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Study

Study Name: Genome sequencing of bacteria contributing to the geochemical cycling of arsenic, bromine, and iodine.

Projects

Biosamples

Organisms

Biosamples: 0 Seq. Projects: 6
STUDY INFORMATION
GOLD Study ID Gs0148975
Study Name Genome sequencing of bacteria contributing to the geochemical cycling of arsenic, bromine, and iodine.
Other Names
NCBI Umbrella Bioproject Name
NCBI Umbrella Bioproject Accession
SRA Studies
SRA Study Id DRP004782  (Link to NCBI )
Study Title Genome sequencing of bacteria contributing to the geochemical cycling of arsenic, bromine, and iodine.
Study Abstract
  
Legacy ER Study ID
Legacy GOLD ID
Added By JGI automated process on 2020-07-06
Last Modified By
PI Unknown
Description To understand the contribution of bacteria to the global biogeochemical cycles of chemical elements (arsenic, bromine, and iodine), we performed whole-genome shotgun sequencing on bacterial strains isolated from soils and marine sediments. Draft genome sequences of an arsenate-reducing bacterium Tepidibacillus sp. HK-1. Draft genome sequences of a bromate-reducing bacterium Rhodococcus sp. Br-6. Draft genome sequences of an iodine-accumulating bacterium Arenibacter sp. C-21.Draft genome sequences of an iodide-oxidizing bacterium Roseovarius sp. A-2.Draft genome sequences of an arsenite-oxidizing bacterium Sinorhizobium sp. KGO-5.Draft genome sequences of an iodate-reducing bacterium Pseudomonas sp. SCT.Draft genome sequences of an antimonate-reducing bacterium Geobacter sp. SbR.Draft genome sequences of a bromate-reducing bacterium Shewanella sp. M-Br.
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Study Information Visibility Public
Metagenomic Study No
Publication
Is GEBA
Is HMP
ECOSYSTEM CLASSIFICATION
Ecosystem
Ecosystem Category
Ecosystem Type
Ecosystem Subtype
Specific Ecosystem
Ecosystem Path ID 1
STUDY COMPOSITION
Number of Biosamples 0
Number of Organisms 6
Number of Seq Projects 6
Number of Analysis Projects 6
Number of Related Studies 0

 

 

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