Micrococcus luteus 130.21 is an obligate aerobe, mesophilic, Gram-positive prokaryote that was isolated from Assay of bacitracin in body fluids.
Gram-positive oval-shaped obligate aerobe mesophilic 16S sequence| @ref 20215 |
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| Domain Bacillati |
| Phylum Actinomycetota |
| Class Actinomycetes |
| Order Micrococcales |
| Family Micrococcaceae |
| Genus Micrococcus |
| Species Micrococcus luteus |
| Full scientific name Micrococcus luteus (Schroeter 1872) Cohn 1872 (Approved Lists 1980) |
| Synonyms (3) |
| @ref | Name | Growth | Medium link | Composition | |
|---|---|---|---|---|---|
| 656 | NUTRIENT AGAR (DSMZ Medium 1) | Medium recipe at MediaDive | Name: NUTRIENT AGAR (DSMZ Medium 1) Composition: Agar 15.0 g/l Peptone 5.0 g/l Meat extract 3.0 g/l Distilled water | ||
| 41170 | MEDIUM 3 - Columbia agar | Columbia agar (39.000 g);distilled water (1000.000 ml) | |||
| 120705 | CIP Medium 3 | Medium recipe at CIP | |||
| 120705 | CIP Medium 72 | Medium recipe at CIP |
| 120705 | Oxygen toleranceobligate aerobe |
| Test 1 | Test 2 | Test 3 | Test 4 | Test 5 | Test 6 | Test 7 | |
|---|---|---|---|---|---|---|---|
| @ref | 656 | 656 | 656 | 656 | 656 | 656 | 656 |
| Medium | Mueller-Hinton Agar | Mueller-Hinton Agar | Mueller-Hinton Agar | Mueller-Hinton Agar | Mueller-Hinton Agar | Mueller Hinton | Mueller Hinton |
| Incubation temperature | 30 | 30 | 30 | 37 | 30 | 30 | |
| Incubation time | 2 | 2 | |||||
| Oxygen condition | aerob | aerob | aerob | aerob | aerob | ||
| Manual_annotation | 1 | 1 | 1 | 1 | 1 | 1 | 1 |
| Inhibition zone diameter in mm | Inhibition zone diameter in mm | Inhibition zone diameter in mm | Inhibition zone diameter in mm | Inhibition zone diameter in mm | Inhibition zone diameter in mm | Inhibition zone diameter in mm | |
| Penicillin G | >50 | 42 | 42-44 | >50 | 40 | 50 | >50 |
| Oxacillin | 30 | 24-26 | 28 | 28-30 | 24 | 28 | 26 |
| Ampicillin | >50 | 42 | 42 | 50 | 40 | 48 | 50 |
| Ticarcillin | >50 | 44-46 | 50 | >50 | 44 | >50 | >50 |
| Mezlocillin | 42-44 | 36-38 | 40 | >50 | 36 | 42-44 | 42 |
| Cefalotin | >50 | 44 | 42-44 | >50 | 40 | 50 | >50 |
| Cefazolin | >50 | 42-44 | 46-48 | >50 | 42 | >50 | 50 |
| Cefotaxime | 50 | 40 | 42 | 50 | 38-40 | 50 | 48-50 |
| Aztreonam | 0 | 0 | 0 | 0 | 0 | 0 | 0 |
| Imipenem | >50 | >50 | >50 | >50 | 50 | >50 | >50 |
| Tetracycline | >50 | 42 | 40-42 | 46 | 38-40 | 44 | 42 |
| Chloramphenicol | >50 | 40 | 44-46 | 50 | 38 | 48 | 46 |
| Gentamycin | 40 | 32-34 | 30 | 38-40 | 30 | 38 | 40 |
| Amikacin | 40 | 34-36 | 34-36 | 44 | 32 | 40-42 | 40-42 |
| Vancomycin | 32 | 28 | 30 | 30 | 26-28 | 28 | 30 |
| Erythromycin | 50 | 36-38 | 40-42 | 50 | 32 | 46-48 | 50 |
| Lincomycin | 48-50 | 36 | 38 | 50 | 32 | 42-44 | 48-50 |
| Ofloxacin | 26-28 | 24-26 | 26-28 | 28 | 22 | 26 | 26 |
| Norfloxacin | 16-18 | 22 | 22-24 | 20 | 16 | 16-18 | 16 |
| Colistin | 10 | 14 | 16 | 12 | 14 | 12 | 10 |
| Pipemidic acid | 0 | 14 | 14 | 8 | 0 | 0 | 0 |
| Nitrofurantoin | 8 | 8-10 | 10 | 0 | 6-8 | 0 | 0 |
| Bacitracin | 48 | 40 | 40 | 46-48 | 38 | 42 | 46 |
| Polymyxin b | 20 | 20 | 18 | 18 | 18 | 20 | 20 |
| Kanamycin | 34 | 30-32 | 30 | 36-38 | 26 | 34-36 | 34 |
| Neomycin | 32 | 30 | 28-30 | 34 | 26 | 32 | 34 |
| Doxycycline | 50 | 42 | 40 | 44 | 36 | 42-44 | 44 |
| Ceftriaxone | >50 | 40 | 40 | 50 | n.d. | 48 | 50 |
