Stutzerimonas stutzeri 221 is an obligate aerobe, Gram-negative, motile bacterium that was isolated from spinal fluid.
Gram-negative motile rod-shaped obligate aerobe genome sequence 16S sequence Bacteria| @ref 20215 |
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| Domain Bacteria |
| Phylum Pseudomonadota |
| Class Gammaproteobacteria |
| Order Pseudomonadales |
| Family Pseudomonadaceae |
| Genus Stutzerimonas |
| Species Stutzerimonas stutzeri |
| Full scientific name Stutzerimonas stutzeri (Lehmann and Neumann 1896) Lalucat et al. 2022 |
| Synonyms (2) |
| @ref | Name | Growth | Medium link | Composition | |
|---|---|---|---|---|---|
| 1954 | 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 | ||
| 40511 | MEDIUM 72- for trypto casein soja agar | Distilled water make up to (1000.000 ml);Trypto casein soy agar (40.000 g) | |||
| 123339 | CIP Medium 72 | Medium recipe at CIP |
| @ref | Spore formation | Confidence | |
|---|---|---|---|
| 125439 | 99.48 |
| @ref | Chebi-ID | Metabolite | Utilization activity | Kind of utilization tested | |
|---|---|---|---|---|---|
| 68369 | 17128 ChEBI | adipate | - | assimilation | from API 20NE |
| 68371 | 27613 ChEBI | amygdalin | - | builds acid from | from API 50CH acid |
| 68371 | 18305 ChEBI | arbutin | - | builds acid from | from API 50CH acid |
| 68369 | 29016 ChEBI | arginine | - | hydrolysis | from API 20NE |
| 68371 | 17057 ChEBI | cellobiose | - | builds acid from | from API 50CH acid |
| 123339 | 16947 ChEBI | citrate | + | carbon source | |
| 68371 | 17108 ChEBI | D-arabinose | - | builds acid from | from API 50CH acid |
| 68371 | 18333 ChEBI | D-arabitol | - | builds acid from | from API 50CH acid |
| 68371 | 15824 ChEBI | D-fructose | - | builds acid from | from API 50CH acid |
| 68371 | 28847 ChEBI | D-fucose | - | builds acid from | from API 50CH acid |
| 68371 | 12936 ChEBI | D-galactose | - | builds acid from | from API 50CH acid |
| 68371 | 17634 ChEBI | D-glucose | - | builds acid from | from API 50CH acid |
| 68369 | 17634 ChEBI | D-glucose | + | assimilation | from API 20NE |
| 68369 | 17634 ChEBI | D-glucose | - | fermentation | from API 20NE |
| 68371 | 62318 ChEBI | D-lyxose | - | builds acid from | from API 50CH acid |
| 68371 | 16899 ChEBI | D-mannitol | - | builds acid from | from API 50CH acid |
| 68371 | 16024 ChEBI | D-mannose | - | builds acid from | from API 50CH acid |
| 68369 | 16024 ChEBI | D-mannose | - | assimilation | from API 20NE |
| 68371 | 16988 ChEBI | D-ribose | - | builds acid from | from API 50CH acid |
| 68371 | 17924 ChEBI | D-sorbitol | - | builds acid from | from API 50CH acid |
| 68371 | 16443 ChEBI | D-tagatose | - | builds acid from | from API 50CH acid |
| 68371 | 65327 ChEBI | D-xylose | - | builds acid from | from API 50CH acid |
| 68369 | 27689 ChEBI | decanoate | + | assimilation | from API 20NE |
| 68371 | 17113 ChEBI | erythritol | - | builds acid from | from API 50CH acid |
| 123339 | 4853 ChEBI | esculin | - | hydrolysis | |
| 68371 | 4853 ChEBI | esculin | - | builds acid from | from API 50CH acid |
| 68369 | 4853 ChEBI | esculin | - | hydrolysis | from API 20NE |
| 68371 | 16813 ChEBI | galactitol | - | builds acid from | from API 50CH acid |
| 68369 | 5291 ChEBI | gelatin | - | hydrolysis | from API 20NE |
| 68371 | 28066 ChEBI | gentiobiose | - | builds acid from | from API 50CH acid |
| 68371 | 24265 ChEBI | gluconate | - | builds acid from | from API 50CH acid |
| 68369 | 24265 ChEBI | gluconate | + | assimilation | from API 20NE |
| 68371 | 17754 ChEBI | glycerol | - | builds acid from | from API 50CH acid |
