Staphylococcus aureus CCUG 2351 is a prokaryote of the family Staphylococcaceae.
genome sequence| @ref 20215 |
|
|
| Domain Bacillati |
| Phylum Bacillota |
| Class Bacilli |
| Order Caryophanales |
| Family Staphylococcaceae |
| Genus Staphylococcus |
| Species Staphylococcus aureus |
| Full scientific name Staphylococcus aureus Rosenbach 1884 (Approved Lists 1980) |
| Synonyms (2) |
| @ref | Gram stain | Confidence | |
|---|---|---|---|
| 125439 | positive | 91.9 |
| @ref | Spore formation | Confidence | |
|---|---|---|---|
| 125439 | 90.9 |
| @ref | Description | Assembly level | INSDC accession | BV-BRC accession | NCBI tax ID | Score | |
|---|---|---|---|---|---|---|---|
| 66792 | 40757_B01 assembly for Staphylococcus aureus NCTC5655 | contig | 1280 | 74.23 |
| @ref | Trait | Model | Prediction | Confidence in % | In training data |
|---|---|---|---|---|---|
| 125439 | oxygen_tolerance | BacteriaNetⓘ | obligate anaerobe | 85.60 | no |
| 125439 | gram_stain | BacteriaNetⓘ | positive | 91.90 | no |
| 125439 | motility | BacteriaNetⓘ | no | 73.90 | no |
| 125439 | spore_formation | BacteriaNetⓘ | no | 90.90 | no |
| @ref | Trait | Model | Prediction | Confidence in % | In training data |
|---|---|---|---|---|---|
| 125438 | gram-positive | gram-positiveⓘ | yes | 85.70 | no |
| 125438 | anaerobic | anaerobicⓘ | no | 99.44 | no |
| 125438 | spore-forming | spore-formingⓘ | no | 71.29 | no |
| 125438 | aerobic | aerobicⓘ | no | 53.06 | no |
| 125438 | thermophilic | thermophileⓘ | no | 94.74 | no |
| 125438 | flagellated | motile2+ⓘ | no | 79.89 | no |
| Topic | Title | Authors | Journal | DOI | Year | |
|---|---|---|---|---|---|---|
| Antimicrobial Activity of Quercetin, Naringenin and Catechin: Flavonoids Inhibit Staphylococcus aureus-Induced Hemolysis and Modify Membranes of Bacteria and Erythrocytes. | Veiko AG, Olchowik-Grabarek E, Sekowski S, Roszkowska A, Lapshina EA, Dobrzynska I, Zamaraeva M, Zavodnik IB. | Molecules | 10.3390/molecules28031252 | 2023 | ||
| Antibacterial and Antihemolytic Activity of New Biomaterial Based on Glycyrrhizic Acid and Quercetin (GAQ) against Staphylococcus aureus. | Olchowik-Grabarek E, Czerkas K, Matchanov AD, Esanov RS, Matchanov UD, Zamaraeva M, Sekowski S. | J Funct Biomater | 10.3390/jfb14070368 | 2023 | ||
| Cholera Outbreaks in Zimbabwe: An In-Depth Analysis of Drivers, Constraints and Reimagining the Use of Medicinal Plants. | Marumure J, Nyila MA. | J Trop Med | 10.1155/jotm/1981991 | 2024 | ||
| The Structural Changes in the Membranes of Staphylococcus aureus Caused by Hydrolysable Tannins Witness Their Antibacterial Activity. | Olchowik-Grabarek E, Sekowski S, Kwiatek A, Placzkiewicz J, Abdulladjanova N, Shlyonsky V, Swiecicka I, Zamaraeva M. | Membranes (Basel) | 10.3390/membranes12111124 | 2022 | ||
| Interaction of Rhus typhina Tannin with Lipid Nanoparticles: Implication for the Formulation of a Tannin-Liposome Hybrid Biomaterial with Antibacterial Activity. | Sekowski S, Naziris N, Chountoulesi M, Olchowik-Grabarek E, Czerkas K, Veiko A, Abdulladjanova N, Demetzos C, Zamaraeva M. | J Funct Biomater | 10.3390/jfb14060296 | 2023 | ||
| Bioactive Compounds from Plant Origin as Natural Antimicrobial Agents for the Treatment of Wound Infections. | Pacyga K, Pacyga P, Topola E, Viscardi S, Duda-Madej A. | Int J Mol Sci | 10.3390/ijms25042100 | 2024 | ||
| Metabolism | Expression of clumping and fibrinogen-binding activities of Staphylococcus aureus at various growth stages. | Yonemasu K, Sasaki T, Ohmae R, Kashiba S. | Microbiol Immunol | 10.1111/j.1348-0421.1991.tb01571.x | 1991 | |
| Virulent combinations of adhesin and toxin genes in natural populations of Staphylococcus aureus. | Peacock SJ, Moore CE, Justice A, Kantzanou M, Story L, Mackie K, O'Neill G, Day NP. | Infect Immun | 10.1128/iai.70.9.4987-4996.2002 | 2002 | ||
| Metabolism | Determination of staphylococcal enterotoxin A in cheddar cheese produced without starter activity. | Ibrahim GF, Radford HM, Fell LR. | Appl Environ Microbiol | 10.1128/aem.39.6.1134-1137.1980 | 1980 | |
| Pathogenicity | Inhibition of interaction between Staphylococcus aureus alpha-hemolysin and erythrocytes membrane by hydrolysable tannins: structure-related activity study. | Olchowik-Grabarek E, Sekowski S, Bitiucki M, Dobrzynska I, Shlyonsky V, Ionov M, Burzynski P, Roszkowska A, Swiecicka I, Abdulladjanova N, Zamaraeva M | Sci Rep | 10.1038/s41598-020-68030-1 | 2020 |
| #20215 | Parte, A.C., Sardà Carbasse, J., Meier-Kolthoff, J.P., Reimer, L.C. and Göker, M.: List of Prokaryotic names with Standing in Nomenclature (LPSN) moves to the DSMZ. IJSEM ( DOI 10.1099/ijsem.0.004332 ) |
| #44524 | Culture Collection University of Gothenburg (CCUG) ; Curators of the CCUG; CCUG 2351 |
| #66792 | Julia Koblitz, Joaquim Sardà, Lorenz Christian Reimer, Boyke Bunk, Jörg Overmann: Automatically annotated for the DiASPora project (Digital Approaches for the Synthesis of Poorly Accessible Biodiversity Information) . |
| #125438 | Julia Koblitz, Lorenz Christian Reimer, Rüdiger Pukall, Jörg Overmann: Predicting bacterial phenotypic traits through improved machine learning using high-quality, curated datasets. 2024 ( DOI 10.1101/2024.08.12.607695 ) |
| #125439 | Philipp Münch, René Mreches, Martin Binder, Hüseyin Anil Gündüz, Xiao-Yin To, Alice McHardy: deepG: Deep Learning for Genome Sequence Data. R package version 0.3.1 . |
| #126262 | A. Lissin, I. Schober, J. F. Witte, H. Lüken, A. Podstawka, J. Koblitz, B. Bunk, P. Dawyndt, P. Vandamme, P. de Vos, J. Overmann, L. C. Reimer: StrainInfo—the central database for linked microbial strain identifiers. ( DOI 10.1093/database/baaf059 ) |
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https://doi.org/10.13145/bacdive141491.20251217.10
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BacDive in 2025: the core database for prokaryotic strain data