| Clindamycin | >50 | 42-44 | 40-42 | >50 | n.d. | 50 | 50 |
| Fosfomycin | 18 | 18 | 22-24 | 12 | n.d. | 16-18 | 10 |
| Moxifloxacin | 38-40 | 32 | 32-34 | 40 | n.d. | 38 | 40 |
| Linezolid | >50 | 42-44 | 40-42 | >50 | n.d. | 50 | 50 |
| Nystatin | 0 | 0 | 0 | 0 | n.d. | 0 | 0 |
| Quinupristin/dalfopristin | 48 | 42 | 42-44 | 46-48 | n.d. | 44-46 | 46 |
| Teicoplanin | 30 | 28-30 | 30 | 28-30 | n.d. | 28 | 30 |
| Piperacillin/tazobactam | 40 | 34-36 | 40 | 40 | n.d. | 40-42 | 42 |
| @ref | Murein short key | Type | |
|---|---|---|---|
| 656 | A11. pep | A2 L-Lys peptide subunit |
| @ref | Value | Activity | Ec | |
|---|---|---|---|---|
| 68382 | acid phosphatase | + | 3.1.3.2 | from API zym |
| 120705 | alcohol dehydrogenase | - | 1.1.1.1 | |
| 68382 | alkaline phosphatase | + | 3.1.3.1 | from API zym |
| 68382 | alpha-chymotrypsin | - | 3.4.21.1 | from API zym |
| 68382 | alpha-fucosidase | - | 3.2.1.51 | from API zym |
| 68382 | alpha-galactosidase | - | 3.2.1.22 | from API zym |
| 68382 | alpha-glucosidase | + | 3.2.1.20 | from API zym |
| 68382 | alpha-mannosidase | - | 3.2.1.24 | from API zym |
| 120705 | amylase | - | ||
| 68382 | beta-galactosidase | - | 3.2.1.23 | from API zym |
| 120705 | beta-galactosidase | + | 3.2.1.23 | |
| 68382 | beta-glucosidase | - | 3.2.1.21 | from API zym |
| 68382 | beta-glucuronidase | - | 3.2.1.31 | from API zym |
| 120705 | caseinase | - | 3.4.21.50 | |
| 120705 | catalase | + | 1.11.1.6 | |
| 120705 | coagulase | - | ||
| 68382 | cystine arylamidase | - | 3.4.11.3 | from API zym |
| 120705 | DNase | - | ||
| 68382 | esterase (C 4) | + | from API zym | |
| 68382 | esterase lipase (C 8) | + | from API zym | |
| 120705 | gamma-glutamyltransferase | - | 2.3.2.2 | |
| 120705 | gelatinase | +/- | ||
| 120705 | lecithinase | - | ||
| 68382 | leucine arylamidase | + | 3.4.11.1 | from API zym |
| 120705 | lipase | - | ||
| 68382 | lipase (C 14) | + | from API zym | |
| 120705 | lysine decarboxylase | - | 4.1.1.18 | |
| 68382 | N-acetyl-beta-glucosaminidase | - | 3.2.1.52 | from API zym |
| 68382 | naphthol-AS-BI-phosphohydrolase | + | from API zym | |
| 120705 | ornithine decarboxylase | - | 4.1.1.17 | |
| 120705 | oxidase | - | ||
| 120705 | phenylalanine ammonia-lyase | - | 4.3.1.24 | |
| 68382 | trypsin | - | 3.4.21.4 | from API zym |
| 120705 | tween esterase | - | ||
| 120705 | urease | + | 3.5.1.5 | |
| 68382 | valine arylamidase | - | from API zym |
| Metadata FA analysis | ||||||||||||||||||||||||||||||||||||||||
| type of FA analysis | whole cell analysis | |||||||||||||||||||||||||||||||||||||||
| method/protocol | CCUG | |||||||||||||||||||||||||||||||||||||||
| @ref | 47536 | |||||||||||||||||||||||||||||||||||||||
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| 47536 | Sample typeAssay of bacitracin in body fluids |
| Topic | Title | Authors | Journal | DOI | Year | |
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| Total synthesis and mechanism of action of the antibiotic armeniaspirol A. | Arisetti N, Fuchs HLS, Coetzee J, Orozco M, Ruppelt D, Bauer A, Heimann D, Kuhnert E, Bhamidimarri SP, Bafna JA, Hinkelmann B, Eckel K, Sieber SA, Muller PP, Herrmann J, Muller R, Winterhalter M, Steinem C, Bronstrup M. | Chem Sci | 10.1039/d1sc04290d | 2021 | ||