| 68371 | 28087 ChEBI | glycogen | - | builds acid from | from API 50CH acid |
| 68371 | 15443 ChEBI | inulin | - | builds acid from | from API 50CH acid |
| 68371 | 30849 ChEBI | L-arabinose | - | builds acid from | from API 50CH acid |
| 68369 | 30849 ChEBI | L-arabinose | - | assimilation | from API 20NE |
| 68371 | 18403 ChEBI | L-arabitol | - | builds acid from | from API 50CH acid |
| 68371 | 18287 ChEBI | L-fucose | - | builds acid from | from API 50CH acid |
| 68371 | 62345 ChEBI | L-rhamnose | - | builds acid from | from API 50CH acid |
| 68371 | 17266 ChEBI | L-sorbose | - | builds acid from | from API 50CH acid |
| 68371 | 65328 ChEBI | L-xylose | - | builds acid from | from API 50CH acid |
| 68371 | 17716 ChEBI | lactose | - | builds acid from | from API 50CH acid |
| 68369 | 25115 ChEBI | malate | + | assimilation | from API 20NE |
| 68371 | 17306 ChEBI | maltose | - | builds acid from | from API 50CH acid |
| 68369 | 17306 ChEBI | maltose | + | assimilation | from API 20NE |
| 68371 | 6731 ChEBI | melezitose | - | builds acid from | from API 50CH acid |
| 68371 | 28053 ChEBI | melibiose | - | builds acid from | from API 50CH acid |
| 68371 | 320061 ChEBI | methyl alpha-D-glucopyranoside | - | builds acid from | from API 50CH acid |
| 68371 | 43943 ChEBI | methyl alpha-D-mannoside | - | builds acid from | from API 50CH acid |
| 68371 | 74863 ChEBI | methyl beta-D-xylopyranoside | - | builds acid from | from API 50CH acid |
| 68371 | 17268 ChEBI | myo-inositol | - | builds acid from | from API 50CH acid |
| 68371 | 59640 ChEBI | N-acetylglucosamine | - | builds acid from | from API 50CH acid |
| 68369 | 59640 ChEBI | N-acetylglucosamine | - | assimilation | from API 20NE |
| 123339 | 17632 ChEBI | nitrate | + | reduction | |
| 123339 | 17632 ChEBI | nitrate | + | respiration | |
| 68369 | 17632 ChEBI | nitrate | + | reduction | from API 20NE |
| 123339 | 16301 ChEBI | nitrite | + | reduction | |
| 123339 | 15882 ChEBI | phenol | - | degradation | |
| 68371 | 0 ChEBI | Potassium 2-ketogluconate | - | builds acid from | from API 50CH acid |
| 68371 | 0 ChEBI | Potassium 5-ketogluconate | - | builds acid from | from API 50CH acid |
| 68371 | 16634 ChEBI | raffinose | - | builds acid from | from API 50CH acid |
| 68371 | 15963 ChEBI | ribitol | - | builds acid from | from API 50CH acid |
| 68371 | 17814 ChEBI | salicin | - | builds acid from | from API 50CH acid |
| 68371 | 28017 ChEBI | starch | - | builds acid from | from API 50CH acid |
| 68371 | 17992 ChEBI | sucrose | - | builds acid from | from API 50CH acid |
| 68371 | 27082 ChEBI | trehalose | - | builds acid from | from API 50CH acid |
| 68369 | 27897 ChEBI | tryptophan | - | energy source | from API 20NE |
| 68371 | 32528 ChEBI | turanose | - | builds acid from | from API 50CH acid |
| 68369 | 16199 ChEBI | urea | - | hydrolysis | from API 20NE |
| 68371 | 17151 ChEBI | xylitol | - | builds acid from | from API 50CH acid |
| @ref | Metabolite | Is sensitive | Is resistant | |
|---|---|---|---|---|
| 123339 | 0129 (2,4-Diamino-6,7-di-iso-propylpteridine phosphate) |
| @ref | Value | Activity | Ec | |
|---|---|---|---|---|
| 68382 | acid phosphatase | + | 3.1.3.2 | from API zym |
| 123339 | 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 |
| 123339 | amylase | + | ||
| 68369 | arginine dihydrolase | - | 3.5.3.6 | from API 20NE |
| 68382 | beta-galactosidase | - | 3.2.1.23 | from API zym |
| 123339 | 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 |
| 123339 | caseinase | - | 3.4.21.50 | |
| 123339 | catalase | + | 1.11.1.6 | |
| 68382 | cystine arylamidase | - | 3.4.11.3 | from API zym |
