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Meiofauna improve oxygenation and accelerate sulfide removal in the seasonally hypoxic seabed

Oxygen depleted areas are widespread in the marine realm. Unlike macrofauna, meiofauna are abundant in hypoxic sediments. We studied to what extent meiofauna affect oxygen availability, sulfide removal and microbial communities. Meiofauna were extracted alive and added to intact sediments simulating...

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Detalles Bibliográficos
Autores principales: Bonaglia, Stefano, Hedberg, Johanna, Marzocchi, Ugo, Iburg, Sven, Glud, Ronnie N., Nascimento, Francisco J.A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7369627/
https://www.ncbi.nlm.nih.gov/pubmed/32662428
http://dx.doi.org/10.1016/j.marenvres.2020.104968
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author Bonaglia, Stefano
Hedberg, Johanna
Marzocchi, Ugo
Iburg, Sven
Glud, Ronnie N.
Nascimento, Francisco J.A.
author_facet Bonaglia, Stefano
Hedberg, Johanna
Marzocchi, Ugo
Iburg, Sven
Glud, Ronnie N.
Nascimento, Francisco J.A.
author_sort Bonaglia, Stefano
collection PubMed
description Oxygen depleted areas are widespread in the marine realm. Unlike macrofauna, meiofauna are abundant in hypoxic sediments. We studied to what extent meiofauna affect oxygen availability, sulfide removal and microbial communities. Meiofauna were extracted alive and added to intact sediments simulating abundance gradients previously reported in the area. A total of 324 porewater microprofiles were recorded over a 3-week incubation period and microbial community structure and cable bacteria densities were determined at the end of the experiment. At high abundances meiofauna activity deepened oxygen penetration by 85%, 59%, and 62% after 5, 14, and 22 days, respectively, compared to control sediment with scarce meiofauna. After 6 days, meiofauna increased the volume of oxidized, sulfide-free sediment by 68% and reduced sulfide fluxes from 8.8 to 0.4 mmol m(−2) d(−1). After 15 days, the difference with the control attenuated due to the presence of a cable bacteria population, which facilitated sulfides oxidation in all treatments. 16S rRNA gene analysis revealed that meiofauna affected microbial community structure (beta diversity). Thus, meiofauna bioturbation plays an important role in deepening oxygen penetration, counteracting euxinia and in structuring microbial diversity of hypoxic sediments. Co-existence with cable bacteria demonstrates neutralism interaction between these two ecosystem engineers.
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spelling pubmed-73696272020-07-23 Meiofauna improve oxygenation and accelerate sulfide removal in the seasonally hypoxic seabed Bonaglia, Stefano Hedberg, Johanna Marzocchi, Ugo Iburg, Sven Glud, Ronnie N. Nascimento, Francisco J.A. Mar Environ Res Article Oxygen depleted areas are widespread in the marine realm. Unlike macrofauna, meiofauna are abundant in hypoxic sediments. We studied to what extent meiofauna affect oxygen availability, sulfide removal and microbial communities. Meiofauna were extracted alive and added to intact sediments simulating abundance gradients previously reported in the area. A total of 324 porewater microprofiles were recorded over a 3-week incubation period and microbial community structure and cable bacteria densities were determined at the end of the experiment. At high abundances meiofauna activity deepened oxygen penetration by 85%, 59%, and 62% after 5, 14, and 22 days, respectively, compared to control sediment with scarce meiofauna. After 6 days, meiofauna increased the volume of oxidized, sulfide-free sediment by 68% and reduced sulfide fluxes from 8.8 to 0.4 mmol m(−2) d(−1). After 15 days, the difference with the control attenuated due to the presence of a cable bacteria population, which facilitated sulfides oxidation in all treatments. 16S rRNA gene analysis revealed that meiofauna affected microbial community structure (beta diversity). Thus, meiofauna bioturbation plays an important role in deepening oxygen penetration, counteracting euxinia and in structuring microbial diversity of hypoxic sediments. Co-existence with cable bacteria demonstrates neutralism interaction between these two ecosystem engineers. Elsevier 2020-07 /pmc/articles/PMC7369627/ /pubmed/32662428 http://dx.doi.org/10.1016/j.marenvres.2020.104968 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bonaglia, Stefano
Hedberg, Johanna
Marzocchi, Ugo
Iburg, Sven
Glud, Ronnie N.
Nascimento, Francisco J.A.
Meiofauna improve oxygenation and accelerate sulfide removal in the seasonally hypoxic seabed
title Meiofauna improve oxygenation and accelerate sulfide removal in the seasonally hypoxic seabed
title_full Meiofauna improve oxygenation and accelerate sulfide removal in the seasonally hypoxic seabed
title_fullStr Meiofauna improve oxygenation and accelerate sulfide removal in the seasonally hypoxic seabed
title_full_unstemmed Meiofauna improve oxygenation and accelerate sulfide removal in the seasonally hypoxic seabed
title_short Meiofauna improve oxygenation and accelerate sulfide removal in the seasonally hypoxic seabed
title_sort meiofauna improve oxygenation and accelerate sulfide removal in the seasonally hypoxic seabed
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7369627/
https://www.ncbi.nlm.nih.gov/pubmed/32662428
http://dx.doi.org/10.1016/j.marenvres.2020.104968
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