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| Specific Binding of the alpha-Component of the Lantibiotic Lichenicidin to the Peptidoglycan Precursor Lipid II Predetermines Its Antimicrobial Activity. | Panina IS, Balandin SV, Tsarev AV, Chugunov AO, Tagaev AA, Finkina EI, Antoshina DV, Sheremeteva EV, Paramonov AS, Rickmeyer J, Bierbaum G, Efremov RG, Shenkarev ZO, Ovchinnikova TV. | Int J Mol Sci | 10.3390/ijms24021332 | 2023 | ||
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| Metabolism | Polyketide-Derived Secondary Metabolites from a Dothideomycetes Fungus, Pseudopalawania siamensisgen. et sp. nov., (Muyocopronales) with Antimicrobial and Cytotoxic Activities. | Mapook A, Macabeo APG, Thongbai B, Hyde KD, Stadler M. | Biomolecules | 10.3390/biom10040569 | 2020 | |
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| Recent Advances in Discovery, Bioengineering, and Bioactivity-Evaluation of Ribosomally Synthesized and Post-translationally Modified Peptides. | Zhong G, Wang ZJ, Yan F, Zhang Y, Huo L. | ACS Bio Med Chem Au | 10.1021/acsbiomedchemau.2c00062 | 2023 | ||
| Six Heterocyclic Metabolites from the Myxobacterium Labilithrix luteola. | Mulwa LS, Jansen R, Praditya DF, Praditya DF, Mohr KI, Wink J, Steinmann E, Stadler M. | Molecules | 10.3390/molecules23030542 | 2018 | ||
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| Insights into in vivo activities of lantibiotics from gallidermin and epidermin mode-of-action studies. | Bonelli RR, Schneider T, Sahl HG, Wiedemann I. | Antimicrob Agents Chemother | 10.1128/aac.50.4.1449-1457.2006 | 2006 | ||
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| Metabolism | Insight into invertebrate defensin mechanism of action: oyster defensins inhibit peptidoglycan biosynthesis by binding to lipid II. | Schmitt P, Wilmes M, Pugniere M, Aumelas A, Bachere E, Sahl HG, Schneider T, Destoumieux-Garzon D. | J Biol Chem | 10.1074/jbc.m110.143388 | 2010 | |
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| Unraveling the Phytochemistry, Traditional Uses, and Biological and Pharmacological Activities of Thymus algeriensis Boiss. & Reut. | Mahdi I, Bakrim WB, Bitchagno GTM, Annaz H, Mahmoud MF, Sobeh M. | Oxid Med Cell Longev | 10.1155/2022/6487430 | 2022 | ||
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| Novel Polyethers from Screening Actinoallomurus spp. | Iorio M, Tocchetti A, Santos Cruz JC, Del Gatto G, Brunati C, Maffioli SI, Sosio M, Donadio S. | Antibiotics (Basel) | 10.3390/antibiotics7020047 | 2018 | ||
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| Citrus limon Essential Oil: Chemical Composition and Selected Biological Properties Focusing on the Antimicrobial (In Vitro, In Situ), Antibiofilm, Insecticidal Activity and Preservative Effect against Salmonella enterica Inoculated in Carrot. | Kacaniova M, Cmikova N, Vukovic NL, Veresova A, Bianchi A, Garzoli S, Ben Saad R, Ben Hsouna A, Ban Z, Vukic MD. | Plants (Basel) | 10.3390/plants13040524 | 2024 | ||
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| Synthesis and Characterization of a New Alginate/Carrageenan Crosslinked Biopolymer and Study of the Antibacterial, Antioxidant, and Anticancer Performance of Its Mn(II), Fe(III), Ni(II), and Cu(II) Polymeric Complexes. | El-Ghoul Y, Al-Fakeh MS, Al-Subaie NS. | Polymers (Basel) | 10.3390/polym15112511 | 2023 | ||
| Characterization of Probiotic Properties of Lacticaseibacillus paracasei L2 Isolated from a Traditional Fermented Food "Lben". | M'hamed AC, Ncib K, Merghni A, Migaou M, Lazreg H, Snoussi M, Noumi E, Noumi E, Mansour MB, Maaroufi RM. | Life (Basel) | 10.3390/life13010021 | 2022 | ||
