Pseudomonas proteolytica DSM 15321 is an aerobe, Gram-negative, motile bacterium that was isolated from cyanobacterial mat samples.
Gram-negative motile rod-shaped aerobe genome sequence 16S sequence Bacteria| @ref 20215 |
|
|
| Domain Bacteria |
| Phylum Pseudomonadota |
| Class Gammaproteobacteria |
| Order Pseudomonadales |
| Family Pseudomonadaceae |
| Genus Pseudomonas |
| Species Pseudomonas proteolytica |
| Full scientific name Pseudomonas proteolytica Reddy et al. 2004 |
| @ref | Name | Growth | Medium link | Composition | |
|---|---|---|---|---|---|
| 5843 | CASO AGAR (MERCK 105458) (DSMZ Medium 220) | Medium recipe at MediaDive | Name: CASO AGAR (Merck 105458) (DSMZ Medium 220) Composition: Agar 15.0 g/l Casein peptone 15.0 g/l NaCl 5.0 g/l Soy peptone 5.0 g/l Distilled water | ||
| 42006 | MEDIUM 72- for trypto casein soja agar | Distilled water make up to (1000.000 ml);Trypto casein soy agar (40.000 g) | |||
| 121968 | CIP Medium 72 | Medium recipe at CIP |
| @ref | Ability | Type | PH | |
|---|---|---|---|---|
| 30011 | positive | optimum | 7 |
| @ref | Spore formation | Confidence | |
|---|---|---|---|
| 125439 | 99.87 |
| @ref | Chebi-ID | Metabolite | Utilization activity | Kind of utilization tested | |
|---|---|---|---|---|---|
| 30011 | 30089 ChEBI | acetate | + | carbon source | |
| 68369 | 17128 ChEBI | adipate | + | assimilation | from API 20NE |
| 30011 | 16449 ChEBI | alanine | + | carbon source | |
| 30011 | 29016 ChEBI | arginine | + | carbon source | |
| 68369 | 29016 ChEBI | arginine | + | hydrolysis | from API 20NE |
| 30011 | 16947 ChEBI | citrate | + | carbon source | |
| 121968 | 16947 ChEBI | citrate | + | carbon source | |
| 68369 | 17634 ChEBI | D-glucose | + | assimilation | from API 20NE |
| 68369 | 17634 ChEBI | D-glucose | - | fermentation | from API 20NE |
| 68369 | 16899 ChEBI | D-mannitol | + | assimilation | from API 20NE |
| 68369 | 16024 ChEBI | D-mannose | + | assimilation | from API 20NE |
| 30011 | 16296 ChEBI | D-tryptophan | + | carbon source | |
| 68369 | 27689 ChEBI | decanoate | + | assimilation | from API 20NE |
| 121968 | 4853 ChEBI | esculin | - | hydrolysis | |
| 68369 | 4853 ChEBI | esculin | - | hydrolysis | from API 20NE |
| 30011 | 28757 ChEBI | fructose | + | carbon source | |
| 30011 | 28260 ChEBI | galactose | + | carbon source | |
| 30011 | 5291 ChEBI | gelatin | + | carbon source | |
| 68369 | 5291 ChEBI | gelatin | + | hydrolysis | from API 20NE |
| 68369 | 24265 ChEBI | gluconate | + | assimilation | from API 20NE |
| 30011 | 17234 ChEBI | glucose | + | carbon source | |
| 30011 | 29987 ChEBI | glutamate | + | carbon source | |
| 30011 | 17754 ChEBI | glycerol | + | carbon source | |
| 68369 | 30849 ChEBI | L-arabinose | - | assimilation | from API 20NE |
| 30011 | 24996 ChEBI | lactate | + | carbon source | |
| 68369 | 25115 ChEBI | malate | + | assimilation | from API 20NE |
| 68369 | 17306 ChEBI | maltose | - | assimilation | from API 20NE |
| 30011 | 29864 ChEBI | mannitol | + | carbon source | |
