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Metabolic flexibility revealed in the genome of the cyst-forming α-1 proteobacterium Rhodospirillum centenum

BACKGROUND: Rhodospirillum centenum is a photosynthetic non-sulfur purple bacterium that favors growth in an anoxygenic, photosynthetic N(2)-fixing environment. It is emerging as a genetically amenable model organism for molecular genetic analysis of cyst formation, photosynthesis, phototaxis, and c...

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Autores principales: Lu, Yih-Kuang, Marden, Jeremiah, Han, Mira, Swingley, Wesley D, Mastrian, Stephen D, Chowdhury, Sugata Roy, Hao, Jicheng, Helmy, Tamer, Kim, Sun, Kurdoglu, Ahmet A, Matthies, Heather J, Rollo, David, Stothard, Paul, Blankenship, Robert E, Bauer, Carl E, Touchman, Jeffrey W
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2890560/
https://www.ncbi.nlm.nih.gov/pubmed/20500872
http://dx.doi.org/10.1186/1471-2164-11-325
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author Lu, Yih-Kuang
Marden, Jeremiah
Han, Mira
Swingley, Wesley D
Mastrian, Stephen D
Chowdhury, Sugata Roy
Hao, Jicheng
Helmy, Tamer
Kim, Sun
Kurdoglu, Ahmet A
Matthies, Heather J
Rollo, David
Stothard, Paul
Blankenship, Robert E
Bauer, Carl E
Touchman, Jeffrey W
author_facet Lu, Yih-Kuang
Marden, Jeremiah
Han, Mira
Swingley, Wesley D
Mastrian, Stephen D
Chowdhury, Sugata Roy
Hao, Jicheng
Helmy, Tamer
Kim, Sun
Kurdoglu, Ahmet A
Matthies, Heather J
Rollo, David
Stothard, Paul
Blankenship, Robert E
Bauer, Carl E
Touchman, Jeffrey W
author_sort Lu, Yih-Kuang
collection PubMed
description BACKGROUND: Rhodospirillum centenum is a photosynthetic non-sulfur purple bacterium that favors growth in an anoxygenic, photosynthetic N(2)-fixing environment. It is emerging as a genetically amenable model organism for molecular genetic analysis of cyst formation, photosynthesis, phototaxis, and cellular development. Here, we present an analysis of the genome of this bacterium. RESULTS: R. centenum contains a singular circular chromosome of 4,355,548 base pairs in size harboring 4,105 genes. It has an intact Calvin cycle with two forms of Rubisco, as well as a gene encoding phosphoenolpyruvate carboxylase (PEPC) for mixotrophic CO(2 )fixation. This dual carbon-fixation system may be required for regulating internal carbon flux to facilitate bacterial nitrogen assimilation. Enzymatic reactions associated with arsenate and mercuric detoxification are rare or unique compared to other purple bacteria. Among numerous newly identified signal transduction proteins, of particular interest is a putative bacteriophytochrome that is phylogenetically distinct from a previously characterized R. centenum phytochrome, Ppr. Genes encoding proteins involved in chemotaxis as well as a sophisticated dual flagellar system have also been mapped. CONCLUSIONS: Remarkable metabolic versatility and a superior capability for photoautotrophic carbon assimilation is evident in R. centenum.
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spelling pubmed-28905602010-06-24 Metabolic flexibility revealed in the genome of the cyst-forming α-1 proteobacterium Rhodospirillum centenum Lu, Yih-Kuang Marden, Jeremiah Han, Mira Swingley, Wesley D Mastrian, Stephen D Chowdhury, Sugata Roy Hao, Jicheng Helmy, Tamer Kim, Sun Kurdoglu, Ahmet A Matthies, Heather J Rollo, David Stothard, Paul Blankenship, Robert E Bauer, Carl E Touchman, Jeffrey W BMC Genomics Research Article BACKGROUND: Rhodospirillum centenum is a photosynthetic non-sulfur purple bacterium that favors growth in an anoxygenic, photosynthetic N(2)-fixing environment. It is emerging as a genetically amenable model organism for molecular genetic analysis of cyst formation, photosynthesis, phototaxis, and cellular development. Here, we present an analysis of the genome of this bacterium. RESULTS: R. centenum contains a singular circular chromosome of 4,355,548 base pairs in size harboring 4,105 genes. It has an intact Calvin cycle with two forms of Rubisco, as well as a gene encoding phosphoenolpyruvate carboxylase (PEPC) for mixotrophic CO(2 )fixation. This dual carbon-fixation system may be required for regulating internal carbon flux to facilitate bacterial nitrogen assimilation. Enzymatic reactions associated with arsenate and mercuric detoxification are rare or unique compared to other purple bacteria. Among numerous newly identified signal transduction proteins, of particular interest is a putative bacteriophytochrome that is phylogenetically distinct from a previously characterized R. centenum phytochrome, Ppr. Genes encoding proteins involved in chemotaxis as well as a sophisticated dual flagellar system have also been mapped. CONCLUSIONS: Remarkable metabolic versatility and a superior capability for photoautotrophic carbon assimilation is evident in R. centenum. BioMed Central 2010-05-25 /pmc/articles/PMC2890560/ /pubmed/20500872 http://dx.doi.org/10.1186/1471-2164-11-325 Text en Copyright © 2010 Lu et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Lu, Yih-Kuang
Marden, Jeremiah
Han, Mira
Swingley, Wesley D
Mastrian, Stephen D
Chowdhury, Sugata Roy
Hao, Jicheng
Helmy, Tamer
Kim, Sun
Kurdoglu, Ahmet A
Matthies, Heather J
Rollo, David
Stothard, Paul
Blankenship, Robert E
Bauer, Carl E
Touchman, Jeffrey W
Metabolic flexibility revealed in the genome of the cyst-forming α-1 proteobacterium Rhodospirillum centenum
title Metabolic flexibility revealed in the genome of the cyst-forming α-1 proteobacterium Rhodospirillum centenum
title_full Metabolic flexibility revealed in the genome of the cyst-forming α-1 proteobacterium Rhodospirillum centenum
title_fullStr Metabolic flexibility revealed in the genome of the cyst-forming α-1 proteobacterium Rhodospirillum centenum
title_full_unstemmed Metabolic flexibility revealed in the genome of the cyst-forming α-1 proteobacterium Rhodospirillum centenum
title_short Metabolic flexibility revealed in the genome of the cyst-forming α-1 proteobacterium Rhodospirillum centenum
title_sort metabolic flexibility revealed in the genome of the cyst-forming α-1 proteobacterium rhodospirillum centenum
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2890560/
https://www.ncbi.nlm.nih.gov/pubmed/20500872
http://dx.doi.org/10.1186/1471-2164-11-325
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