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Polysaccharide utilization loci of North Sea Flavobacteriia as basis for using SusC/D-protein expression for predicting major phytoplankton glycans

Marine algae convert a substantial fraction of fixed carbon dioxide into various polysaccharides. Flavobacteriia that are specialized on algal polysaccharide degradation feature genomic clusters termed polysaccharide utilization loci (PULs). As knowledge on extant PUL diversity is sparse, we sequenc...

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Autores principales: Kappelmann, Lennart, Krüger, Karen, Hehemann, Jan-Hendrik, Harder, Jens, Markert, Stephanie, Unfried, Frank, Becher, Dörte, Shapiro, Nicole, Schweder, Thomas, Amann, Rudolf I., Teeling, Hanno
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6298971/
https://www.ncbi.nlm.nih.gov/pubmed/30111868
http://dx.doi.org/10.1038/s41396-018-0242-6
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author Kappelmann, Lennart
Krüger, Karen
Hehemann, Jan-Hendrik
Harder, Jens
Markert, Stephanie
Unfried, Frank
Becher, Dörte
Shapiro, Nicole
Schweder, Thomas
Amann, Rudolf I.
Teeling, Hanno
author_facet Kappelmann, Lennart
Krüger, Karen
Hehemann, Jan-Hendrik
Harder, Jens
Markert, Stephanie
Unfried, Frank
Becher, Dörte
Shapiro, Nicole
Schweder, Thomas
Amann, Rudolf I.
Teeling, Hanno
author_sort Kappelmann, Lennart
collection PubMed
description Marine algae convert a substantial fraction of fixed carbon dioxide into various polysaccharides. Flavobacteriia that are specialized on algal polysaccharide degradation feature genomic clusters termed polysaccharide utilization loci (PULs). As knowledge on extant PUL diversity is sparse, we sequenced the genomes of 53 North Sea Flavobacteriia and obtained 400 PULs. Bioinformatic PUL annotations suggest usage of a large array of polysaccharides, including laminarin, α-glucans, and alginate as well as mannose-, fucose-, and xylose-rich substrates. Many of the PULs exhibit new genetic architectures and suggest substrates rarely described for marine environments. The isolates’ PUL repertoires often differed considerably within genera, corroborating ecological niche-associated glycan partitioning. Polysaccharide uptake in Flavobacteriia is mediated by SusCD-like transporter complexes. Respective protein trees revealed clustering according to polysaccharide specificities predicted by PUL annotations. Using the trees, we analyzed expression of SusC/D homologs in multiyear phytoplankton bloom-associated metaproteomes and found indications for profound changes in microbial utilization of laminarin, α-glucans, β-mannan, and sulfated xylan. We hence suggest the suitability of SusC/D-like transporter protein expression within heterotrophic bacteria as a proxy for the temporal utilization of discrete polysaccharides.
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spelling pubmed-62989712018-12-19 Polysaccharide utilization loci of North Sea Flavobacteriia as basis for using SusC/D-protein expression for predicting major phytoplankton glycans Kappelmann, Lennart Krüger, Karen Hehemann, Jan-Hendrik Harder, Jens Markert, Stephanie Unfried, Frank Becher, Dörte Shapiro, Nicole Schweder, Thomas Amann, Rudolf I. Teeling, Hanno ISME J Article Marine algae convert a substantial fraction of fixed carbon dioxide into various polysaccharides. Flavobacteriia that are specialized on algal polysaccharide degradation feature genomic clusters termed polysaccharide utilization loci (PULs). As knowledge on extant PUL diversity is sparse, we sequenced the genomes of 53 North Sea Flavobacteriia and obtained 400 PULs. Bioinformatic PUL annotations suggest usage of a large array of polysaccharides, including laminarin, α-glucans, and alginate as well as mannose-, fucose-, and xylose-rich substrates. Many of the PULs exhibit new genetic architectures and suggest substrates rarely described for marine environments. The isolates’ PUL repertoires often differed considerably within genera, corroborating ecological niche-associated glycan partitioning. Polysaccharide uptake in Flavobacteriia is mediated by SusCD-like transporter complexes. Respective protein trees revealed clustering according to polysaccharide specificities predicted by PUL annotations. Using the trees, we analyzed expression of SusC/D homologs in multiyear phytoplankton bloom-associated metaproteomes and found indications for profound changes in microbial utilization of laminarin, α-glucans, β-mannan, and sulfated xylan. We hence suggest the suitability of SusC/D-like transporter protein expression within heterotrophic bacteria as a proxy for the temporal utilization of discrete polysaccharides. Nature Publishing Group UK 2018-08-15 2019-01 /pmc/articles/PMC6298971/ /pubmed/30111868 http://dx.doi.org/10.1038/s41396-018-0242-6 Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Kappelmann, Lennart
Krüger, Karen
Hehemann, Jan-Hendrik
Harder, Jens
Markert, Stephanie
Unfried, Frank
Becher, Dörte
Shapiro, Nicole
Schweder, Thomas
Amann, Rudolf I.
Teeling, Hanno
Polysaccharide utilization loci of North Sea Flavobacteriia as basis for using SusC/D-protein expression for predicting major phytoplankton glycans
title Polysaccharide utilization loci of North Sea Flavobacteriia as basis for using SusC/D-protein expression for predicting major phytoplankton glycans
title_full Polysaccharide utilization loci of North Sea Flavobacteriia as basis for using SusC/D-protein expression for predicting major phytoplankton glycans
title_fullStr Polysaccharide utilization loci of North Sea Flavobacteriia as basis for using SusC/D-protein expression for predicting major phytoplankton glycans
title_full_unstemmed Polysaccharide utilization loci of North Sea Flavobacteriia as basis for using SusC/D-protein expression for predicting major phytoplankton glycans
title_short Polysaccharide utilization loci of North Sea Flavobacteriia as basis for using SusC/D-protein expression for predicting major phytoplankton glycans
title_sort polysaccharide utilization loci of north sea flavobacteriia as basis for using susc/d-protein expression for predicting major phytoplankton glycans
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6298971/
https://www.ncbi.nlm.nih.gov/pubmed/30111868
http://dx.doi.org/10.1038/s41396-018-0242-6
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