| 30011 | 37684 ChEBI | mannose | + | carbon source | |
| 30011 | 17268 ChEBI | myo-inositol | + | carbon source | |
| 68369 | 59640 ChEBI | N-acetylglucosamine | + | assimilation | from API 20NE |
| 30011 | 17632 ChEBI | nitrate | + | reduction | |
| 121968 | 17632 ChEBI | nitrate | + | reduction | |
| 121968 | 17632 ChEBI | nitrate | + | respiration | |
| 68369 | 17632 ChEBI | nitrate | + | reduction | from API 20NE |
| 121968 | 16301 ChEBI | nitrite | + | reduction | |
| 30011 | 28044 ChEBI | phenylalanine | + | carbon source | |
| 30011 | 15361 ChEBI | pyruvate | + | carbon source | |
| 30011 | 15963 ChEBI | ribitol | + | carbon source | |
| 30011 | 33942 ChEBI | ribose | + | carbon source | |
| 30011 | 17822 ChEBI | serine | + | carbon source | |
| 30011 | 30911 ChEBI | sorbitol | + | carbon source | |
| 30011 | 27082 ChEBI | trehalose | + | carbon source | |
| 68369 | 27897 ChEBI | tryptophan | - | energy source | from API 20NE |
| 68369 | 16199 ChEBI | urea | - | hydrolysis | from API 20NE |
| @ref | Metabolite | Is sensitive | Is resistant | |
|---|---|---|---|---|
| 121968 | 0129 (2,4-Diamino-6,7-di-iso-propylpteridine phosphate) |
| @ref | Value | Activity | Ec | |
|---|---|---|---|---|
| 68382 | acid phosphatase | + | 3.1.3.2 | from API zym |
| 121968 | 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 |
| 121968 | amylase | - | ||
| 68369 | arginine dihydrolase | + | 3.5.3.6 | from API 20NE |
| 68382 | beta-galactosidase | - | 3.2.1.23 | from API zym |
| 121968 | beta-galactosidase | - | 3.2.1.23 | |
| 68382 | beta-glucosidase | - | 3.2.1.21 | from API zym |
| 68369 | beta-glucosidase | - | 3.2.1.21 | from API 20NE |
| 68382 | beta-glucuronidase | - | 3.2.1.31 | from API zym |
| 121968 | caseinase | + | 3.4.21.50 | |
| 30011 | catalase | + | 1.11.1.6 | |
| 121968 | catalase | + | 1.11.1.6 | |
| 68382 | cystine arylamidase | - | 3.4.11.3 | from API zym |
| 30011 | cytochrome oxidase | + | 1.9.3.1 | |
| 68369 | cytochrome oxidase | + | 1.9.3.1 | from API 20NE |
| 121968 | DNase | + | ||
| 68382 | esterase (C 4) | + | from API zym | |
| 68382 | esterase lipase (C 8) | + | from API zym | |
| 30011 | gelatinase | + | ||
| 121968 | gelatinase | +/- | ||
| 68369 | gelatinase | + | from API 20NE | |
| 121968 | lecithinase | + | ||
| 68382 | leucine arylamidase | + | 3.4.11.1 | from API zym |
| 121968 | lipase | + | ||
| 68382 | lipase (C 14) | + | from API zym | |
| 121968 | 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 | |
| 121968 | ornithine decarboxylase | - | 4.1.1.17 | |
| 121968 | oxidase | - | ||
| 121968 | protease | + | ||
| 68382 | trypsin | + | 3.4.21.4 | from API zym |
| 121968 | tryptophan deaminase | - | ||
| 121968 | tween esterase | + | ||
| 121968 | urease | - | 3.5.1.5 | |
| 68369 | urease | - | 3.5.1.5 | from API 20NE |
| 68382 | valine arylamidase | + | from API zym |
| Cat1 | Cat2 | Cat3 | |
|---|---|---|---|
| #Environmental | #Microbial community | #Microbial mat | |
| #Host | #Microbial | #Bacteria |
