Candidatus Vulcanisaeta moutnovskia


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Citation

Formal styling
Candidatus Vulcanisaeta moutnovskia” Gumerov et al., 2011
Effective publication
Gumerov et al., 2011
SeqCode status
Automated discovery
Canonical URL
https://seqco.de/i:526

Nomenclature

Rank
Species
Syllabication
mout.novs.kia
Etymology
moutnovskia
Nomenclatural type
NCBI Assembly: GCA_000190315.1

Taxonomy

Description
Isolated from the solfataric field close to Moutnovsky volcano in Kamchatka, Russia.
Classification
Archaea » Nitrososphaerota » Conexivisphaeria » Conexivisphaerales » Conexivisphaeraceae » Vulcanisaeta » Candidatus Vulcanisaeta moutnovskia
Parent
Vulcanisaeta ncbigtdb

Genomics

Accession
NCBI Assembly:GCA_000190315.1
Estimated Quality Metrics
  • Completeness: 96.2%
  • Contamination: 0.0%
  • Quality: 96.2
Ribosomal and transfer RNA genes
  • 1 16S rRNA (up to 100.0%)
  • 1 23S rRNA (up to 100.0%)
  • tRNAs for 20 amino acids
Other features
  • G+C Content: 42.39%
  • Coding Density: 90.64%
  • Codon Table: 11
  • N50: 2,298,983 bp
  • Contigs: 1
  • Largest Contig: 2,298,983 bp
  • Assembly Length: 2,298,983 bp
  • Ambiguous Assembly Fraction: 0.0%
Automated checks
Complete
See additional details

Metadata

Outside links and data sources
Search sequences
Local history
Registered by
Excubia bot about 4 years ago

Publications
4

Citation Title
Yakimov, 2020, Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature Faculty Opinions recommendation of Dissimilatory sulfate reduction in the archaeon 'Candidatus Vulcanisaeta moutnovskia' sheds light on the evolution of sulfur metabolism
Chernyh et al., 2020, Nature Microbiology Dissimilatory sulfate reduction in the archaeon ‘Candidatus Vulcanisaeta moutnovskia’ sheds light on the evolution of sulfur metabolism
Chernyh et al., 2020, A Simple and Rapid System for Proteomic Analysis of the Archaeon Candidatus Vulcanisaeta moutnovskia
Gumerov et al., 2011, Journal of Bacteriology Complete Genome Sequence of “Vulcanisaeta moutnovskia” Strain 768-28, a Novel Member of the Hyperthermophilic Crenarchaeal Genus Vulcanisaeta
Effective publication



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