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Genomic Analysis of Melioribacter roseus, Facultatively Anaerobic Organotrophic Bacterium Representing a Novel Deep Lineage within Bacteriodetes/Chlorobi Group

Melioribacter roseus is a moderately thermophilic facultatively anaerobic organotrophic bacterium representing a novel deep branch within Bacteriodetes/Chlorobi group. To better understand the metabolic capabilities and possible ecological functions of M. roseus and get insights into the evolutionar...

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Autores principales: Kadnikov, Vitaly V., Mardanov, Andrey V., Podosokorskaya, Olga A., Gavrilov, Sergey N., Kublanov, Ilya V., Beletsky, Alexey V., Bonch-Osmolovskaya, Elizaveta A., Ravin, Nikolai V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3534657/
https://www.ncbi.nlm.nih.gov/pubmed/23301019
http://dx.doi.org/10.1371/journal.pone.0053047
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author Kadnikov, Vitaly V.
Mardanov, Andrey V.
Podosokorskaya, Olga A.
Gavrilov, Sergey N.
Kublanov, Ilya V.
Beletsky, Alexey V.
Bonch-Osmolovskaya, Elizaveta A.
Ravin, Nikolai V.
author_facet Kadnikov, Vitaly V.
Mardanov, Andrey V.
Podosokorskaya, Olga A.
Gavrilov, Sergey N.
Kublanov, Ilya V.
Beletsky, Alexey V.
Bonch-Osmolovskaya, Elizaveta A.
Ravin, Nikolai V.
author_sort Kadnikov, Vitaly V.
collection PubMed
description Melioribacter roseus is a moderately thermophilic facultatively anaerobic organotrophic bacterium representing a novel deep branch within Bacteriodetes/Chlorobi group. To better understand the metabolic capabilities and possible ecological functions of M. roseus and get insights into the evolutionary history of this bacterial lineage, we sequenced the genome of the type strain P3M-2(T). A total of 2838 open reading frames was predicted from its 3.30 Mb genome. The whole proteome analysis supported phylum-level classification of M. roseus since most of the predicted proteins had closest matches in Bacteriodetes, Proteobacteria, Chlorobi, Firmicutes and deeply-branching bacterium Caldithrix abyssi, rather than in one particular phylum. Consistent with the ability of the bacterium to grow on complex carbohydrates, the genome analysis revealed more than one hundred glycoside hydrolases, glycoside transferases, polysaccharide lyases and carbohydrate esterases. The reconstructed central metabolism revealed pathways enabling the fermentation of complex organic substrates, as well as their complete oxidation through aerobic and anaerobic respiration. Genes encoding the photosynthetic and nitrogen-fixation machinery of green sulfur bacteria, as well as key enzymes of autotrophic carbon fixation pathways, were not identified. The M. roseus genome supports its affiliation to a novel phylum Ignavibateriae, representing the first step on the evolutionary pathway from heterotrophic ancestors of Bacteriodetes/Chlorobi group towards anaerobic photoautotrophic Chlorobi.
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spelling pubmed-35346572013-01-08 Genomic Analysis of Melioribacter roseus, Facultatively Anaerobic Organotrophic Bacterium Representing a Novel Deep Lineage within Bacteriodetes/Chlorobi Group Kadnikov, Vitaly V. Mardanov, Andrey V. Podosokorskaya, Olga A. Gavrilov, Sergey N. Kublanov, Ilya V. Beletsky, Alexey V. Bonch-Osmolovskaya, Elizaveta A. Ravin, Nikolai V. PLoS One Research Article Melioribacter roseus is a moderately thermophilic facultatively anaerobic organotrophic bacterium representing a novel deep branch within Bacteriodetes/Chlorobi group. To better understand the metabolic capabilities and possible ecological functions of M. roseus and get insights into the evolutionary history of this bacterial lineage, we sequenced the genome of the type strain P3M-2(T). A total of 2838 open reading frames was predicted from its 3.30 Mb genome. The whole proteome analysis supported phylum-level classification of M. roseus since most of the predicted proteins had closest matches in Bacteriodetes, Proteobacteria, Chlorobi, Firmicutes and deeply-branching bacterium Caldithrix abyssi, rather than in one particular phylum. Consistent with the ability of the bacterium to grow on complex carbohydrates, the genome analysis revealed more than one hundred glycoside hydrolases, glycoside transferases, polysaccharide lyases and carbohydrate esterases. The reconstructed central metabolism revealed pathways enabling the fermentation of complex organic substrates, as well as their complete oxidation through aerobic and anaerobic respiration. Genes encoding the photosynthetic and nitrogen-fixation machinery of green sulfur bacteria, as well as key enzymes of autotrophic carbon fixation pathways, were not identified. The M. roseus genome supports its affiliation to a novel phylum Ignavibateriae, representing the first step on the evolutionary pathway from heterotrophic ancestors of Bacteriodetes/Chlorobi group towards anaerobic photoautotrophic Chlorobi. Public Library of Science 2013-01-02 /pmc/articles/PMC3534657/ /pubmed/23301019 http://dx.doi.org/10.1371/journal.pone.0053047 Text en © 2013 Kadnikov et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Kadnikov, Vitaly V.
Mardanov, Andrey V.
Podosokorskaya, Olga A.
Gavrilov, Sergey N.
Kublanov, Ilya V.
Beletsky, Alexey V.
Bonch-Osmolovskaya, Elizaveta A.
Ravin, Nikolai V.
Genomic Analysis of Melioribacter roseus, Facultatively Anaerobic Organotrophic Bacterium Representing a Novel Deep Lineage within Bacteriodetes/Chlorobi Group
title Genomic Analysis of Melioribacter roseus, Facultatively Anaerobic Organotrophic Bacterium Representing a Novel Deep Lineage within Bacteriodetes/Chlorobi Group
title_full Genomic Analysis of Melioribacter roseus, Facultatively Anaerobic Organotrophic Bacterium Representing a Novel Deep Lineage within Bacteriodetes/Chlorobi Group
title_fullStr Genomic Analysis of Melioribacter roseus, Facultatively Anaerobic Organotrophic Bacterium Representing a Novel Deep Lineage within Bacteriodetes/Chlorobi Group
title_full_unstemmed Genomic Analysis of Melioribacter roseus, Facultatively Anaerobic Organotrophic Bacterium Representing a Novel Deep Lineage within Bacteriodetes/Chlorobi Group
title_short Genomic Analysis of Melioribacter roseus, Facultatively Anaerobic Organotrophic Bacterium Representing a Novel Deep Lineage within Bacteriodetes/Chlorobi Group
title_sort genomic analysis of melioribacter roseus, facultatively anaerobic organotrophic bacterium representing a novel deep lineage within bacteriodetes/chlorobi group
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3534657/
https://www.ncbi.nlm.nih.gov/pubmed/23301019
http://dx.doi.org/10.1371/journal.pone.0053047
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