Global distribution of 16S sequence AJ537603 (>99% sequence identity) for Pseudomonas from Microbeatlas ![]()
| @ref | Description | Assembly level | INSDC accession | BV-BRC accession | NCBI tax ID | Score | |
|---|---|---|---|---|---|---|---|
| 66792 | ASM785827v1 assembly for Pseudomonas proteolytica DSM 15321 | contig | 219574 | 55.38 |
| @ref | Description | Accession | Length | Database | NCBI tax ID | |
|---|---|---|---|---|---|---|
| 5843 | Pseudomonas proteolytica partial 16S rRNA gene, strain CMS 64T | AJ537603 | 1512 | 219574 | ||
| 124043 | Pseudomonas proteolytica strain BD13-00014 16S ribosomal RNA gene, partial sequence. | KU647673 | 1473 | 219574 | ||
| 124043 | Pseudomonas proteolytica strain CMS 64 16S ribosomal RNA gene, partial sequence. | OP164717 | 1442 | 219574 |
| @ref | Trait | Model | Prediction | Confidence in % | In training data |
|---|---|---|---|---|---|
| 125439 | oxygen_tolerance | BacteriaNetⓘ | obligate aerobe | 85.86 | no |
| 125439 | motility | BacteriaNetⓘ | yes | 81.77 | no |
| 125439 | gram_stain | BacteriaNetⓘ | negative | 96.96 | no |
| 125439 | spore_formation | BacteriaNetⓘ | no | 99.87 | no |
| @ref | Trait | Model | Prediction | Confidence in % | In training data |
|---|---|---|---|---|---|
| 125438 | gram-positive | gram-positiveⓘ | no | 98.50 | yes |
| 125438 | anaerobic | anaerobicⓘ | no | 98.94 | no |
| 125438 | spore-forming | spore-formingⓘ | no | 85.44 | no |
| 125438 | aerobic | aerobicⓘ | yes | 91.43 | yes |
| 125438 | thermophilic | thermophileⓘ | no | 98.50 | yes |
| 125438 | flagellated | motile2+ⓘ | yes | 88.97 | no |
| Topic | Title | Authors | Journal | DOI | Year | |
|---|---|---|---|---|---|---|
| Pathogenicity | Fast and Easy Phage-Tagging and Live/Dead Analysis for the Rapid Monitoring of Bacteriophage Infection. | Low HZ, Bohnlein C, Sprotte S, Wagner N, Fiedler G, Kabisch J, Franz CMAP. | Front Microbiol | 10.3389/fmicb.2020.602444 | 2020 | |
| Enzymology | Bacterial bioaugmentation of woodchip bioreactors to increase nitrate removal in cold agricultural drainage water. | Jeglot A, Sanchez-Cid C, Sorensen SR, Schnorr KM, Plauborg F, Vogel TM, Elsgaard L. | Environ Technol | 10.1080/09593330.2024.2432483 | 2025 | |
| Phylogeny | Groundnut harbours non-nodulating non-rhizobial plant growth-promoting bacterial endophytes. | Rana AK, Vyas P, Sharma S, Sardana V. | 3 Biotech | 10.1007/s13205-023-03837-z | 2023 | |
| Enzymology | Antifouling potential of enzymes applied to reverse osmosis membranes. | Khani M, Hansen MF, Knochel S, Rasekh B, Ghasemipanah K, Zamir SM, Nosrati M, Burmolle M. | Biofilm | 10.1016/j.bioflm.2023.100119 | 2023 | |
| Diversity and antibiotic resistance of cultivable bacteria in bulk tank milk from dairy farms in Shandong Province, China. | Qi Y, Lu Z, Meng Z, Wang X, Chen H, Li M, Qu C, Zhang P, Liu Y, Liu J. | Front Vet Sci | 10.3389/fvets.2025.1649876 | 2025 | ||
