Staphylococcus aureus CCUG 55880 is an aerobe, mesophilic prokaryote of the family Staphylococcaceae.
aerobe mesophilic| @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 | Growth | Type | Temperature (°C) | Range | |
|---|---|---|---|---|---|
| 60773 | positive | growth | 37 | mesophilic |
| 60773 | Oxygen toleranceaerobe |
| @ref | Chebi-ID | Metabolite | Utilization activity | Kind of utilization tested | |
|---|---|---|---|---|---|
| 68375 | 22599 ChEBI | arabinose | - | fermentation | from API ID32STA |
| 68375 | 29016 ChEBI | arginine | + | hydrolysis | from API ID32STA |
| 68375 | 17057 ChEBI | cellobiose | - | fermentation | from API ID32STA |
| 68375 | 15824 ChEBI | D-fructose | + | fermentation | from API ID32STA |
| 68375 | 17634 ChEBI | D-glucose | + | fermentation | from API ID32STA |
| 68375 | 16899 ChEBI | D-mannitol | + | fermentation | from API ID32STA |
| 68375 | 16024 ChEBI | D-mannose | + | fermentation | from API ID32STA |
| 68375 | 16988 ChEBI | D-ribose | - | fermentation | from API ID32STA |
| 68375 | 4853 ChEBI | esculin | - | hydrolysis | from API ID32STA |
| 68375 | 17716 ChEBI | lactose | + | fermentation | from API ID32STA |
| 68375 | 17306 ChEBI | maltose | + | fermentation | from API ID32STA |
| 68375 | 59640 ChEBI | N-acetylglucosamine | + | fermentation | from API ID32STA |
| 68375 | 17632 ChEBI | nitrate | + | reduction | from API ID32STA |
| 68375 | 18257 ChEBI | ornithine | - | degradation | from API ID32STA |
| 68375 | 16634 ChEBI | raffinose | - | fermentation | from API ID32STA |
| 68375 | 17992 ChEBI | sucrose | + | fermentation | from API ID32STA |
| 68375 | 27082 ChEBI | trehalose | + | fermentation | from API ID32STA |
| 68375 | 32528 ChEBI | turanose | + | fermentation | from API ID32STA |
| 68375 | 16199 ChEBI | urea | - | hydrolysis | from API ID32STA |
| @ref | ChEBI | Metabolite | Is antibiotic | Is sensitive | Sensitivity conc. | |
|---|---|---|---|---|---|---|
| 68375 | 28368 | novobiocin | 1.8 µg | from API ID32STA |
| @ref | Chebi-ID | Metabolite | Production | |
|---|---|---|---|---|
| 68375 | 15688 ChEBI | acetoin | from API ID32STA |
| @ref | Chebi-ID | Metabolite | Voges-proskauer-test | |
|---|---|---|---|---|
| 68375 | 15688 ChEBI | acetoin | + | from API ID32STA |
| @ref | Value | Activity | Ec | |
|---|---|---|---|---|
| 68375 | alkaline phosphatase | + | 3.1.3.1 | from API ID32STA |
| 68375 | arginine dihydrolase | + | 3.5.3.6 | from API ID32STA |
| 68375 | beta-galactosidase | - | 3.2.1.23 | from API ID32STA |
| 68375 | beta-glucosidase | - | 3.2.1.21 | from API ID32STA |
| 68375 | beta-glucuronidase | - | 3.2.1.31 | from API ID32STA |
| 68375 | L-arginine arylamidase | - | from API ID32STA | |
| 68375 | ornithine decarboxylase | - | 4.1.1.17 | from API ID32STA |
| 68375 | pyrrolidonyl arylamidase | + | 3.4.19.3 | from API ID32STA |
| 68375 | urease | - | 3.5.1.5 | from API ID32STA |
| Topic | Title | Authors | Journal | DOI | Year | |
|---|---|---|---|---|---|---|
| Comparative performance of BD-BACTEC® Mycosis IC/F versus standard aerobic and anaerobic bottles in simulated fungemia and mixed bloodstream infections. | Borges JCE, Siqueira LPM, Freitas VLT, Oliveira VF, Magri ASGK, Silva Junior ARD, Araujo EDMPA, Cury AP, Magri MMC. | Rev Inst Med Trop Sao Paulo | 10.1590/s1678-9946202567064 | 2025 | ||
| Intra-wound versus systemic vancomycin for preventing surgical site infection induced by methicillin-resistant S. aureus after spinal implant surgery in a rat model. | Wei J, Gu H, Tong K. | J Orthop Surg Res | 10.1186/s13018-023-03779-5 | 2023 | ||
| Biotechnology | Validation of the Peel Plate Staphylococcus Aureus (SA) Test for Enumeration of S. aureus in Selected Foods and Non-Cultured Dairy Products: AOAC Performance Tested MethodSM 082401. | Salter RS, Durbin GW, Li S, Gilbert M, Crowley ES, Deterding A, Bastin B. | J AOAC Int | 10.1093/jaoacint/qsae083 | 2025 | |
