Reveal the molecular mechanisms of phenolic compound degradation of Sphingobium fuliginis strain OMI.
Accession | PRJDB6392 |
Data Type | Genome sequencing and assembly |
Scope | Monoisolate |
Organism | Sphingobium fuliginis[Taxonomy ID: 336203] Bacteria; Pseudomonadota; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingobium; Sphingobium fuliginis |
Publications | - Ogata Y et al., "The 4-tert-butylphenol-utilizing bacterium Sphingobium fuliginis OMI can degrade bisphenols via phenolic ring hydroxylation and meta-cleavage pathway.", Environ Sci Technol, 2013 Jan 15;47(2):1017-23
- Ogata Y et al., "Occurrence of 4-tert-butylphenol (4-t-BP) biodegradation in an aquatic sample caused by the presence of Spirodela polyrrhiza and isolation of a 4-t-BP-utilizing bacterium.", Biodegradation, 2013 Apr;24(2):191-202
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Submission | Registration date: 23-Oct-2017 Bio-Environmental Engineering Lab, Department of Sustainable Energy and environmental Engineering, Graduate School of Engineering, Osaka university |
Relevance | Environmental |
Locus Tag Prefix | SFOMI |
Project Data:
Resource Name | Number of Links |
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Sequence data |
Nucleotide (total) | 35 |
WGS master | 1 |
Protein Sequences | 5315 |
Publications |
PubMed | 2 |
Other datasets |
BioSample | 1 |
Assembly | 1 |