| 68369 | cytochrome oxidase | + | 1.9.3.1 | from API 20NE |
| 123339 | DNase | - | ||
| 68382 | esterase (C 4) | + | from API zym | |
| 68382 | esterase lipase (C 8) | + | from API zym | |
| 123339 | gelatinase | - | ||
| 68369 | gelatinase | - | from API 20NE | |
| 123339 | lecithinase | + | ||
| 68382 | leucine arylamidase | + | 3.4.11.1 | from API zym |
| 123339 | lipase | + | ||
| 68382 | lipase (C 14) | + | from API zym | |
| 123339 | 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 | |
| 123339 | ornithine decarboxylase | - | 4.1.1.17 | |
| 123339 | oxidase | + | ||
| 123339 | protease | - | ||
| 68382 | trypsin | + | 3.4.21.4 | from API zym |
| 123339 | tryptophan deaminase | - | ||
| 123339 | urease | - | 3.5.1.5 | |
| 68369 | urease | - | 3.5.1.5 | from API 20NE |
| 68382 | valine arylamidase | + | from API zym |
| @ref | Reduction of nitratesNO3 | TRP | GLU_ Ferm | ADH (Arg) | URE | ESC | GEL | PNPG | GLU_ Assim | ARA | MNE | MAN | NAG | MAL | GNT | CAP | ADI | MLT | CIT | PAC | OX | |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 1954 | + | - | - | - | - | - | - | - | + | - | - | + | - | + | + | + | - | + | + | - | + | |
| 45406 | + | - | - | - | - | - | - | - | + | - | - | - | - | + | + | + | - | + | + | - | + | |
| 1954 | + | - | - | - | - | - | - | - | + | - | - | + | - | + | + | + | - | + | + | - | + | |
| 1954 | + | - | - | - | - | - | - | - | + | - | - | - | - | + | + | + | - | + | + | - | + |
| @ref | ControlQ | GLY | ERY | DARA | LARA | RIB | DXYL | LXYL | ADO | MDX | GAL | GLU | FRU | MNE | SBE | RHA | DUL | INO | MAN | SOR | MDM | MDG | NAG | AMY | ARB | ESC | SAL | CEL | MAL | LAC | MEL | SAC | TRE | INU | MLZ | RAF | AMD | GLYG | XLT | GEN | TUR | LYX | TAG | DFUC | LFUC | DARL | LARL | GNT | 2KG | 5KG | |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 123339 | not determinedn.d. | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - |
Global distribution of 16S sequence U26262 (>99% sequence identity) for Pseudomonas from Microbeatlas ![]()
| @ref | Description | Assembly level | INSDC accession | BV-BRC accession | IMG accession | NCBI tax ID | Score | |
|---|---|---|---|---|---|---|---|---|
| 66792 | ASM21960v1 assembly for Stutzerimonas stutzeri CGMCC 1.1803 | complete | 316 | 99.64 | ||||
| 124043 | ASM1602865v1 assembly for Stutzerimonas stutzeri FDAARGOS_875 | complete | 316 | 99.61 | ||||
| 66792 | Pseudomonas stutzeri DSM 5190 | complete | 316 | 79.15 | ||||
| 66792 | PSEUDT2 assembly for Stutzerimonas stutzeri | contig | 316 | 70.04 | ||||
| 66792 | PSEUDT2PL assembly for Stutzerimonas stutzeri | contig | 316 | 54.6 | ||||
| 67770 | ASM435949v1 assembly for Stutzerimonas stutzeri ATCC 17588 = LMG 11199 | contig | 96563 | 39.04 |
| @ref | Description | Accession | Length | Database | NCBI tax ID | |
|---|---|---|---|---|---|---|
| 20218 | Pseudomonas sp. 221 16S ribosomal RNA gene, partial sequence | EU244807 | 114 | 480846 | ||
| 20218 | Pseudomonas stutzeri ATCC 17588 = LMG 11199 16S ribosomal RNA gene, partial sequence | AF094748 | 1458 | 96563 | ||
| 20218 | Pseudomonas stutzeri partial 16S rRNA gene, type strain ICMP 12561T | AJ308315 | 1352 | 96563 | ||
| 20218 | Pseudomonas stutzeri CCUG 11256 16S ribosomal RNA gene, complete sequence | U26262 | 1456 | 316 | ||
| 20218 | Pseudomonas stutzeri partial 16S rRNA gene, strain DSM 5190T | AJ288151 | 1369 | 316 | ||
| 20218 | Pseudomonas stutzeri 16S rRNA gene | D84024 | 1342 | 316 | ||
| 20218 | Pseudomonas stutzeri gene for 16S rRNA, partial sequence, strain: NBRC 14165 | AB680573 | 1462 | 316 | ||
| 20218 | Pseudomonas stutzeri strain VKM B-975 16S ribosomal RNA gene, partial sequence | EU883663 | 1495 | 316 | ||