| Plant Growth Promotion at Low Temperature by Phosphate-Solubilizing Pseudomonas Spp. Isolated from High-Altitude Himalayan Soil. | Adhikari P, Jain R, Sharma A, Pandey A. | Microb Ecol | 10.1007/s00248-021-01702-1 | 2021 | ||
| Enzymology | Two Heat Resistant Endopeptidases from Pseudomonas Species with Destabilizing Potential during Milk Storage. | Volk V, Gluck C, Leptihn S, Ewert J, Stressler T, Fischer L. | J Agric Food Chem | 10.1021/acs.jafc.8b04802 | 2019 | |
| Influence of Essential Oils on the Microbiological Quality of Fish Meat during Storage. | Kunova S, Sendra E, Hascik P, Vukovic NL, Vukic M, Kacaniova M. | Animals (Basel) | 10.3390/ani11113145 | 2021 | ||
| Biotechnology | Efficacy of Indigenous Bacteria in the Biodegradation of Hydrocarbons Isolated from Agricultural Soils in Huamachuco, Peru. | Quinones-Cerna C, Castaneda-Aspajo A, Tirado-Gutierrez M, Salirrosas-Fernandez D, Rodriguez-Soto JC, Cruz-Monzon JA, Hurtado-Butron F, Ugarte-Lopez W, Gutierrez-Araujo M, Quezada-Alvarez MA, Galvez-Rivera JA, Esparza-Mantilla M. | Microorganisms | 10.3390/microorganisms12091896 | 2024 | |
| Enzymology | Prolonged Production and Aggregation Complexity of Cold-Active Lipase from Pseudomonas proteolytica (GBPI_Hb61) Isolated from Cold Desert Himalaya. | Jain R, Pandey A, Pasupuleti M, Pande V. | Mol Biotechnol | 10.1007/s12033-016-9989-z | 2017 | |
| Enzymology | Endophytic biocatalysts with enoate reductase activity isolated from Mentha pulegium. | Marconi F, Umpierrez ML, Gonzalez D, Giordano SR, Rodriguez P. | World J Microbiol Biotechnol | 10.1007/s11274-018-2434-7 | 2018 | |
| Growth of Pseudomonas weihenstephanensis, Pseudomonas proteolytica and Pseudomonas sp. in raw milk: Impact of residual heat-stable enzyme activity on stability of UHT milk during shelf-life | Stoeckel M, Lidolt M, Achberger V, Gluck C, Krewinkel M, Stressler T, von Neubeck M, Wenning M, Scherer S, Fischer L, Hinrichs J. | Int Dairy J | 10.1016/j.idairyj.2016.02.045 | 2016 | ||
| Suppression of Fusarium Wilt Caused by Fusarium oxysporum f. sp. lactucae and Growth Promotion on Lettuce Using Bacterial Isolates. | Yadav DR, Adhikari M, Kim SW, Kim HS, Lee YS. | J Microbiol Biotechnol | 10.4014/jmb.2104.04026 | 2021 | ||
| Silver nanoparticles biosynthesis using mixture of Lactobacillus sp. and Bacillus sp. growth and their antibacterial activity | Al-asbahi M, Al-Ofiry B, Saad F, Alnehia A, Al-Gunaid M. | Sci Rep | 2024 | |||
| Oak (Quercus robur) Associated Endophytic Paenibacillus sp. Promotes Poplar (Populus spp.) Root Growth In Vitro. | Vaitiekunaite D, Kuusiene S, Beniusyte E. | Microorganisms | 10.3390/microorganisms9061151 | 2021 | ||
| Sustainable enhancement of basil quality and resilience through biopriming with Pseudomonas JP0825 | Mahmoud A, Khalaf M, Reyad A, Korany S, Alsherif E, Shaghaleh H, Alhaj Hamoud Y, Sheteiwy M, El-Keblawy A, Ulhassan Z. | BMC Plant Biol | 2025 | |||
| Metabolism | Effects of illuminance and nutrients on bacterial photo-physiology of hydrocarbon degradation. | Khan AH, Anees M, Arshad M, Muhammad YS, Iqbal M, Yousaf S. | Sci Total Environ | 10.1016/j.scitotenv.2016.03.068 | 2016 | |
