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Comparing polysaccharide decomposition between the type strains Gramella echinicola KMM 6050(T) (DSM 19838(T)) and Gramella portivictoriae UST040801-001(T) (DSM 23547(T)), and emended description of Gramella echinicola Nedashkovskaya et al. 2005 emend. Shahina et al. 2014 and Gramella portivictoriae Lau et al. 2005

Strains of the genus Gramella (family Flavobacteriacae, phylum Bacteroidetes) were isolated from marine habitats such as tidal flat sediments, coastal surface seawater and sea urchins. Flavobacteriaceae have been shown to be involved in the decomposition of plant and algal polysaccharides. However,...

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Autores principales: Panschin, Irina, Huang, Sixing, Meier-Kolthoff, Jan P., Tindall, Brian J., Rohde, Manfred, Verbarg, Susanne, Lapidus, Alla, Han, James, Trong, Stephan, Haynes, Matthew, Reddy, T. B. K., Huntemann, Marcel, Pati, Amrita, Ivanova, Natalia N., Mavromatis, Konstantinos, Markowitz, Victor, Woyke, Tanja, Göker, Markus, Klenk, Hans-Peter, Kyrpides, Nikos C., Hahnke, Richard L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4891872/
https://www.ncbi.nlm.nih.gov/pubmed/27274783
http://dx.doi.org/10.1186/s40793-016-0163-9
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author Panschin, Irina
Huang, Sixing
Meier-Kolthoff, Jan P.
Tindall, Brian J.
Rohde, Manfred
Verbarg, Susanne
Lapidus, Alla
Han, James
Trong, Stephan
Haynes, Matthew
Reddy, T. B. K.
Huntemann, Marcel
Pati, Amrita
Ivanova, Natalia N.
Mavromatis, Konstantinos
Markowitz, Victor
Woyke, Tanja
Göker, Markus
Klenk, Hans-Peter
Kyrpides, Nikos C.
Hahnke, Richard L.
author_facet Panschin, Irina
Huang, Sixing
Meier-Kolthoff, Jan P.
Tindall, Brian J.
Rohde, Manfred
Verbarg, Susanne
Lapidus, Alla
Han, James
Trong, Stephan
Haynes, Matthew
Reddy, T. B. K.
Huntemann, Marcel
Pati, Amrita
Ivanova, Natalia N.
Mavromatis, Konstantinos
Markowitz, Victor
Woyke, Tanja
Göker, Markus
Klenk, Hans-Peter
Kyrpides, Nikos C.
Hahnke, Richard L.
author_sort Panschin, Irina
collection PubMed
description Strains of the genus Gramella (family Flavobacteriacae, phylum Bacteroidetes) were isolated from marine habitats such as tidal flat sediments, coastal surface seawater and sea urchins. Flavobacteriaceae have been shown to be involved in the decomposition of plant and algal polysaccharides. However, the potential to decompose polysaccharides may differ tremendously even between species of the same genus. Gramella echinicola KMM 6050(T) (DSM 19838(T)) and Gramella portivictoriae UST040801-001(T) (DSM 23547(T)) have genomes of similar lengths, similar numbers of protein coding genes and RNA genes. Both genomes encode for a greater number of peptidases compared to ’G. forsetii’. In contrast to the genome of ’G. forsetii’, both genomes comprised a smaller set of CAZymes. Seven polysaccharide utilization loci were identified in the genomes of DSM 19838(T) and DSM 23547(T). Both Gramella strains hydrolyzed starch, galactomannan, arabinoxylan and hydroxyethyl-cellulose, but not pectin, chitosan and cellulose (Avicel). Galactan and xylan were hydrolyzed by strain DSM 19838(T), whereas strain DSM 23547(T) hydrolyzed pachyman and carboxy-methyl cellulose. Conclusively, both Gramella type strains exhibit characteristic physiological, morphological and genomic differences that might be linked to their habitat. Furthermore, the identified enzymes mediating polysaccharide decomposition, are of biotechnological interest. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s40793-016-0163-9) contains supplementary material, which is available to authorized users.
