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Thiorhodovibrio frisius and Trv. litoralis spp. nov., Two Novel Members from a Clade of Fastidious Purple Sulfur Bacteria That Exhibit Unique Red-Shifted Light-Harvesting Capabilities

In the pursuit of cultivating anaerobic anoxygenic phototrophs with unusual absorbance spectra, a purple sulfur bacterium was isolated from the shoreline of Baltrum, a North Sea island of Germany. It was designated strain 970, due to a predominant light harvesting complex (LH) absorption maximum at...

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Autores principales: Methner, Anika, Kuzyk, Steven B., Petersen, Jörn, Bauer, Sabine, Brinkmann, Henner, Sichau, Katja, Wanner, Gerhard, Wolf, Jacqueline, Neumann-Schaal, Meina, Henke, Petra, Tank, Marcus, Spröer, Cathrin, Bunk, Boyke, Overmann, Jörg
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609205/
https://www.ncbi.nlm.nih.gov/pubmed/37894052
http://dx.doi.org/10.3390/microorganisms11102394
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author Methner, Anika
Kuzyk, Steven B.
Petersen, Jörn
Bauer, Sabine
Brinkmann, Henner
Sichau, Katja
Wanner, Gerhard
Wolf, Jacqueline
Neumann-Schaal, Meina
Henke, Petra
Tank, Marcus
Spröer, Cathrin
Bunk, Boyke
Overmann, Jörg
author_facet Methner, Anika
Kuzyk, Steven B.
Petersen, Jörn
Bauer, Sabine
Brinkmann, Henner
Sichau, Katja
Wanner, Gerhard
Wolf, Jacqueline
Neumann-Schaal, Meina
Henke, Petra
Tank, Marcus
Spröer, Cathrin
Bunk, Boyke
Overmann, Jörg
author_sort Methner, Anika
collection PubMed
description In the pursuit of cultivating anaerobic anoxygenic phototrophs with unusual absorbance spectra, a purple sulfur bacterium was isolated from the shoreline of Baltrum, a North Sea island of Germany. It was designated strain 970, due to a predominant light harvesting complex (LH) absorption maximum at 963–966 nm, which represents the furthest infrared-shift documented for such complexes containing bacteriochlorophyll a. A polyphasic approach to bacterial systematics was performed, comparing genomic, biochemical, and physiological properties. Strain 970 is related to Thiorhodovibrio winogradskyi DSM 6702(T) by 26.5, 81.9, and 98.0% similarity via dDDH, ANI, and 16S rRNA gene comparisons, respectively. The photosynthetic properties of strain 970 were unlike other Thiorhodovibrio spp., which contained typical LH absorbing characteristics of 800–870 nm, as well as a newly discovered absorption band at 908 nm. Strain 970 also had a different photosynthetic operon composition. Upon genomic comparisons with the original Thiorhodovibrio strains DSM 6702(T) and strain 06511, the latter was found to be divergent, with 25.3, 79.1, and 97.5% similarity via dDDH, ANI, and 16S rRNA gene homology to Trv. winogradskyi, respectively. Strain 06511 (=DSM 116345(T)) is thereby described as Thiorhodovibrio litoralis sp. nov., and the unique strain 970 (=DSM 111777(T)) as Thiorhodovibrio frisius sp. nov.
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spelling pubmed-106092052023-10-28 Thiorhodovibrio frisius and Trv. litoralis spp. nov., Two Novel Members from a Clade of Fastidious Purple Sulfur Bacteria That Exhibit Unique Red-Shifted Light-Harvesting Capabilities Methner, Anika Kuzyk, Steven B. Petersen, Jörn Bauer, Sabine Brinkmann, Henner Sichau, Katja Wanner, Gerhard Wolf, Jacqueline Neumann-Schaal, Meina Henke, Petra Tank, Marcus Spröer, Cathrin Bunk, Boyke Overmann, Jörg Microorganisms Article In the pursuit of cultivating anaerobic anoxygenic phototrophs with unusual absorbance spectra, a purple sulfur bacterium was isolated from the shoreline of Baltrum, a North Sea island of Germany. It was designated strain 970, due to a predominant light harvesting complex (LH) absorption maximum at 963–966 nm, which represents the furthest infrared-shift documented for such complexes containing bacteriochlorophyll a. A polyphasic approach to bacterial systematics was performed, comparing genomic, biochemical, and physiological properties. Strain 970 is related to Thiorhodovibrio winogradskyi DSM 6702(T) by 26.5, 81.9, and 98.0% similarity via dDDH, ANI, and 16S rRNA gene comparisons, respectively. The photosynthetic properties of strain 970 were unlike other Thiorhodovibrio spp., which contained typical LH absorbing characteristics of 800–870 nm, as well as a newly discovered absorption band at 908 nm. Strain 970 also had a different photosynthetic operon composition. Upon genomic comparisons with the original Thiorhodovibrio strains DSM 6702(T) and strain 06511, the latter was found to be divergent, with 25.3, 79.1, and 97.5% similarity via dDDH, ANI, and 16S rRNA gene homology to Trv. winogradskyi, respectively. Strain 06511 (=DSM 116345(T)) is thereby described as Thiorhodovibrio litoralis sp. nov., and the unique strain 970 (=DSM 111777(T)) as Thiorhodovibrio frisius sp. nov. MDPI 2023-09-25 /pmc/articles/PMC10609205/ /pubmed/37894052 http://dx.doi.org/10.3390/microorganisms11102394 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Methner, Anika
Kuzyk, Steven B.
Petersen, Jörn
Bauer, Sabine
Brinkmann, Henner
Sichau, Katja
Wanner, Gerhard
Wolf, Jacqueline
Neumann-Schaal, Meina
Henke, Petra
Tank, Marcus
Spröer, Cathrin
Bunk, Boyke
Overmann, Jörg
Thiorhodovibrio frisius and Trv. litoralis spp. nov., Two Novel Members from a Clade of Fastidious Purple Sulfur Bacteria That Exhibit Unique Red-Shifted Light-Harvesting Capabilities
title Thiorhodovibrio frisius and Trv. litoralis spp. nov., Two Novel Members from a Clade of Fastidious Purple Sulfur Bacteria That Exhibit Unique Red-Shifted Light-Harvesting Capabilities
title_full Thiorhodovibrio frisius and Trv. litoralis spp. nov., Two Novel Members from a Clade of Fastidious Purple Sulfur Bacteria That Exhibit Unique Red-Shifted Light-Harvesting Capabilities
title_fullStr Thiorhodovibrio frisius and Trv. litoralis spp. nov., Two Novel Members from a Clade of Fastidious Purple Sulfur Bacteria That Exhibit Unique Red-Shifted Light-Harvesting Capabilities
title_full_unstemmed Thiorhodovibrio frisius and Trv. litoralis spp. nov., Two Novel Members from a Clade of Fastidious Purple Sulfur Bacteria That Exhibit Unique Red-Shifted Light-Harvesting Capabilities
title_short Thiorhodovibrio frisius and Trv. litoralis spp. nov., Two Novel Members from a Clade of Fastidious Purple Sulfur Bacteria That Exhibit Unique Red-Shifted Light-Harvesting Capabilities
title_sort thiorhodovibrio frisius and trv. litoralis spp. nov., two novel members from a clade of fastidious purple sulfur bacteria that exhibit unique red-shifted light-harvesting capabilities
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609205/
https://www.ncbi.nlm.nih.gov/pubmed/37894052
http://dx.doi.org/10.3390/microorganisms11102394
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