| Rhizobial, passenger nodule endophytes and phyllosphere bacteria in combination with acyl homoserine lactones enhances the growth and yield of groundnut. | Madhan S, Arunan YE, Rangasamy A, Dananjeyan B, Iruthayasamy J, Gajendiran M, Ramasamy K, Rajasekaran R, Saminathan V. | Biotechnol Rep (Amst) | 10.1016/j.btre.2025.e00893 | 2025 | ||
| Enzymology | Protease and lipase activities of fungal and bacterial strains derived from an artisanal raw ewe's milk cheese. | Ozturkoglu-Budak S, Wiebenga A, Bron PA, de Vries RP. | Int J Food Microbiol | 10.1016/j.ijfoodmicro.2016.08.007 | 2016 | |
| Resistance to oxidation products of caffeic acid is important for efficient colonization of wheat seedlings by Pseudomonas proteolytica strain PSR114 | Oksinska MP, Pietr SJ, Wright SAI. | Appl Soil Ecol | 10.1016/j.apsoil.2013.02.002 | 2013 | ||
| Genetics | Pathogenicity, phylogenomic, and comparative genomic study of Pseudomonas syringae sensu lato affecting sweet cherry in California. | Maguvu TE, Frias RJ, Hernandez-Rosas AI, Shipley E, Dardani G, Nouri MT, Yaghmour MA, Trouillas FP. | Microbiol Spectr | 10.1128/spectrum.01324-24 | 2024 | |
| The Effect of Temperature and Storage Duration on the Quality and Attributes of the Breast Meat of Hens after Their Laying Periods. | Augustynska-Prejsnar A, Hanus P, Ormian M, Kacaniova M, Sokolowicz Z, Topczewska J. | Foods | 10.3390/foods12234340 | 2023 | ||
| Recent Advances in Green Synthesis of Ag NPs for Extenuating Antimicrobial Resistance. | Parmar S, Kaur H, Singh J, Matharu AS, Ramakrishna S, Bechelany M. | Nanomaterials (Basel) | 10.3390/nano12071115 | 2022 | ||
| Synthesis of Bioactive Silver Nanoparticles Using New Bacterial Strains from an Antarctic Consortium. | John MS, Nagoth JA, Ramasamy KP, Mancini A, Giuli G, Miceli C, Pucciarelli S. | Mar Drugs | 10.3390/md20090558 | 2022 | ||
| Simultaneous quantification of the most common and proteolytic Pseudomonas species in raw milk by multiplex qPCR. | Maier C, Hofmann K, Huptas C, Scherer S, Wenning M, Lucking G. | Appl Microbiol Biotechnol | 10.1007/s00253-021-11109-0 | 2021 | ||
| Silver Nanoparticle Production Mediated by Vitis vinifera Cane Extract: Characterization and Antibacterial Activity Evaluation. | Michailidu J, Matatkova O, Kolouchova I, Masak J, Cejkova A. | Plants (Basel) | 10.3390/plants11030443 | 2022 | ||
| Contamination analysis of Arctic ice samples as planetary field analogs and implications for future life-detection missions to Europa and Enceladus. | Coelho LF, Blais MA, Matveev A, Keller-Costa T, Vincent WF, Costa R, Martins Z, Canario J. | Sci Rep | 10.1038/s41598-022-16370-5 | 2022 | ||
| Mesorhizobium sp. J8 can establish symbiosis with Glycyrrhiza uralensis, increasing glycyrrhizin production. | Kusaba I, Nakao T, Maita H, Sato S, Chijiiwa R, Yamada E, Arima S, Kojoma M, Ishimaru K, Akashi R, Suzuki A. | Plant Biotechnol (Tokyo) | 10.5511/plantbiotechnology.20.1124a | 2021 | ||