| 124043 | Stutzerimonas stutzeri strain ATCC 17588(T) 16S ribosomal RNA gene, partial sequence. | OQ135171 | 911 | 316 | ||
| 124043 | Pseudomonas stutzeri ATCC 17588 = LMG 11199 16S ribosomal RNA gene, partial sequence. | MW111154 | 649 | 96563 | ||
| 124043 | Pseudomonas stutzeri ATCC 17588 = LMG 11199 16S ribosomal RNA gene, partial sequence. | MH201145 | 1009 | 96563 | ||
| 124043 | Pseudomonas stutzeri ATCC 17588 = LMG 11199 16S ribosomal RNA gene, partial sequence. | MT027239 | 1472 | 96563 | ||
| 124043 | Pseudomonas stutzeri ATCC 17588 = LMG 11199 16S ribosomal RNA gene, partial sequence. | MW198075 | 601 | 96563 | ||
| 124043 | Pseudomonas stutzeri strain ATCC 17588 = LMG 11199 16S ribosomal RNA gene, partial sequence. | MW774444 | 885 | 316 | ||
| 124043 | Pseudomonas stutzeri strain CCUG 11256 16S ribosomal RNA gene, partial sequence. | MT539178 | 1336 | 316 | ||
| 124043 | Pseudomonas stutzeri strain CCUG 11256 16S ribosomal RNA gene, partial sequence. | MW774442 | 915 | 316 | ||
| 124043 | Stutzerimonas stutzeri strain DSM 5190 16S ribosomal RNA gene, partial sequence. | PV533955 | 602 | 316 | ||
| 124043 | Stutzerimonas stutzeri ATCC 17588 = LMG 11199 16S ribosomal RNA gene, partial sequence. | PV819309 | 500 | 96563 |
| @ref | Trait | Model | Prediction | Confidence in % | In training data |
|---|---|---|---|---|---|
| 125439 | oxygen_tolerance | BacteriaNetⓘ | obligate aerobe | 95.62 | no |
| 125439 | motility | BacteriaNetⓘ | yes | 87.59 | no |
| 125439 | gram_stain | BacteriaNetⓘ | negative | 98.99 | no |
| 125439 | spore_formation | BacteriaNetⓘ | no | 99.48 | no |
| @ref | Trait | Model | Prediction | Confidence in % | In training data |
|---|---|---|---|---|---|
| 125438 | gram-positive | gram-positiveⓘ | no | 99.00 | no |
| 125438 | anaerobic | anaerobicⓘ | no | 97.81 | no |
| 125438 | aerobic | aerobicⓘ | yes | 91.56 | yes |
| 125438 | spore-forming | spore-formingⓘ | no | 88.55 | no |
| 125438 | thermophilic | thermophileⓘ | no | 98.50 | no |
| 125438 | flagellated | motile2+ⓘ | yes | 91.51 | no |
| Topic | Title | Authors | Journal | DOI | Year | |
|---|---|---|---|---|---|---|
| Use of Taguchi design for optimization of diesel-oil biodegradation using consortium of Pseudomonas stutzeri, Cellulosimicrobium cellulans, Acinetobacter baumannii and Pseudomonas balearica isolated from tarball in Terengganu Beach, Malaysia. | Nkem BM, Halimoon N, Yusoff FM, Johari WLW. | J Environ Health Sci Eng | 10.1007/s40201-022-00812-3 | 2022 | ||
| Lighting the Path: Raman Spectroscopy's Journey Through the Microbial Maze. | Salbreiter M, Frempong SB, Even S, Wagenhaus A, Girnus S, Rosch P, Popp J. | Molecules | 10.3390/molecules29245956 | 2024 | ||
| Phylogeny | Siamese Networks for Clinically Relevant Bacteria Classification Based on Raman Spectroscopy. | Contreras J, Mostafapour S, Popp J, Bocklitz T. | Molecules | 10.3390/molecules29051061 | 2024 | |
| Characterization of the endophytic bacterial community of Bituminaria bituminosa plant grown in vitro and its interaction with the plant extract. | Chiellini C, De Leo M, Longo V, Pieracci Y, Pistelli L. | Front Plant Sci | 10.3389/fpls.2022.1076573 | 2022 | ||
| Inactivation Effect of Violet and Blue Light on ESKAPE Pathogens and Closely Related Non-pathogenic Bacterial Species - A Promising Tool Against Antibiotic-Sensitive and Antibiotic-Resistant Microorganisms. | Hoenes K, Bauer R, Meurle T, Spellerberg B, Hessling M. | Front Microbiol | 10.3389/fmicb.2020.612367 | 2020 | ||