| Polyphasic Characterisation of Non-Starter Lactic Acid Bacteria from Algerian Raw Camel's Milk and Their Technological Aptitudes. | Saidi Y, Del Rio B, Senouci DE, Redruello B, Martinez B, Ladero V, Kihal M, Alvarez MA. | Food Technol Biotechnol | 10.17113/ftb.58.03.20.6598 | 2020 | ||
| Development of chemically defined media for Lactococcus lactis subsp. lactis YF11 to eliminate the influence of hyperosmotic stress. | Zhang X, Liu X, Zhang N, Zhao X, Li Y, Gong D, Yun Y. | 3 Biotech | 10.1007/s13205-023-03788-5 | 2023 | ||
| Enzymology | Kombucha - An ancient fermented beverage with desired bioactivities: A narrowed review. | Abaci N, Senol Deniz FS, Orhan IE. | Food Chem X | 10.1016/j.fochx.2022.100302 | 2022 | |
| Diplotaxis Genus: A Promising Source of Compounds with Nutritional and Biological Properties. | Ressurreicao S, Salgueiro L, Figueirinha A. | Molecules | 10.3390/molecules29112612 | 2024 | ||
| Wild-type Lactococcus lactis producing bacteriocin-like prophage lysins. | Takala TM, Mokhtari S, Ahonen SL, Wan X, Saris PEJ. | Front Microbiol | 10.3389/fmicb.2023.1219723 | 2023 | ||
| Plant Growth Modulates Metabolites and Biological Activities in Retama raetam (Forssk.) Webb. | Saada M, Falleh H, Catarino MD, Cardoso SM, Ksouri R. | Molecules | 10.3390/molecules23092177 | 2018 | ||
| Antimicrobial and Wound Healing Potential of a New Chemotype from Piper cubeba L. Essential Oil and In Silico Study on S. aureus tyrosyl-tRNA Synthetase Protein. | Alminderej F, Bakari S, Almundarij TI, Snoussi M, Aouadi K, Kadri A. | Plants (Basel) | 10.3390/plants10020205 | 2021 | ||
| Chemical Constitution and Antimicrobial Activity of Kombucha Fermented Beverage. | Al-Mohammadi AR, Ismaiel AA, Ibrahim RA, Moustafa AH, Abou Zeid A, Enan G. | Molecules | 10.3390/molecules26165026 | 2021 | ||
| GABA-Producing Lactococcus lactis Strains Isolated from Camel's Milk as Starters for the Production of GABA-Enriched Cheese. | Redruello B, Saidi Y, Sampedro L, Ladero V, Del Rio B, Alvarez MA. | Foods | 10.3390/foods10030633 | 2021 | ||
| Metabolism | Higher nisin yield is reached with glutathione and pyruvate compared with heme in Lactococcus lactis N8. | Girgin Ersoy Z, Kayihan C, Tunca S. | Braz J Microbiol | 10.1007/s42770-019-00216-w | 2020 | |
| Metabolic Profile, Bioactivities, and Variations in the Chemical Constituents of Essential Oils of the Ferula Genus (Apiaceae). | Sonigra P, Meena M. | Front Pharmacol | 10.3389/fphar.2020.608649 | 2020 | ||
| Pathogenicity | Antibacterial and resistance-modifying activities of thymoquinone against oral pathogens. | Kouidhi B, Zmantar T, Jrah H, Souiden Y, Chaieb K, Mahdouani K, Bakhrouf A. | Ann Clin Microbiol Antimicrob | 10.1186/1476-0711-10-29 | 2011 | |
| Fermented Seeds ("Zgougou") from Aleppo Pine as a Novel Source of Potentially Probiotic Lactic Acid Bacteria. | Missaoui J, Saidane D, Mzoughi R, Minervini F. | Microorganisms | 10.3390/microorganisms7120709 | 2019 | ||
| A novel cecropin B-derived peptide with antibacterial and potential anti-inflammatory properties. | Wang J, Ma K, Ruan M, Wang Y, Li Y, Fu YV, Song Y, Sun H, Wang J. | PeerJ | 10.7717/peerj.5369 | 2018 | ||