| Development of a real-time loop-mediated isothermal amplification method for monitoring Pseudomonas lurida in raw milk throughout the year of pasture. | Zhang S, Hu L, Xue Y, Zhang D, Zhang Y, Wang S. | Front Microbiol | 10.3389/fmicb.2023.1133077 | 2023 | ||
| Diversity and antagonistic activity of sea ice bacteria isolated from the sea of Japan. | Romanenko LA, Tanaka N, Uchino M, Kalinovskaya NI, Mikhailov VV. | Microbes Environ | 10.1264/jsme2.23.209 | 2008 | ||
| Differentiation of Closely Related Oak-Associated Gram-Negative Bacteria by Label-Free Surface Enhanced Raman Spectroscopy (SERS). | Vaitiekunaite D, Snitka V. | Microorganisms | 10.3390/microorganisms9091969 | 2021 | ||
| Enzymology | Cold-active extracellular lipase: Expression in Sf9 insect cells, purification, and catalysis. | Li T, Zhang W, Hao J, Sun M, Lin SX. | Biotechnol Rep (Amst) | 10.1016/j.btre.2018.e00295 | 2019 | |
| Technological and Sensory Quality and Microbiological Safety of RIR Chicken Breast Meat Marinated with Fermented Milk Products. | Sokolowicz Z, Augustynska-Prejsnar A, Krawczyk J, Kacaniova M, Kluz M, Hanus P, Topczewska J. | Animals (Basel) | 10.3390/ani11113282 | 2021 | ||
| Pathogenicity | Role of AgNPs in the enhancement of seed germination and its effect on plumule and radicle length of Pennisetum glaucum. | Sable SV, Ranade S, Joshi S. | IET Nanobiotechnol | 10.1049/iet-nbt.2017.0304 | 2018 | |
| The Development of the Bacterial Community of Brown Trout (Salmo trutta) during Ontogeny. | Keiz K, Ulrich S, Wenderlein J, Keferloher P, Wiesinger A, Neuhaus K, Lagkouvardos I, Wedekind H, Straubinger RK. | Microorganisms | 10.3390/microorganisms11010211 | 2023 | ||
| Psychrophilic pseudomonas in antarctic freshwater lake at stornes peninsula, larsemann hills over east Antarctica. | Chauhan A, Bharti PK, Goyal P, Varma A, Jindal T. | Springerplus | 10.1186/s40064-015-1354-3 | 2015 | ||
| The Immune Barrier of Porcine Uterine Mucosa Differs Dramatically at Proliferative and Secretory Phases and Could Be Positively Modulated by Colonizing Microbiota. | Han D, Sun P, Hu Y, Wang J, Hua G, Chen J, Shao C, Tian F, Darwish HYA, Tai Y, Yang X, Chang J, Ma Y. | Front Immunol | 10.3389/fimmu.2021.750808 | 2021 | ||
| Metabolism | Anti-Alzheimer potential, metabolomic profiling and molecular docking of green synthesized silver nanoparticles of Lampranthus coccineus and Malephora lutea aqueous extracts. | Youssif KA, Haggag EG, Elshamy AM, Rabeh MA, Gabr NM, Seleem A, Salem MA, Hussein AS, Krischke M, Mueller MJ, Abdelmohsen UR. | PLoS One | 10.1371/journal.pone.0223781 | 2019 | |
| Phylogeny | Phylogenetic MLSA and phenotypic analysis identification of three probable novel Pseudomonas species isolated on King George Island, South Shetland, Antarctica. | Vasquez-Ponce F, Higuera-Llanten S, Pavlov MS, Marshall SH, Olivares-Pacheco J. | Braz J Microbiol | 10.1016/j.bjm.2018.02.005 | 2018 | |
