Taurine is a major carbon and energy source for marine prokaryotes in the North Atlantic Ocean off the Iberian Peninsula

Taurine, an amino acid-like compound, acts as an osmostress protectant in many marine metazoans and algae and is released via various processes into the oceanic dissolved organic matter pool. Taurine transporters are widespread among members of the marine prokaryotic community, tentatively indicatin...

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Published in:Microbial Ecology
Main Authors: Clifford, E.L., Varela, M.M., De Corte, D., Bode, A., Ortiz, V., Herndl, G.J., Sintes, E.
Format: Article in Journal/Newspaper
Language:English
Published: 2019
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Online Access:http://imis.nioz.nl/imis.php?module=ref&refid=314146
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spelling ftnioz:oai:imis.nioz.nl:314146 2023-05-15T17:30:36+02:00 Taurine is a major carbon and energy source for marine prokaryotes in the North Atlantic Ocean off the Iberian Peninsula Clifford, E.L. Varela, M.M. De Corte, D. Bode, A. Ortiz, V. Herndl, G.J. Sintes, E. 2019 http://imis.nioz.nl/imis.php?module=ref&refid=314146 en eng info:eu-repo/semantics/altIdentifier/wos/000475700200003 info:eu-repo/semantics/altIdentifier/doi/doi.org/10.1007/s00248-019-01320-y http://imis.nioz.nl/imis.php?module=ref&refid=314146 info:eu-repo/semantics/closedAccess %3Ci%3EMicrob.+Ecol.+78%282%29%3C%2Fi%3E%3A+299-312.+%3Ca+href%3D%22https%3A%2F%2Fdx.doi.org%2F10.1007%2Fs00248-019-01320-y%22+target%3D%22_blank%22%3Ehttps%3A%2F%2Fdx.doi.org%2F10.1007%2Fs00248-019-01320-y%3C%2Fa%3E info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion 2019 ftnioz https://doi.org/10.1007/s00248-019-01320-y 2022-05-01T14:10:40Z Taurine, an amino acid-like compound, acts as an osmostress protectant in many marine metazoans and algae and is released via various processes into the oceanic dissolved organic matter pool. Taurine transporters are widespread among members of the marine prokaryotic community, tentatively indicating that taurine might be an important substrate for prokaryotes in the ocean. In this study, we determined prokaryotic taurine assimilation and respiration throughout the water column along two transects in the North Atlantic off the Iberian Peninsula. Taurine assimilation efficiency decreased from the epipelagic waters from 55 ± 14% to 27 ± 20% in the bathypelagic layers (means of both transects). Members of the ubiquitous alphaproteobacterial SAR11 clade accounted for a large fraction of cells taking up taurine, especially in surface waters. Archaea (Thaumarchaeota + Euryarchaeota) were also able to take up taurine in the upper water column, but to a lower extent than Bacteria. The contribution of taurine assimilation to the heterotrophic prokaryotic carbon biomass production ranged from 21% in the epipelagic layer to 16% in the bathypelagic layer. Hence, we conclude that dissolved free taurine is a significant carbon and energy source for prokaryotes throughout the oceanic water column being utilized with similar efficiencies as dissolved free amino acids. Article in Journal/Newspaper North Atlantic NIOZ Repository (Royal Netherlands Institute for Sea Research) Microbial Ecology 78 2 299 312
institution Open Polar
collection NIOZ Repository (Royal Netherlands Institute for Sea Research)
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description Taurine, an amino acid-like compound, acts as an osmostress protectant in many marine metazoans and algae and is released via various processes into the oceanic dissolved organic matter pool. Taurine transporters are widespread among members of the marine prokaryotic community, tentatively indicating that taurine might be an important substrate for prokaryotes in the ocean. In this study, we determined prokaryotic taurine assimilation and respiration throughout the water column along two transects in the North Atlantic off the Iberian Peninsula. Taurine assimilation efficiency decreased from the epipelagic waters from 55 ± 14% to 27 ± 20% in the bathypelagic layers (means of both transects). Members of the ubiquitous alphaproteobacterial SAR11 clade accounted for a large fraction of cells taking up taurine, especially in surface waters. Archaea (Thaumarchaeota + Euryarchaeota) were also able to take up taurine in the upper water column, but to a lower extent than Bacteria. The contribution of taurine assimilation to the heterotrophic prokaryotic carbon biomass production ranged from 21% in the epipelagic layer to 16% in the bathypelagic layer. Hence, we conclude that dissolved free taurine is a significant carbon and energy source for prokaryotes throughout the oceanic water column being utilized with similar efficiencies as dissolved free amino acids.
format Article in Journal/Newspaper
author Clifford, E.L.
Varela, M.M.
De Corte, D.
Bode, A.
Ortiz, V.
Herndl, G.J.
Sintes, E.
spellingShingle Clifford, E.L.
Varela, M.M.
De Corte, D.
Bode, A.
Ortiz, V.
Herndl, G.J.
Sintes, E.
Taurine is a major carbon and energy source for marine prokaryotes in the North Atlantic Ocean off the Iberian Peninsula
author_facet Clifford, E.L.
Varela, M.M.
De Corte, D.
Bode, A.
Ortiz, V.
Herndl, G.J.
Sintes, E.
author_sort Clifford, E.L.
title Taurine is a major carbon and energy source for marine prokaryotes in the North Atlantic Ocean off the Iberian Peninsula
title_short Taurine is a major carbon and energy source for marine prokaryotes in the North Atlantic Ocean off the Iberian Peninsula
title_full Taurine is a major carbon and energy source for marine prokaryotes in the North Atlantic Ocean off the Iberian Peninsula
title_fullStr Taurine is a major carbon and energy source for marine prokaryotes in the North Atlantic Ocean off the Iberian Peninsula
title_full_unstemmed Taurine is a major carbon and energy source for marine prokaryotes in the North Atlantic Ocean off the Iberian Peninsula
title_sort taurine is a major carbon and energy source for marine prokaryotes in the north atlantic ocean off the iberian peninsula
publishDate 2019
url http://imis.nioz.nl/imis.php?module=ref&refid=314146
genre North Atlantic
genre_facet North Atlantic
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