Kingdom
Pseudomonadati
Phylum
Pseudomonadota
Class
Gammaproteobacteria
Order
Enterobacterales
Family
Erwiniaceae
Genus
Erwinia
Description
Taxonomy
| Kingdom | Pseudomonadati |
|---|---|
| Phylum | Pseudomonadota |
| Class | Gammaproteobacteria |
| Order | Enterobacterales |
| Family | Erwiniaceae |
| Genus | Erwinia |
| Species | Erwinia persicina |
| Strain | No strain |
Profile
| Physiology | |
|---|---|
| Gram staining properties | Not Available |
| Shape | Not Available |
| Mobility | Not Available |
| Flagellar presence | Not Available |
| Number of membranes | Not Available |
| Ecology, Host, and Life Cycle | |
|---|---|
| Oxygen requirements | Not Available |
| Optimal temperature | Not Available |
| Temperature range | Not Available |
| Habitat | Not Available |
| Biotic relationship | Not Available |
| Host(s) | Not Available |
| Cell arrangement | Not Available |
| Sporulation | Not Available |
| Energy source | Not Available |
| Pathogenicity | Not Available |
Genome Summary
Erwinia persicina str. B64
Accession NumberNZ_CP022727.1
Gene Summary
Adenine Count
Not Available
Thymine Count
Not Available
Guanine Count
Not Available
Cytosine Count
Not Available
Genome Length
Not Available
Protein-coding Genes
126 genes
Non-Coding Genes
0 genes
# of Chromosomes/Plasmids
1
Genes
| Name | Locus Tag | UniProt | Strand | Coordinates | Molecular Weight |
|---|---|---|---|---|---|
| llm class flavin-dependent oxidoreductase | CI789_RS24060 | Not Available | - | 122130 - 123479 | 49265.2 |
| mmge/prpd family protein | CI789_RS24065 | Not Available | - | 123495 - 124793 | 45995.4 |
| peptide-methionine (s)-s-oxide reductase msra | CI789_RS24070 | Not Available | + | 125101 - 125637 | 19520.5 |
| mfs transporter | CI789_RS24075 | Not Available | - | 125767 - 126768 | 35293.7 |
| para family partition atpase | CI789_RS24085 | Not Available | + | 127657 - 128283 | 22404.2 |
| plasmid partition protein parg | CI789_RS24090 | Not Available | + | 128280 - 128492 | 8020.8 |
Pathways
0 pathways
No pathways found
No metabolic pathways have been associated with this bacterium yet.