| Extracellular synthesis of silver nanoparticles by the Bacillus strain CS 11 isolated from industrialized area. | Das VL, Thomas R, Varghese RT, Soniya EV, Mathew J, Radhakrishnan EK. | 3 Biotech | 10.1007/s13205-013-0130-8 | 2014 | ||
| A Lytic Bacteriophage for Controlling Pseudomonas lactis in Raw Cow's Milk. | Tanaka C, Yamada K, Takeuchi H, Inokuchi Y, Kashiwagi A, Toba T. | Appl Environ Microbiol | 10.1128/aem.00111-18 | 2018 | ||
| Enzymology | Spoilage potential of psychrotrophic bacteria isolated from raw milk and the thermo-stability of their enzymes. | Yuan L, Sadiq FA, Liu TJ, Li Y, Gu JS, Yang HY, He GQ. | J Zhejiang Univ Sci B | 10.1631/jzus.b1700352 | 2018 | |
| Pathogenicity | Inhibitory effect of veterinary antibiotics on denitrification in groundwater: a microcosm approach. | Ahmad M, Ahmad M, Vithanage M, Kim K, Cho JS, Lee YH, Joo YK, Lee SS, Ok YS. | ScientificWorldJournal | 10.1155/2014/879831 | 2014 | |
| Green Synthesis of Metal Oxides Semiconductors for Gas Sensing Applications. | Dadkhah M, Tulliani JM. | Sensors (Basel) | 10.3390/s22134669 | 2022 | ||
| Pseudomonads Rule Degradation of Polyaromatic Hydrocarbons in Aerated Sediment. | Wald J, Hroudova M, Jansa J, Vrchotova B, Macek T, Uhlik O. | Front Microbiol | 10.3389/fmicb.2015.01268 | 2015 | ||
| Pathogenicity | Phospholipids and protein adaptation of Pseudomonas sp. to the xenoestrogen tributyltin chloride (TBT). | Bernat P, Siewiera P, Sobon A, Dlugonski J. | World J Microbiol Biotechnol | 10.1007/s11274-014-1659-3 | 2014 | |
| Antibacterial and cytotoxic activities of naphthoquinone pigments from Onosma visianii Clem. | Vukic MD, Vukovic NL, Djelic GT, Popovic SL, Zaric MM, Baskic DD, Krstic GB, Tesevic VV, Kacaniova MM. | EXCLI J | 10.17179/excli2016-762 | 2017 | ||
| A severe case of persistent diarrhoea associated with Arcobacter cryaerophilus but attributed to Campylobacter sp. and a review of the clinical incidence of Arcobacter spp. | Figueras MJ, Levican A, Pujol I, Ballester F, Rabada Quilez MJ, Gomez-Bertomeu F. | New Microbes New Infect | 10.1002/2052-2975.35 | 2014 | ||
| Synthesis and extracellular accumulation of silver nanoparticles by employing radiation-resistant Deinococcus radiodurans, their characterization, and determination of bioactivity. | Kulkarni RR, Shaiwale NS, Deobagkar DN, Deobagkar DD. | Int J Nanomedicine | 10.2147/ijn.s72888 | 2015 | ||
| Biotechnology | Enrichment and Characterisation of a Mixed-Source Ethanologenic Community Degrading the Organic Fraction of Municipal Solid Waste Under Minimal Environmental Control. | Carrillo-Barragan P, Bowler B, Dolfing J, Sallis P, Gray ND. | Front Microbiol | 10.3389/fmicb.2019.00722 | 2019 | |
| Bacteria in Nanoparticle Synthesis: Current Status and Future Prospects. | Iravani S. | Int Sch Res Notices | 10.1155/2014/359316 | 2014 | ||
| Phylogeny | Endophytic colonization of potato (Solanum tuberosum L.) by a novel competent bacterial endophyte, Pseudomonas putida strain P9, and its effect on associated bacterial communities. | Andreote FD, de Araujo WL, de Azevedo JL, van Elsas JD, da Rocha UN, van Overbeek LS. | Appl Environ Microbiol | 10.1128/aem.00491-09 | 2009 | |