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spelling pubmed-48918722016-06-04 Comparing polysaccharide decomposition between the type strains Gramella echinicola KMM 6050(T) (DSM 19838(T)) and Gramella portivictoriae UST040801-001(T) (DSM 23547(T)), and emended description of Gramella echinicola Nedashkovskaya et al. 2005 emend. Shahina et al. 2014 and Gramella portivictoriae Lau et al. 2005 Panschin, Irina Huang, Sixing Meier-Kolthoff, Jan P. Tindall, Brian J. Rohde, Manfred Verbarg, Susanne Lapidus, Alla Han, James Trong, Stephan Haynes, Matthew Reddy, T. B. K. Huntemann, Marcel Pati, Amrita Ivanova, Natalia N. Mavromatis, Konstantinos Markowitz, Victor Woyke, Tanja Göker, Markus Klenk, Hans-Peter Kyrpides, Nikos C. Hahnke, Richard L. Stand Genomic Sci Extended Genome Report Strains of the genus Gramella (family Flavobacteriacae, phylum Bacteroidetes) were isolated from marine habitats such as tidal flat sediments, coastal surface seawater and sea urchins. Flavobacteriaceae have been shown to be involved in the decomposition of plant and algal polysaccharides. However, the potential to decompose polysaccharides may differ tremendously even between species of the same genus. Gramella echinicola KMM 6050(T) (DSM 19838(T)) and Gramella portivictoriae UST040801-001(T) (DSM 23547(T)) have genomes of similar lengths, similar numbers of protein coding genes and RNA genes. Both genomes encode for a greater number of peptidases compared to ’G. forsetii’. In contrast to the genome of ’G. forsetii’, both genomes comprised a smaller set of CAZymes. Seven polysaccharide utilization loci were identified in the genomes of DSM 19838(T) and DSM 23547(T). Both Gramella strains hydrolyzed starch, galactomannan, arabinoxylan and hydroxyethyl-cellulose, but not pectin, chitosan and cellulose (Avicel). Galactan and xylan were hydrolyzed by strain DSM 19838(T), whereas strain DSM 23547(T) hydrolyzed pachyman and carboxy-methyl cellulose. Conclusively, both Gramella type strains exhibit characteristic physiological, morphological and genomic differences that might be linked to their habitat. Furthermore, the identified enzymes mediating polysaccharide decomposition, are of biotechnological interest. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s40793-016-0163-9) contains supplementary material, which is available to authorized users. BioMed Central 2016-06-03 /pmc/articles/PMC4891872/ /pubmed/27274783 http://dx.doi.org/10.1186/s40793-016-0163-9 Text en © The Author(s). 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided 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 Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Extended Genome Report
Panschin, Irina
Huang, Sixing
Meier-Kolthoff, Jan P.
Tindall, Brian J.
Rohde, Manfred
Verbarg, Susanne
Lapidus, Alla
Han, James
Trong, Stephan
Haynes, Matthew
Reddy, T. B. K.
Huntemann, Marcel
Pati, Amrita
Ivanova, Natalia N.
Mavromatis, Konstantinos
Markowitz, Victor
Woyke, Tanja
Göker, Markus
Klenk, Hans-Peter
Kyrpides, Nikos C.
Hahnke, Richard L.
Comparing polysaccharide decomposition between the type strains Gramella echinicola KMM 6050(T) (DSM 19838(T)) and Gramella portivictoriae UST040801-001(T) (DSM 23547(T)), and emended description of Gramella echinicola Nedashkovskaya et al. 2005 emend. Shahina et al. 2014 and Gramella portivictoriae Lau et al. 2005
title Comparing polysaccharide decomposition between the type strains Gramella echinicola KMM 6050(T) (DSM 19838(T)) and Gramella portivictoriae UST040801-001(T) (DSM 23547(T)), and emended description of Gramella echinicola Nedashkovskaya et al. 2005 emend. Shahina et al. 2014 and Gramella portivictoriae Lau et al. 2005
title_full Comparing polysaccharide decomposition between the type strains Gramella echinicola KMM 6050(T) (DSM 19838(T)) and Gramella portivictoriae UST040801-001(T) (DSM 23547(T)), and emended description of Gramella echinicola Nedashkovskaya et al. 2005 emend. Shahina et al. 2014 and Gramella portivictoriae Lau et al. 2005
title_fullStr Comparing polysaccharide decomposition between the type strains Gramella echinicola KMM 6050(T) (DSM 19838(T)) and Gramella portivictoriae UST040801-001(T) (DSM 23547(T)), and emended description of Gramella echinicola Nedashkovskaya et al. 2005 emend. Shahina et al. 2014 and Gramella portivictoriae Lau et al. 2005
title_full_unstemmed Comparing polysaccharide decomposition between the type strains Gramella echinicola KMM 6050(T) (DSM 19838(T)) and Gramella portivictoriae UST040801-001(T) (DSM 23547(T)), and emended description of Gramella echinicola Nedashkovskaya et al. 2005 emend. Shahina et al. 2014 and Gramella portivictoriae Lau et al. 2005
title_short Comparing polysaccharide decomposition between the type strains Gramella echinicola KMM 6050(T) (DSM 19838(T)) and Gramella portivictoriae UST040801-001(T) (DSM 23547(T)), and emended description of Gramella echinicola Nedashkovskaya et al. 2005 emend. Shahina et al. 2014 and Gramella portivictoriae Lau et al. 2005
title_sort comparing polysaccharide decomposition between the type strains gramella echinicola kmm 6050(t) (dsm 19838(t)) and gramella portivictoriae ust040801-001(t) (dsm 23547(t)), and emended description of gramella echinicola nedashkovskaya et al. 2005 emend. shahina et al. 2014 and gramella portivictoriae lau et al. 2005
topic Extended Genome Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4891872/
https://www.ncbi.nlm.nih.gov/pubmed/27274783
http://dx.doi.org/10.1186/s40793-016-0163-9
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