Genome sequence of Prosthecochloris sp. strain HL-130-GSB from the phylum Chlorobi

The genome of the green sulfur bacterium Prosthecochloris sp. strain HL-130-GSB, isolated from a cyanobacterial mat obtained from Hot Lake, a saline meromictic lake in Washington, USA, comprises 2,437,774 bp in a single contig. The genome is predicted to encode 2,565 proteins and contain 47 tRNA gen...

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Main Authors: Thiel, Vera, Bryant, Donald A., Drautz-Moses, Daniela Isabel, Purbojati, Rikky Wenang, Schuster, Stephan Christoph, Lindemann, Stephan
Other Authors: Singapore Centre for Environmental Life Sciences and Engineering
Format: Article
Language:English
Published: 2019
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Online Access:https://hdl.handle.net/10356/92275
http://hdl.handle.net/10220/50199
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-922752020-09-21T11:32:49Z Genome sequence of Prosthecochloris sp. strain HL-130-GSB from the phylum Chlorobi Thiel, Vera Bryant, Donald A. Drautz-Moses, Daniela Isabel Purbojati, Rikky Wenang Schuster, Stephan Christoph Lindemann, Stephan Singapore Centre for Environmental Life Sciences and Engineering Phylum Chlorobi Prosthecochloris Science::Biological sciences The genome of the green sulfur bacterium Prosthecochloris sp. strain HL-130-GSB, isolated from a cyanobacterial mat obtained from Hot Lake, a saline meromictic lake in Washington, USA, comprises 2,437,774 bp in a single contig. The genome is predicted to encode 2,565 proteins and contain 47 tRNA genes and 2 rRNA operons. Published version 2019-10-17T06:52:49Z 2019-12-06T18:20:29Z 2019-10-17T06:52:49Z 2019-12-06T18:20:29Z 2017 Journal Article Thiel, V., Drautz-Moses, D. I., Purbojati, R. W., Schuster, S. C., Lindemann, S., & Bryant, D. A. (2017). Genome sequence of Prosthecochloris sp. strain HL-130-GSB from the phylum Chlorobi. Genome Announcements, 5(24), e00538-17-. doi:10.1128/genomeA.00538-17 https://hdl.handle.net/10356/92275 http://hdl.handle.net/10220/50199 10.1128/genomeA.00538-17 en Genome Announcements © 2017 Thiel et al. This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license. 2 p. application/pdf
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic Phylum Chlorobi
Prosthecochloris
Science::Biological sciences
spellingShingle Phylum Chlorobi
Prosthecochloris
Science::Biological sciences
Thiel, Vera
Bryant, Donald A.
Drautz-Moses, Daniela Isabel
Purbojati, Rikky Wenang
Schuster, Stephan Christoph
Lindemann, Stephan
Genome sequence of Prosthecochloris sp. strain HL-130-GSB from the phylum Chlorobi
description The genome of the green sulfur bacterium Prosthecochloris sp. strain HL-130-GSB, isolated from a cyanobacterial mat obtained from Hot Lake, a saline meromictic lake in Washington, USA, comprises 2,437,774 bp in a single contig. The genome is predicted to encode 2,565 proteins and contain 47 tRNA genes and 2 rRNA operons.
author2 Singapore Centre for Environmental Life Sciences and Engineering
author_facet Singapore Centre for Environmental Life Sciences and Engineering
Thiel, Vera
Bryant, Donald A.
Drautz-Moses, Daniela Isabel
Purbojati, Rikky Wenang
Schuster, Stephan Christoph
Lindemann, Stephan
format Article
author Thiel, Vera
Bryant, Donald A.
Drautz-Moses, Daniela Isabel
Purbojati, Rikky Wenang
Schuster, Stephan Christoph
Lindemann, Stephan
author_sort Thiel, Vera
title Genome sequence of Prosthecochloris sp. strain HL-130-GSB from the phylum Chlorobi
title_short Genome sequence of Prosthecochloris sp. strain HL-130-GSB from the phylum Chlorobi
title_full Genome sequence of Prosthecochloris sp. strain HL-130-GSB from the phylum Chlorobi
title_fullStr Genome sequence of Prosthecochloris sp. strain HL-130-GSB from the phylum Chlorobi
title_full_unstemmed Genome sequence of Prosthecochloris sp. strain HL-130-GSB from the phylum Chlorobi
title_sort genome sequence of prosthecochloris sp. strain hl-130-gsb from the phylum chlorobi
publishDate 2019
url https://hdl.handle.net/10356/92275
http://hdl.handle.net/10220/50199
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