| Can We Use Functional Genetics to Predict the Fate of Nitrogen in Estuaries? | Raes EJ, Karsh K, Kessler AJ, Cook PLM, Holmes BH, van de Kamp J, Bodrossy L, Bissett A. | Front Microbiol | 10.3389/fmicb.2020.01261 | 2020 | ||
| The Emerging Trend of Bio-Engineering Approaches for Microbial Nanomaterial Synthesis and Its Applications. | Dhanker R, Hussain T, Tyagi P, Singh KJ, Kamble SS. | Front Microbiol | 10.3389/fmicb.2021.638003 | 2021 | ||
| Biology of Pseudomonas stutzeri. | Lalucat J, Bennasar A, Bosch R, Garcia-Valdes E, Palleroni NJ. | Microbiol Mol Biol Rev | 10.1128/mmbr.00047-05 | 2006 | ||
| Enzymology | Bacterial community dynamics during the application of a Myxococcus xanthus-inoculated culture medium used for consolidation of ornamental limestone. | Pinar G, Jimenez-Lopez C, Sterflinger K, Ettenauer J, Jroundi F, Fernandez-Vivas A, Gonzalez-Munoz MT. | Microb Ecol | 10.1007/s00248-010-9661-2 | 2010 | |
| Phylogeny | High-resolution differentiation of Cyanobacteria by using rRNA-internal transcribed spacer denaturing gradient gel electrophoresis. | Janse I, Meima M, Kardinaal WE, Zwart G. | Appl Environ Microbiol | 10.1128/aem.69.11.6634-6643.2003 | 2003 | |
| Characterization of Pseudomonas stutzeri strain AY4 with nitrogen removal and application in wastewater treatment. | Fu W, Li X, Duan P, Zhao Y. | Microbiol Spectr | 10.1128/spectrum.03356-24 | 2025 | ||
| Bioprospecting secondary metabolites with antimicrobial properties from soil bacteria in high-temperature ecosystems. | Demisie S, Oh DC, Abera A, Tasew G, Satessa GD, Fufa F, Shenkutie AM, Wolday D, Tafess K. | Microb Cell Fact | 10.1186/s12934-024-02589-6 | 2024 | ||
| Metabolism | Insights into the Acceleration Mechanism of Intracellular N and Fe Co-doped Carbon Dots on Anaerobic Denitrification Using Proteomics and Metabolomics Techniques. | Li Q, Lu H, Tian T, Fu Z, Dai Y, Li P, Zhou J. | Environ Sci Technol | 10.1021/acs.est.3c08625 | 2024 | |
| Complete Genome Sequence of Stutzerimonas stutzeri Strain SOCE 002, a Marine Bacterium Isolated from the Surface Seawater of Dapeng Bay. | Guo J, Xu S, Liu Y, Zhang C, Hou S. | Microbiol Resour Announc | 10.1128/mra.00150-23 | 2023 | ||
| Novel biodegradation pathway of insecticide flonicamid mediated by an amidase and its unusual substrate spectrum. | Jiang H, Yuan P, Ding J, Wu H, Wang L, Chen K, Jiang N, Dai Y. | J Hazard Mater | 10.1016/j.jhazmat.2022.129952 | 2023 | ||
| Enzymology | Effects of Weak Electric Fields on the Denitrification Performance of Pseudomonas stutzeri: Insights into Enzymes and Metabolic Pathways | Zhu X, Lin F, Sun J, Li X, Zhu G, Lu Y, Sun L, Wang H. | Microorganisms | 2024 | ||
| Genetics | Selective enrichment, identification, and isolation of diclofenac, ibuprofen, and carbamazepine degrading bacteria from a groundwater biofilm. | Papai M, Benedek T, Tancsics A, Bornemann TLV, Plewka J, Probst AJ, Hussein D, Maroti G, Menashe O, Kriszt B. | Environ Sci Pollut Res Int | 10.1007/s11356-022-24975-6 | 2023 | |
| Draft Genome Sequence of Pseudomonas sp. Strain T2.31D-1, Isolated from a Drilling Core Sample Obtained 414 Meters below Surface in the Iberian Pyrite Belt. | Martinez JM, Escudero C, Leandro T, Mateos G, Amils R. | Microbiol Resour Announc | 10.1128/mra.01165-20 | 2021 | ||
| Efficient Biodegradation of the Neonicotinoid Insecticide Flonicamid by Pseudaminobacter salicylatoxidans CGMCC 1.17248: Kinetics, Pathways, and Enzyme Properties | Zhao Y, Yuan J, Song K, Yin C, Chen L, Yang K, Yang J, Dai Y. | Microorganisms | 2024 | |||