| Chemical and Biological Evaluation of Essential Oils from Cardamom Species. | Noumi E, Noumi E, Snoussi M, Alreshidi MM, Rekha PD, Saptami K, Caputo L, De Martino L, Souza LF, Msaada K, Mancini E, Flamini G, Al-Sieni A, De Feo V. | Molecules | 10.3390/molecules23112818 | 2018 | ||
| Pathogenicity | Antibacterial activity of Thymoquinone, an active principle of Nigella sativa and its potency to prevent bacterial biofilm formation. | Chaieb K, Kouidhi B, Jrah H, Mahdouani K, Bakhrouf A. | BMC Complement Altern Med | 10.1186/1472-6882-11-29 | 2011 | |
| Use of Autochthonous Lactobacilli to Increase the Safety of Zgougou. | Minervini F, Missaoui J, Celano G, Calasso M, Achour L, Saidane D, Gobbetti M, De Angelis M. | Microorganisms | 10.3390/microorganisms8010029 | 2019 | ||
| Black cumin (Nigella sativa) and its constituent (thymoquinone): a review on antimicrobial effects. | Forouzanfar F, Bazzaz BS, Hosseinzadeh H. | Iran J Basic Med Sci | 2014 | |||
| A New Insight on Cardoon: Exploring New Uses besides Cheese Making with a View to Zero Waste. | Barbosa CH, Andrade MA, Vilarinho F, Castanheira I, Fernando AL, Loizzo MR, Silva AS. | Foods | 10.3390/foods9050564 | 2020 | ||
| Biosynthesis and Characterization of Silver Nanoparticles Produced by Phormidium ambiguum and Desertifilum tharense Cyanobacteria. | Hanna AL, Hamouda HM, Goda HA, Sadik MW, Moghanm FS, Ghoneim AM, Alenezi MA, Alnomasy SF, Alam P, Elsayed TR | Bioinorg Chem Appl | 10.1155/2022/9072508 | 2022 | ||
| Rheological and Antimicrobial Properties of Chitosan and Quinoa Protein Filmogenic Suspensions with Thyme and Rosemary Essential Oils. | Escamilla-Garcia M, Rios-Romo RA, Melgarejo-Mancilla A, Diaz-Ramirez M, Hernandez-Hernandez HM, Amaro-Reyes A, Pierro PD, Regalado-Gonzalez C | Foods | 10.3390/foods9111616 | 2020 | ||
| Pathogenicity | Intracellular biosynthesis of PbS quantum dots using Pseudomonas aeruginosa ATCC 27853: evaluation of antibacterial effects and DNA cleavage activities. | Ocal N, Ceylan A, Duman F | World J Microbiol Biotechnol | 10.1007/s11274-020-02917-z | 2020 | |
| Phylogeny | Identification and characterization of a novel antimicrobial peptide compound produced by Bacillus megaterium strain isolated from oral microflora. | Al-Thubiani ASA, Maher YA, Fathi A, Abourehab MAS, Alarjah M, Khan MSA, Al-Ghamdi SB | Saudi Pharm J | 10.1016/j.jsps.2018.05.019 | 2018 | |
| Phylogeny | Antituberculotic activity of actinobacteria isolated from the rare habitats. | Hussain A, Rather MA, Shah AM, Bhat ZS, Shah A, Ahmad Z, Parvaiz Hassan Q | Lett Appl Microbiol | 10.1111/lam.12773 | 2017 | |
| Enzymology | Bactericidal activity of nukacin ISK-1: an alternative mode of action. | Roy U, Islam MR, Nagao J, Iida H, Mahin AA, Li M, Zendo T, Nakayama J, Sonomoto K | Biosci Biotechnol Biochem | 10.1080/09168451.2014.918485 | 2014 | |
| Metabolism | Taguchi's experimental design for optimizing the production of novel thermostable polypeptide antibiotic from Geobacillus pallidus SAT4. | Muhammad SA, Ahmed S, Ismail T, Hameed A | Pak J Pharm Sci | 2014 | ||
| Synthesis and antimicrobial evaluation of some novel 1,2,4-triazole and 1,3,4-thiadiazole derivatives. | Popiolek L, Kosikowska U, Mazur L, Dobosz M, Malm A | Med Chem Res | 10.1007/s00044-012-0302-9 | 2012 | ||
| Pathogenicity | Site-directed mutations in the lanthipeptide mutacin 1140. | Chen S, Wilson-Stanford S, Cromwell W, Hillman JD, Guerrero A, Allen CA, Sorg JA, Smith L | Appl Environ Microbiol | 10.1128/AEM.00704-13 | 2013 | |