| Burdock-Derived Composites Based on Biogenic Gold, Silver Chloride and Zinc Oxide Particles as Green Multifunctional Platforms for Biomedical Applications and Environmental Protection. | Zgura I, Badea N, Enculescu M, Maraloiu VA, Ungureanu C, Barbinta-Patrascu ME. | Materials (Basel) | 10.3390/ma16031153 | 2023 | ||
| Influence of biopolymer based gold nanoparticles and photobiomodulation in in vitro wound healing. | Dhilip Kumar SS, Nadene Houreld N, Abrahamse H. | Sci Rep | 10.1038/s41598-025-99400-2 | 2025 | ||
| Prevalence and antibiotic resistance of Staphylococcus aureus and Escherichia coli isolated from raw milk in East Java, Indonesia. | Tyasningsih W, Ramandinianto SC, Ansharieta R, Witaningrum AM, Permatasari DA, Wardhana DK, Effendi MH, Ugbo EN. | Vet World | 10.14202/vetworld.2022.2021-2028 | 2022 | ||
| Bioactive Hybrids Containing Artificial Cell Membranes and Phyto-Gold-Silver Chloride Bio-Nanoparticles. | Barbinta-Patrascu ME, Nichita C, Enculescu M, Maraloiu VA, Bacalum M, Ungureanu C, Negrila CC, Zgura I. | Int J Mol Sci | 10.3390/ijms252211929 | 2024 | ||
| Structural Analysis of Cu+ and Cu2+ Ions in Zeolite as a Nanoreactor with Antibacterial Applications. | Flores-Valenzuela J, Leal-Perez JE, Almaral-Sanchez JL, Hurtado-Macias A, Borquez-Mendivil A, Vargas-Ortiz RA, Garcia-Grajeda BA, Duran-Perez SA, Cortez-Valadez M. | ACS Omega | 10.1021/acsomega.3c03869 | 2023 | ||
| Local Application of Vancomycin in One-Stage Revision of Prosthetic Joint Infection Caused by Methicillin-Resistant Staphylococcus aureus. | Wei J, Wen Y, Tong K, Wang H, Chen L. | Antimicrob Agents Chemother | 10.1128/aac.00303-21 | 2021 | ||
| Biotechnology | Potential of Metschnikowia yeasts in green applications: a review. | Liu J, Rygala A, Zhang B, Kregiel D. | Front Microbiol | 10.3389/fmicb.2025.1652494 | 2025 | |
| Current therapeutic interventions combating biofilm-related infections in orthopaedics : a systematic review of in vivo animal studies. | Li J, Cheung WH, Chow SK, Ip M, Leung SYS, Wong RMY. | Bone Joint Res | 10.1302/2046-3758.1110.bjr-2021-0495.r3 | 2022 | ||
| Antibiogram, prevalence of methicillin-resistant and multi-drug resistant Staphylococcus spp. in different clinical samples. | Moglad EH, Altayb HN. | Saudi J Biol Sci | 10.1016/j.sjbs.2022.103432 | 2022 | ||
| Extracts from the Leaf of Couroupita guianensis (Aubl.): Phytochemical, Toxicological Analysis and Evaluation of Antioxidant and Antimicrobial Activities against Oral Microorganisms. | Augusco MAC, Sarri DA, Panontin JF, Rodrigues MAM, Fernandes RMN, Silva JFMD, Cardoso CAL, Rambo MKD, Scapin E. | Plants (Basel) | 10.3390/plants12122327 | 2023 | ||
| Inhibitory Activity of Saussurea costus Extract against Bacteria, Candida, Herpes, and SARS-CoV-2. | Idriss H, Siddig B, Gonzalez-Maldonado P, Elkhair HM, Alakhras AI, Abdallah EM, Elzupir AO, Sotelo PH. | Plants (Basel) | 10.3390/plants12030460 | 2023 | ||
| Usefulness of BioFire FilmArray BCID2 for Blood Culture Processing in Clinical Practice. | Berinson B, Both A, Berneking L, Christner M, Lutgehetmann M, Aepfelbacher M, Rohde H. | J Clin Microbiol | 10.1128/jcm.00543-21 | 2021 | ||
| A survey of elastase-producing bacteria and characteristics of the most potent producer, Priestia megaterium gasm32. | AlShaikh-Mubarak GA, Kotb E, Alabdalall AH, Aldayel MF. | PLoS One | 10.1371/journal.pone.0282963 | 2023 | ||
| Antimicrobial activity of customary medicinal plants of the Yaegl Aboriginal community of northern New South Wales, Australia: a preliminary study. | Packer J, Naz T, Yaegl Community Elders, Harrington D, Jamie JF, Vemulpad SR. | BMC Res Notes | 10.1186/s13104-015-1258-x | 2015 | ||
| Clinico-microbiological study and antibiotic resistance profile of mecA and ESBL gene prevalence in patients with diabetic foot infections. | Chaudhry WN, Badar R, Jamal M, Jeong J, Zafar J, Andleeb S. | Exp Ther Med | 10.3892/etm.2016.2996 | 2016 | ||