| Genetics | Comparative Genomic Analysis of Three Pseudomonas Species Isolated from the Eastern Oyster (Crassostrea virginica) Tissues, Mantle Fluid, and the Overlying Estuarine Water Column. | Pathak A, Stothard P, Chauhan A. | Microorganisms | 10.3390/microorganisms9030490 | 2021 | |
| Bioremediation of acetamiprid and sulfoxaflor co-contamination by Ensifer sp. DA6 and characterization of a novel nitrile hydratase involved. | Yang W, Kang J, Shao Y, Geng Y, Zhang Y, Liu R, Chen G. | Front Microbiol | 10.3389/fmicb.2025.1705774 | 2025 | ||
| Diversity of Mixotrophic Neutrophilic Thiosulfate- and Iron-Oxidizing Bacteria from Deep-Sea Hydrothermal Vents. | He Y, Zeng X, Xu F, Shao Z. | Microorganisms | 10.3390/microorganisms11010100 | 2022 | ||
| The Pseudomonas stutzeri-Specific Regulatory Noncoding RNA NfiS Targets katB mRNA Encoding a Catalase Essential for Optimal Oxidative Resistance and Nitrogenase Activity. | Zhang H, Zhan Y, Yan Y, Liu Y, Hu G, Wang S, Yang H, Qiu X, Liu Y, Li J, Lu W, Elmerich C, Lin M. | J Bacteriol | 10.1128/jb.00334-19 | 2019 | ||
| Enzymology | Decolorization and biodegradation of textile di-azo dye Acid Blue 113 by Pseudomonas stutzeri AK6. | Joshi AU, Hinsu AT, Kotadiya RJ, Rank JK, Andharia KN, Kothari RK. | 3 Biotech | 10.1007/s13205-020-02205-5 | 2020 | |
| Phenotype | Deciphering the rhizosphere microbiota composition of nature farming soybean (Glycine max L.) with different nodulation phenotypes. | Agyekum DVA, Dastogeer KMG, Okazaki S. | BMC Plant Biol | 10.1186/s12870-025-06566-y | 2025 | |
| An Evaluation of the Sensitivity and Applicability of a Droplet Digital Polymerase Chain Reaction Assay to Simultaneously Detect Pseudomonas aeruginosa and Pseudomonas fragi in Foods. | Huang J, Zhai L, Wang J, Sun X, Wang B, Wei Z. | Foods | 10.3390/foods13101453 | 2024 | ||
| Isolation of Novel Bacterial Strains Pseudomonas extremaustralis CSW01 and Stutzerimonas stutzeri CSW02 from Sewage Sludge for Paracetamol Biodegradation. | Vargas-Ordonez A, Aguilar-Romero I, Villaverde J, Madrid F, Morillo E. | Microorganisms | 10.3390/microorganisms11010196 | 2023 | ||
| Metabolism | Enhancement of mixture pollutant biodegradation efficiency using a bacterial consortium under static magnetic field. | Mansouri A, Abbes C, Ben Mouhoub R, Ben Hassine S, Landoulsi A. | PLoS One | 10.1371/journal.pone.0208431 | 2019 | |
| Biotechnology | Survival and virulence of Acinetobacter baumannii in microbial mixtures. | Tayabali AF, Dirieh Y, Groulx E, Elfarawi N, Di Fruscio S, Melanson K, Moteshareie H, Al-Gafari M, Navarro M, Bernatchez S, Demissie Z, Anoop V. | BMC Microbiol | 10.1186/s12866-024-03471-6 | 2024 | |
| Metabolism | Influence of copper on expression of nirS, norB and nosZ and the transcription and activity of NIR, NOR and N2 OR in the denitrifying soil bacteria Pseudomonas stutzeri. | Black A, Hsu PC, Hamonts KE, Clough TJ, Condron LM. | Microb Biotechnol | 10.1111/1751-7915.12352 | 2016 | |
| Complete genome sequence of Pseudomonas stutzeri strain RCH2 isolated from a Hexavalent Chromium [Cr(VI)] contaminated site. | Chakraborty R, Woo H, Dehal P, Walker R, Zemla M, Auer M, Goodwin LA, Kazakov A, Novichkov P, Arkin AP, Hazen TC. | Stand Genomic Sci | 10.1186/s40793-017-0233-7 | 2017 | ||
| Microbial ingress and in vitro degradation enhanced by glucose on bioabsorbable Mg-Li-Ca alloy. | Li LY, Han ZZ, Zeng RC, Qi WC, Zhai XF, Yang Y, Lou YT, Gu T, Xu D, Duan JZ. | Bioact Mater | 10.1016/j.bioactmat.2020.06.014 | 2020 | ||
| Genetics | Genome Sequence of Pseudomonas stutzeri 273 and Identification of the Exopolysaccharide EPS273 Biosynthesis Locus. | Wu S, Zheng R, Sha Z, Sun C. | Mar Drugs | 10.3390/md15070218 | 2017 | |
