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Linkages Among Dissolved Organic Matter Export, Dissolved Metabolites, and Associated Microbial Community Structure Response in the Northwestern Sargasso Sea on a Seasonal Scale

Deep convective mixing of dissolved and suspended organic matter from the surface to depth can represent an important export pathway of the biological carbon pump. The seasonally oligotrophic Sargasso Sea experiences annual winter convective mixing to as deep as 300 m, providing a unique model syste...

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Autores principales: Liu, Shuting, Longnecker, Krista, Kujawinski, Elizabeth B., Vergin, Kevin, Bolaños, Luis M., Giovannoni, Stephen J., Parsons, Rachel, Opalk, Keri, Halewood, Elisa, Hansell, Dennis A., Johnson, Rod, Curry, Ruth, Carlson, Craig A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8957919/
https://www.ncbi.nlm.nih.gov/pubmed/35350629
http://dx.doi.org/10.3389/fmicb.2022.833252
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author Liu, Shuting
Longnecker, Krista
Kujawinski, Elizabeth B.
Vergin, Kevin
Bolaños, Luis M.
Giovannoni, Stephen J.
Parsons, Rachel
Opalk, Keri
Halewood, Elisa
Hansell, Dennis A.
Johnson, Rod
Curry, Ruth
Carlson, Craig A.
author_facet Liu, Shuting
Longnecker, Krista
Kujawinski, Elizabeth B.
Vergin, Kevin
Bolaños, Luis M.
Giovannoni, Stephen J.
Parsons, Rachel
Opalk, Keri
Halewood, Elisa
Hansell, Dennis A.
Johnson, Rod
Curry, Ruth
Carlson, Craig A.
author_sort Liu, Shuting
collection PubMed
description Deep convective mixing of dissolved and suspended organic matter from the surface to depth can represent an important export pathway of the biological carbon pump. The seasonally oligotrophic Sargasso Sea experiences annual winter convective mixing to as deep as 300 m, providing a unique model system to examine dissolved organic matter (DOM) export and its subsequent compositional transformation by microbial oxidation. We analyzed biogeochemical and microbial parameters collected from the northwestern Sargasso Sea, including bulk dissolved organic carbon (DOC), total dissolved amino acids (TDAA), dissolved metabolites, bacterial abundance and production, and bacterial community structure, to assess the fate and compositional transformation of DOM by microbes on a seasonal time-scale in 2016–2017. DOM dynamics at the Bermuda Atlantic Time-series Study site followed a general annual trend of DOC accumulation in the surface during stratified periods followed by downward flux during winter convective mixing. Changes in the amino acid concentrations and compositions provide useful indices of diagenetic alteration of DOM. TDAA concentrations and degradation indices increased in the mesopelagic zone during mixing, indicating the export of a relatively less diagenetically altered (i.e., more labile) DOM. During periods of deep mixing, a unique subset of dissolved metabolites, such as amino acids, vitamins, and benzoic acids, was produced or lost. DOM export and compositional change were accompanied by mesopelagic bacterial growth and response of specific bacterial lineages in the SAR11, SAR202, and SAR86 clades, Acidimicrobiales, and Flavobacteria, during and shortly following deep mixing. Complementary DOM biogeochemistry and microbial measurements revealed seasonal changes in DOM composition and diagenetic state, highlighting microbial alteration of the quantity and quality of DOM in the ocean.
