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Complete genome sequence of Sulfurospirillum deleyianum type strain (5175(T))
Sulfurospirillum deleyianum Schumacher et al. 1993 is the type species of the genus Sulfurospirillum. S. deleyianum is a model organism for studying sulfur reduction and dissimilatory nitrate reduction as an energy source for growth. Also, it is a prominent model organism for studying the structural...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Texto |
Lenguaje: | English |
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Michigan State University
2010
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3035281/ https://www.ncbi.nlm.nih.gov/pubmed/21304697 http://dx.doi.org/10.4056/sigs.671209 |
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author | Sikorski, Johannes Lapidus, Alla Copeland, Alex Glavina Del Rio, Tijana Nolan, Matt Lucas, Susan Chen, Feng Tice, Hope Cheng, Jan-Fang Saunders, Elizabeth Bruce, David Goodwin, Lynne Pitluck, Sam Ovchinnikova, Galina Pati, Amrita Ivanova, Natalia Mavromatis, Konstantinos Chen, Amy Palaniappan, Krishna Chain, Patrick Land, Miriam Hauser, Loren Chang, Yun-Juan Jeffries, Cynthia D. Brettin, Thomas Detter, John C. Han, Cliff Rohde, Manfred Lang, Elke Spring, Stefan Göker, Markus Bristow, Jim Eisen, Jonathan A. Markowitz, Victor Hugenholtz, Philip Kyrpides, Nikos C. Klenk, Hans-Peter |
author_facet | Sikorski, Johannes Lapidus, Alla Copeland, Alex Glavina Del Rio, Tijana Nolan, Matt Lucas, Susan Chen, Feng Tice, Hope Cheng, Jan-Fang Saunders, Elizabeth Bruce, David Goodwin, Lynne Pitluck, Sam Ovchinnikova, Galina Pati, Amrita Ivanova, Natalia Mavromatis, Konstantinos Chen, Amy Palaniappan, Krishna Chain, Patrick Land, Miriam Hauser, Loren Chang, Yun-Juan Jeffries, Cynthia D. Brettin, Thomas Detter, John C. Han, Cliff Rohde, Manfred Lang, Elke Spring, Stefan Göker, Markus Bristow, Jim Eisen, Jonathan A. Markowitz, Victor Hugenholtz, Philip Kyrpides, Nikos C. Klenk, Hans-Peter |
author_sort | Sikorski, Johannes |
collection | PubMed |
description | Sulfurospirillum deleyianum Schumacher et al. 1993 is the type species of the genus Sulfurospirillum. S. deleyianum is a model organism for studying sulfur reduction and dissimilatory nitrate reduction as an energy source for growth. Also, it is a prominent model organism for studying the structural and functional characteristics of cytochrome c nitrite reductase. Here, we describe the features of this organism, together with the complete genome sequence and annotation. This is the first completed genome sequence of the genus Sulfurospirillum. The 2,306,351 bp long genome with its 2,291 protein-coding and 52 RNA genes is part of the Genomic Encyclopedia of Bacteria and Archaea project. |
format | Text |
id | pubmed-3035281 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2010 |
publisher | Michigan State University |
record_format | MEDLINE/PubMed |
spelling | pubmed-30352812011-02-08 Complete genome sequence of Sulfurospirillum deleyianum type strain (5175(T)) Sikorski, Johannes Lapidus, Alla Copeland, Alex Glavina Del Rio, Tijana Nolan, Matt Lucas, Susan Chen, Feng Tice, Hope Cheng, Jan-Fang Saunders, Elizabeth Bruce, David Goodwin, Lynne Pitluck, Sam Ovchinnikova, Galina Pati, Amrita Ivanova, Natalia Mavromatis, Konstantinos Chen, Amy Palaniappan, Krishna Chain, Patrick Land, Miriam Hauser, Loren Chang, Yun-Juan Jeffries, Cynthia D. Brettin, Thomas Detter, John C. Han, Cliff Rohde, Manfred Lang, Elke Spring, Stefan Göker, Markus Bristow, Jim Eisen, Jonathan A. Markowitz, Victor Hugenholtz, Philip Kyrpides, Nikos C. Klenk, Hans-Peter Stand Genomic Sci Short Genome Reports Sulfurospirillum deleyianum Schumacher et al. 1993 is the type species of the genus Sulfurospirillum. S. deleyianum is a model organism for studying sulfur reduction and dissimilatory nitrate reduction as an energy source for growth. Also, it is a prominent model organism for studying the structural and functional characteristics of cytochrome c nitrite reductase. Here, we describe the features of this organism, together with the complete genome sequence and annotation. This is the first completed genome sequence of the genus Sulfurospirillum. The 2,306,351 bp long genome with its 2,291 protein-coding and 52 RNA genes is part of the Genomic Encyclopedia of Bacteria and Archaea project. Michigan State University 2010-03-24 /pmc/articles/PMC3035281/ /pubmed/21304697 http://dx.doi.org/10.4056/sigs.671209 Text en http://creativecommons.org/licenses/by/2.5/ 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 work is properly cited. |
spellingShingle | Short Genome Reports Sikorski, Johannes Lapidus, Alla Copeland, Alex Glavina Del Rio, Tijana Nolan, Matt Lucas, Susan Chen, Feng Tice, Hope Cheng, Jan-Fang Saunders, Elizabeth Bruce, David Goodwin, Lynne Pitluck, Sam Ovchinnikova, Galina Pati, Amrita Ivanova, Natalia Mavromatis, Konstantinos Chen, Amy Palaniappan, Krishna Chain, Patrick Land, Miriam Hauser, Loren Chang, Yun-Juan Jeffries, Cynthia D. Brettin, Thomas Detter, John C. Han, Cliff Rohde, Manfred Lang, Elke Spring, Stefan Göker, Markus Bristow, Jim Eisen, Jonathan A. Markowitz, Victor Hugenholtz, Philip Kyrpides, Nikos C. Klenk, Hans-Peter Complete genome sequence of Sulfurospirillum deleyianum type strain (5175(T)) |
title | Complete genome sequence of Sulfurospirillum deleyianum type strain (5175(T)) |
title_full | Complete genome sequence of Sulfurospirillum deleyianum type strain (5175(T)) |
title_fullStr | Complete genome sequence of Sulfurospirillum deleyianum type strain (5175(T)) |
title_full_unstemmed | Complete genome sequence of Sulfurospirillum deleyianum type strain (5175(T)) |
title_short | Complete genome sequence of Sulfurospirillum deleyianum type strain (5175(T)) |
title_sort | complete genome sequence of sulfurospirillum deleyianum type strain (5175(t)) |
topic | Short Genome Reports |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3035281/ https://www.ncbi.nlm.nih.gov/pubmed/21304697 http://dx.doi.org/10.4056/sigs.671209 |
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