| Pathogenicity | Synthesis and in vitro antimicrobial activity of new 4-phenyl-5-methyl-4H-1,2,4-triazole-3-thione derivatives. | Popiolek L, Kosikowska U, Dobosz M, Malm A | J Enzyme Inhib Med Chem | 10.3109/14756366.2011.653352 | 2012 | |
| Pathogenicity | N-O chemistry for antibiotics: discovery of N-alkyl-N-(pyridin-2-yl)hydroxylamine scaffolds as selective antibacterial agents using nitroso Diels-Alder and ene chemistry. | Wencewicz TA, Yang B, Rudloff JR, Oliver AG, Miller MJ | J Med Chem | 10.1021/jm200794r | 2011 | |
| Pathogenicity | Development of a microbiological assay to determine the potency of ceftiofur sodium powder. | Souza MJ, Rolim CM, Melo J, Souza Filho PS, Bergold AM | J AOAC Int | 2007 | ||
| Metabolism | A rapid and accurate 3-(4,5-dimethyl thiazol-2-yl)-2,5-diphenyl tetrazolium bromide colorimetric assay for quantification of bacteriocins with nisin as an example. | Wang F, Cao LT, Hu SH | J Zhejiang Univ Sci B | 10.1631/jzus.2007.B0549 | 2007 | |
| Pathogenicity | Development and in-house validation of a microbiological assay for determination of cefepime in injectable preparations. | Souza MJ, Kulmann RR, Silva LM, Nogueira DR, Zimmermann ES, Schmidt CA | J AOAC Int | 2006 | ||
| Biotechnology | Antimicrobial activity of a nisin-activated plastic film for food packaging. | Mauriello G, De Luca E, La Storia A, Villani F, Ercolini D | Lett Appl Microbiol | 10.1111/j.1472-765X.2005.01796.x | 2005 | |
| Accelerated solvent extraction of animal feedingstuffs for microbial growth inhibition screening for the presence of antimicrobial feed additives. | Higgins HC, McEvoy JD | Food Addit Contam | 10.1080/02652030210145063 | 2002 | ||
| Pathogenicity | Antibacterial Properties of Crotoxin from Crotalus durissus terrificus-Insight into the Mechanism of Action. | Nemecz D, Golinska P | Molecules | 10.3390/molecules27227726 | 2022 | |
| Phylogeny | Inhibitory Effect of Bacillus licheniformis Strains Isolated from Canine Oral Cavity. | Surin Hudakova N, Kacirova J, Sondorova M, Selianova S, Mucha R, Madar M | Life (Basel) | 10.3390/life12081238 | 2022 | |
| Streptomonospora litoralis sp. nov., a halophilic thiopeptides producer isolated from sand collected at Cuxhaven beach. | Khodamoradi S, Hahnke RL, Mast Y, Schumann P, Kampfer P, Steinert M, Ruckert C, Surup F, Rohde M, Wink J. | Antonie Van Leeuwenhoek | 10.1007/s10482-021-01609-4 | 2021 | ||
| Streptomyces tardus sp. nov.: A Slow-Growing Actinobacterium Producing Candicidin, Isolated From Sediments of the Trondheim Fjord. | Kralova S, Sandoval-Powers M, Fawwal DV, Degnes KF, Lewin AS, Klinkenberg G, Nguyen GS, Liles MR, Wentzel A. | Front Microbiol | 10.3389/fmicb.2021.714233 | 2021 |
| #656 | Leibniz Institut DSMZ-Deutsche Sammlung von Mikroorganismen und Zellkulturen GmbH ; Curators of the DSMZ; DSM 1790 |
| #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 ) |
| #41170 | ; Curators of the CIP; |
| #47536 | Culture Collection University of Gothenburg (CCUG) ; Curators of the CCUG; CCUG 21988 |
| #68382 | Automatically annotated from API zym . |
| #120705 | Collection of Institut Pasteur ; Curators of the CIP; CIP 53.160 |
| #124043 | Isabel Schober, Julia Koblitz: Data extracted from sequence databases, automatically matched based on designation and taxonomy . |
| #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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