| Synthesis and Evaluation of Troponoids as a New Class of Antibiotics. | Cao F, Orth C, Donlin MJ, Adegboyega P, Meyers MJ, Murelli RP, Elagawany M, Elgendy B, Tavis JE. | ACS Omega | 10.1021/acsomega.8b01754 | 2018 | ||
| Pathogenicity | Toxicity and oviposition deterrence of essential oils of Clinopodium nubigenum and Lavandula angustifolia against the myiasis-inducing blowfly Lucilia sericata. | Bedini S, Flamini G, Cosci F, Ascrizzi R, Echeverria MC, Gomez EV, Guidi L, Landi M, Lucchi A, Conti B. | PLoS One | 10.1371/journal.pone.0212576 | 2019 | |
| Phytochemical Profile and Antibacterial and Antioxidant Activities of Medicinal Plants Used by Aboriginal People of New South Wales, Australia. | Akter K, Barnes EC, Brophy JJ, Harrington D, Community Elders Y, Vemulpad SR, Jamie JF. | Evid Based Complement Alternat Med | 10.1155/2016/4683059 | 2016 | ||
| Enzymology | Detection of antimicrobial resistance genes associated with the International Space Station environmental surfaces. | Urbaniak C, Sielaff AC, Frey KG, Allen JE, Singh N, Jaing C, Wheeler K, Venkateswaran K. | Sci Rep | 10.1038/s41598-017-18506-4 | 2018 | |
| Pathogenicity | Evaluation of Oxacillin and Cefoxitin Disk and MIC Breakpoints for Prediction of Methicillin Resistance in Human and Veterinary Isolates of Staphylococcus intermedius Group. | Wu MT, Burnham CA, Westblade LF, Dien Bard J, Lawhon SD, Wallace MA, Stanley T, Burd E, Hindler J, Humphries RM. | J Clin Microbiol | 10.1128/jcm.02864-15 | 2016 | |
| Allium sativum, Rosmarinus officinalis, and Salvia officinalis Essential Oils: A Spiced Shield against Blowflies. | Bedini S, Guarino S, Echeverria MC, Flamini G, Ascrizzi R, Loni A, Conti B. | Insects | 10.3390/insects11030143 | 2020 | ||
| Metabolism | Conserved Patterns of Microbial Immune Escape: Pathogenic Microbes of Diverse Origin Target the Human Terminal Complement Inhibitor Vitronectin via a Single Common Motif. | Hallstrom T, Singh B, Kraiczy P, Hammerschmidt S, Skerka C, Zipfel PF, Riesbeck K. | PLoS One | 10.1371/journal.pone.0147709 | 2016 | |
| Pathogenicity | Artemisia spp. essential oils against the disease-carrying blowfly Calliphora vomitoria. | Bedini S, Flamini G, Cosci F, Ascrizzi R, Echeverria MC, Guidi L, Landi M, Lucchi A, Conti B. | Parasit Vectors | 10.1186/s13071-017-2006-y | 2017 | |
| Antimicrobial Activity of MgB2 Powders Produced via Reactive Liquid Infiltration Method. | Padhi SK, Baglieri N, Bonino V, Agostino A, Operti L, Batalu ND, Chifiriuc MC, Popa M, Burdusel M, Grigoroscuta MA, Aldica GV, Radu D, Badica P, Truccato M | Molecules | 10.3390/molecules26164966 | 2021 | ||
| Antibacterial activity of garlic extract on streptomycin-resistant Staphylococcus aureus and Escherichia coli solely and in synergism with streptomycin. | Palaksha MN, Ahmed M, Das S | J Nat Sci Biol Med | 10.4103/0976-9668.71666 | 2010 | ||
| Pathogenicity | Phytochemical Discrimination, Biological Activity and Molecular Docking of Water-Soluble Inhibitors from Saussurea costus Herb against Main Protease of SARS-CoV-2. | Idriss H, Siddig B, Maldonado PG, Elkhair HM, Alakhras AI, Abdallah EM, Torres PHS, Elzupir AO | Molecules | 10.3390/molecules27154908 | 2022 |
| #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 ) |
| #60773 | Culture Collection University of Gothenburg (CCUG) ; Curators of the CCUG; CCUG 55880 |
| #68375 | Automatically annotated from API ID32STA . |
| #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 ) |
You found an error in BacDive? Please tell us about it!
Note that changes will be reviewed and judged. If your changes are legitimate, changes will occur within the next BacDive update. Only proposed changes supported by the according reference will be reviewed. The BacDive team reserves the right to reject proposed changes.
Successfully sent
If you want to cite this particular strain cite the following doi:
https://doi.org/10.13145/bacdive154962.20251217.10
When using BacDive for research please cite the following paper
BacDive in 2025: the core database for prokaryotic strain data