| Phylogeny | Possible misidentification of species in the Pseudomonas fluorescens lineage as Burkholderia pseudomallei and Francisella tularensis, and emended descriptions of Pseudomonas brenneri,Pseudomonas gessardii and Pseudomonas proteolytica. | van den Beld MJC, Reinders E, Notermans DW, Reubsaet FAG | Int J Syst Evol Microbiol | 10.1099/ijsem.0.001206 | 2016 | |
| Genetics | Description of Pseudomonas imrae sp. nov., carrying a novel class C beta-lactamase gene variant, isolated from gut samples of Atlantic mackerel (Scomber scombrus). | Salva-Serra F, Nimje P, Pineiro-Iglesias B, Alarcon LA, Cardew S, Inganas E, Jensie-Markopoulos S, Ohlen M, Sailer HS, Unosson C, Fernandez-Juarez V, Pacherres CO, Kuhl M, Moore ERB, Marathe NP. | Front Microbiol | 10.3389/fmicb.2025.1530878 | 2025 | |
| Pseudomonas rossensis sp. nov., a novel psychrotolerant species produces antimicrobial agents targeting resistant clinical isolates of Pseudomonas aeruginosa. | Snopkova K, Sedlar K, Novakova D, Stankova E, Sedlacek I, Sedo O, Hola V. | Curr Res Microb Sci | 10.1016/j.crmicr.2025.100353 | 2025 | ||
| Phylogeny | Psychrophilic pseudomonads from Antarctica: Pseudomonas antarctica sp. nov., Pseudomonas meridiana sp. nov. and Pseudomonas proteolytica sp. nov. | Reddy GSN, Matsumoto GI, Schumann P, Stackebrandt E, Shivaji S | Int J Syst Evol Microbiol | 10.1099/ijs.0.02827-0 | 2004 |
| #5843 | Leibniz Institut DSMZ-Deutsche Sammlung von Mikroorganismen und Zellkulturen GmbH ; Curators of the DSMZ; DSM 15321 |
| #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 ) |
| #26375 | IJSEM 713 2004 ( DOI 10.1099/ijs.0.02827-0 , PubMed 15143013 ) |
| #30011 | Barberan A, Caceres Velazquez H, Jones S, Fierer N.: Hiding in Plain Sight: Mining Bacterial Species Records for Phenotypic Trait Information. mSphere 2: 2017 ( DOI 10.1128/mSphere.00237-17 , PubMed 28776041 ) - originally annotated from #26375 |
| #42006 | ; Curators of the CIP; |
| #59225 | Culture Collection University of Gothenburg (CCUG) ; Curators of the CCUG; CCUG 51515 |
| #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) . |
| #68369 | Automatically annotated from API 20NE . |
| #68382 | Automatically annotated from API zym . |
| #69479 | João F Matias Rodrigues, Janko Tackmann,Gregor Rot, Thomas SB Schmidt, Lukas Malfertheiner, Mihai Danaila,Marija Dmitrijeva, Daniela Gaio, Nicolas Näpflin and Christian von Mering. University of Zurich.: MicrobeAtlas 1.0 beta . |
| #121968 | Collection of Institut Pasteur ; Curators of the CIP; CIP 108464 |
| #124043 | Isabel Schober, Julia Koblitz: Data extracted from sequence databases, automatically matched based on designation and taxonomy . |
| #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/bacdive13095.20260601.11
When using BacDive for research please cite the following paper
BacDive in 2025: the core database for prokaryotic strain data