Bryrupiana terrestrisTs


Citation

Formal styling
Bryrupiana terrestrisTs Sereika et al., 2025
Effective publication
Sereika et al., 2025
SeqCode status
Valid (SeqCode)
Register List
seqco.de/r:kohim6k6 (validated)
Canonical URL
https://seqco.de/i:54458

Nomenclature

Rank
Species
Syllabication
ter.res'tris
Etymology
L. fem. adj. terrestris, A species found in soil
Nomenclatural type
NCBI Assembly: GCA_963741145.1
Nomenclatural status
Validly published under the SeqCode

Taxonomy

Description
Species established on the basis of ANI comparisons to GTDB R226 and 16S rRNA classifications to Silva 138.2. Formerly "uncultured Methylocystaceae bacterium" in Silva 138.2. Based on metabolic reconstruction, Bryrupiana terrestris is inferred to encode the rod shape-determining protein MreB and peptidoglycan biosynthesis genes.
Classification
Bacteria » Actinomycetota » Bonnerupiia » Granslevivitales » Granslevivitaceae » Bryrupiana » Bryrupiana terrestrisTs
Parent
Bryrupiana

Genomics

Accession
NCBI Assembly:GCA_963741145.1
Type
Metagenome-Assembled Genome (MAG)
Estimated Quality Metrics
  • Completeness: 91.28%
  • Contamination: 0.6%
  • Quality: 88.28
Ribosomal and transfer RNA genes
  • 1 16S rRNA (up to 100.0%)
  • 1 23S rRNA (up to 100.0%)
  • tRNAs for 21 amino acids
Sequencing depth
17.0 ×
Source
Other features
  • G+C Content: 70.38%
  • Coding Density: 90.14%
  • Codon Table: 11
  • N50: 924,065 bp
  • Contigs: 8
  • Largest Contig: 1,266,743 bp
  • Assembly Length: 3,002,359 bp
  • Ambiguous Assembly Fraction: 0.0%
Submitter comments
Completeness and contamination estimates are by CheckM2
Automated checks
Complete

Last modified 9 months ago

Metadata

Outside links and data sources
Search sequences
Local history
Registered
9 months ago and claimed 9 months ago by Sereika, Mantas
Submitted
9 months ago by Sereika, Mantas
Curators
Validated
3 days ago by Palmer, Marike
Date of priority
2025-10-06 05:40 AM (UTC)

Publications
1

Citation Title
Sereika et al., 2025, Nature Microbiology Genome-resolved long-read sequencing expands known microbial diversity across terrestrial habitats
Effective publication



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