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spelling pubmed-89579192022-03-28 Linkages Among Dissolved Organic Matter Export, Dissolved Metabolites, and Associated Microbial Community Structure Response in the Northwestern Sargasso Sea on a Seasonal Scale Liu, Shuting Longnecker, Krista Kujawinski, Elizabeth B. Vergin, Kevin Bolaños, Luis M. Giovannoni, Stephen J. Parsons, Rachel Opalk, Keri Halewood, Elisa Hansell, Dennis A. Johnson, Rod Curry, Ruth Carlson, Craig A. Front Microbiol Microbiology Deep convective mixing of dissolved and suspended organic matter from the surface to depth can represent an important export pathway of the biological carbon pump. The seasonally oligotrophic Sargasso Sea experiences annual winter convective mixing to as deep as 300 m, providing a unique model system to examine dissolved organic matter (DOM) export and its subsequent compositional transformation by microbial oxidation. We analyzed biogeochemical and microbial parameters collected from the northwestern Sargasso Sea, including bulk dissolved organic carbon (DOC), total dissolved amino acids (TDAA), dissolved metabolites, bacterial abundance and production, and bacterial community structure, to assess the fate and compositional transformation of DOM by microbes on a seasonal time-scale in 2016–2017. DOM dynamics at the Bermuda Atlantic Time-series Study site followed a general annual trend of DOC accumulation in the surface during stratified periods followed by downward flux during winter convective mixing. Changes in the amino acid concentrations and compositions provide useful indices of diagenetic alteration of DOM. TDAA concentrations and degradation indices increased in the mesopelagic zone during mixing, indicating the export of a relatively less diagenetically altered (i.e., more labile) DOM. During periods of deep mixing, a unique subset of dissolved metabolites, such as amino acids, vitamins, and benzoic acids, was produced or lost. DOM export and compositional change were accompanied by mesopelagic bacterial growth and response of specific bacterial lineages in the SAR11, SAR202, and SAR86 clades, Acidimicrobiales, and Flavobacteria, during and shortly following deep mixing. Complementary DOM biogeochemistry and microbial measurements revealed seasonal changes in DOM composition and diagenetic state, highlighting microbial alteration of the quantity and quality of DOM in the ocean. Frontiers Media S.A. 2022-03-08 /pmc/articles/PMC8957919/ /pubmed/35350629 http://dx.doi.org/10.3389/fmicb.2022.833252 Text en Copyright © 2022 Liu, Longnecker, Kujawinski, Vergin, Bolaños, Giovannoni, Parsons, Opalk, Halewood, Hansell, Johnson, Curry and Carlson. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Liu, Shuting
Longnecker, Krista
Kujawinski, Elizabeth B.
Vergin, Kevin
Bolaños, Luis M.
Giovannoni, Stephen J.
Parsons, Rachel
Opalk, Keri
Halewood, Elisa
Hansell, Dennis A.
Johnson, Rod
Curry, Ruth
Carlson, Craig A.
Linkages Among Dissolved Organic Matter Export, Dissolved Metabolites, and Associated Microbial Community Structure Response in the Northwestern Sargasso Sea on a Seasonal Scale
title Linkages Among Dissolved Organic Matter Export, Dissolved Metabolites, and Associated Microbial Community Structure Response in the Northwestern Sargasso Sea on a Seasonal Scale
title_full Linkages Among Dissolved Organic Matter Export, Dissolved Metabolites, and Associated Microbial Community Structure Response in the Northwestern Sargasso Sea on a Seasonal Scale
title_fullStr Linkages Among Dissolved Organic Matter Export, Dissolved Metabolites, and Associated Microbial Community Structure Response in the Northwestern Sargasso Sea on a Seasonal Scale
title_full_unstemmed Linkages Among Dissolved Organic Matter Export, Dissolved Metabolites, and Associated Microbial Community Structure Response in the Northwestern Sargasso Sea on a Seasonal Scale
title_short Linkages Among Dissolved Organic Matter Export, Dissolved Metabolites, and Associated Microbial Community Structure Response in the Northwestern Sargasso Sea on a Seasonal Scale
title_sort linkages among dissolved organic matter export, dissolved metabolites, and associated microbial community structure response in the northwestern sargasso sea on a seasonal scale
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8957919/
https://www.ncbi.nlm.nih.gov/pubmed/35350629
http://dx.doi.org/10.3389/fmicb.2022.833252
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