| Genetics | Genomic Analysis of Pseudomonas sp. Strain SCT, an Iodate-Reducing Bacterium Isolated from Marine Sediment, Reveals a Possible Use for Bioremediation. | Harada M, Ito K, Nakajima N, Yamamura S, Tomita M, Suzuki H, Amachi S. | G3 (Bethesda) | 10.1534/g3.118.200978 | 2019 | |
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| Phylogeny | Indigenous plant growth-promoting rhizobacteria for cocoa growth enhancement and Phytophthora pod rot management in coastal Andhra Pradesh, India. | Neeraja B, Kumari VP, Gopal K, Madhu GS, Kumar KV, Madhumathi T, Rao NBVC, Sayiprathap BR. | BMC Plant Biol | 10.1186/s12870-025-07166-6 | 2025 | |
| Genetics | Synthetic Biology Toolbox for Nitrogen-Fixing Soil Microbes. | Venkataraman M, Ynigez-Gutierrez A, Infante V, MacIntyre A, Fernandes-Junior PI, Ane JM, Pfleger B. | ACS Synth Biol | 10.1021/acssynbio.3c00414 | 2023 | |
| Phylogeny | Genomic characteristics of antimicrobial resistance and virulence factors of carbapenem-resistant Stutzerimonas nitrititolerans isolated from the clinical specimen. | Shi L, Zhang Y, Zhan Y, Wang X, Xu J, Wang H, Zeng M, Lu Z. | BMC Microbiol | 10.1186/s12866-024-03546-4 | 2024 | |
| Pathogenicity | Pangenomic landscapes shape performances of a synthetic genetic circuit across Stutzerimonas species. | Chan DTC, Bernstein HC. | mSystems | 10.1128/msystems.00849-24 | 2024 | |
| Genetics | The effects of Pseudomonas strains isolated from Achnatherum inebrians on plant growth: A genomic perspective. | Liang J, Liu B, Christensen MJ, Li C, Zhang X, Nan Z. | Environ Microbiol Rep | 10.1111/1758-2229.70011 | 2024 | |
| Response surface optimization for cellulase production from Enterococcus faecium and Stutzerimonas stutzeri isolated from Gossypium arboretum and Solanum melongena soil. | Shaikh M, Makarani N, Kumar K. | Sci Rep | 10.1038/s41598-025-10256-y | 2025 | ||
| Phylogeny | The potential of Hungarian bauxite residue isolates for biotechnological applications. | Feigl V, Medgyes-Horvath A, Kari A, Torok A, Bombolya N, Berkl Z, Farkas E, Fekete-Kertesz I. | Biotechnol Rep (Amst) | 10.1016/j.btre.2023.e00825 | 2024 | |
| Isolation and Characterization of Plant Growth-Promoting Bacteria from the Rhizosphere of Medicinal and Aromatic Plant Minthostachys verticillata. | Meneguzzi RDV, Fernandez M, Cappellari LDR, Giordano W, Banchio E. | Plants (Basel) | 10.3390/plants13152062 | 2024 | ||
| Genetics | Identification of a putative novel polycyclic aromatic hydrocarbon-biodegrading gene cluster in a marine Roseobacteraceae bacterium Sagittula sp. MA-2. | Abe M, Sakai M, Kanaly RA, Mori JF. | Microbiol Spectr | 10.1128/spectrum.01074-24 | 2025 | |
| Enzymology | Clarifying Microbial Nitrous Oxide Reduction under Aerobic Conditions: Tolerant, Intolerant, and Sensitive. | Wang Z, Vishwanathan N, Kowaliczko S, Ishii S. | Microbiol Spectr | 10.1128/spectrum.04709-22 | 2023 | |
| Genetics | Comparative genomics of Stutzerimonas balearica (Pseudomonas balearica): diversity, habitats, and biodegradation of aromatic compounds. | Salva-Serra F, Perez-Pantoja D, Donoso RA, Jaen-Luchoro D, Fernandez-Juarez V, Engstrom-Jakobsson H, Moore ERB, Lalucat J, Bennasar-Figueras A. | Front Microbiol | 10.3389/fmicb.2023.1159176 | 2023 | |
| Characterization and genomic analysis of a novel lytic phage vB_PstM_ZRG1 infecting Stutzerimonas stutzeri, representing a new viral genus, Elithevirus. | Chen Y, Guo R, Liang Y, Luo L, Han Y, Wang H, Zhang H, Liu Y, Zheng K, Shao H, Sung YY, Mok WJ, Wong LL, McMinn A, Wang M. | Virus Res | 10.1016/j.virusres.2023.199183 | 2023 | ||
| Genetic basis of biofilm formation and salt adaptation in the plant-beneficial strain Stutzerimonas stutzeri MJL19 | Perez-Padilla V, Molina-Henares M, Udaondo Z, Ramos-Gonzalez M, Espinosa-Urgel M. | Appl Microbiol Biotechnol | 2025 | |||
| Characterization and genomic analysis of Stutzerimonas stutzeri phage vB_PstS_ZQG1, representing a novel viral genus. | Ge F, Guo R, Liang Y, Chen Y, Shao H, Sung YY, Mok WJ, Wong LL, McMinn A, Wang M. | Virus Res | 10.1016/j.virusres.2023.199226 | 2023 | ||
| Soil properties drive nitrous oxide accumulation patterns by shaping denitrifying bacteriomes. | Bano S, Wu Q, Yu S, Wang X, Zhang X. | Environ Microbiome | 10.1186/s40793-024-00643-9 | 2024 | ||
| A Study on the Potential of Valorizing Sargassum latifolium into Biofuels and Sustainable Value-Added Products. | El-Gendy NS, Hosny M, Ismail AR, Radwan AA, Ali BA, Ali HR, El-Salamony RA, Abdelsalam KM, Mubarak M. | Int J Biomater | 10.1155/2024/5184399 | 2024 | ||
| Metabolism | Divulging diazotrophic bacterial community structure in Kuwait desert ecosystems and their N2-fixation potential. | Suleiman MK, Quoreshi AM, Bhat NR, Manuvel AJ, Sivadasan MT. | PLoS One | 10.1371/journal.pone.0220679 | 2019 | |
| A pirin-like protein from Pseudomonas stutzeri and its quercetinase activity. | Widiatningrum T, Maeda S, Kataoka K, Sakurai T. | Biochem Biophys Rep | 10.1016/j.bbrep.2015.08.001 | 2015 | ||
| Purines enrich root-associated Pseudomonas and improve wild soybean growth under salt stress. | Zheng Y, Cao X, Zhou Y, Ma S, Wang Y, Li Z, Zhao D, Yang Y, Zhang H, Meng C, Xie Z, Sui X, Xu K, Li Y, Zhang CS. | Nat Commun | 10.1038/s41467-024-47773-9 | 2024 | ||
| Microbiological insight into various underground gas storages in Vienna Basin focusing on methanogenic Archaea. | Hanisakova N, Vitezova M, Vitez T, Kushkevych I, Kotrlova E, Novak D, Lochman J, Zavada R. | Front Microbiol | 10.3389/fmicb.2023.1293506 | 2023 | ||
| Marine nitrogen-fixers in the Canadian Arctic Gateway are dominated by biogeographically distinct noncyanobacterial communities. | Robicheau BM, Tolman J, Rose S, Desai D, LaRoche J. | FEMS Microbiol Ecol | 10.1093/femsec/fiad122 | 2023 | ||
| Enzymology | Effect of Copper on Expression of Functional Genes and Proteins Associated with Bradyrhizobium diazoefficiens Denitrification. | Pacheco PJ, Cabrera JJ, Jimenez-Leiva A, Bedmar EJ, Mesa S, Tortosa G, Delgado MJ. | Int J Mol Sci | 10.3390/ijms23063386 | 2022 | |
| Growth yield of denitrifiers using nitrous oxide as a terminal electron acceptor. | Okereke GU. | World J Microbiol Biotechnol | 10.1007/bf00656518 | 1993 | ||
| Metabolism | Comparison of cytochromes from anaerobically and aerobically grown cells of Pseudomonas perfectomarinus. | Liu MC, Payne WJ, Peck HD, LeGall J. | J Bacteriol | 10.1128/jb.154.1.278-286.1983 | 1983 | |
| Metabolism | PRELIMINARY ENZYMATIC EVENTS IN ASPARAGINE-DEPENDENT DENITRIFICATION BY PSEUDOMONAS PERFECTOMARINUS. | BEST AN, PAYNE WJ. | J Bacteriol | 10.1128/jb.89.4.1051-1054.1965 | 1965 | |
| Metabolism | Isolation and characterization of transposon Tn5-induced mutants of Pseudomonas perfectomarina defective in nitrous oxide respiration. | Zumft WG, Dohler K, Korner H. | J Bacteriol | 10.1128/jb.163.3.918-924.1985 | 1985 | |
| Metabolism | Modulation by copper of the products of nitrite respiration in Pseudomonas perfectomarinus. | Matsubara T, Frunzke K, Zumft WG. | J Bacteriol | 10.1128/jb.149.3.816-823.1982 | 1982 | |
| Metabolism | Temperature and oxygen level determine N2 O respiration activities of heterotrophic N2 O-reducing bacteria: Biokinetic study. | Zhou Y, Suenaga T, Qi C, Riya S, Hosomi M, Terada A | Biotechnol Bioeng | 10.1002/bit.27654 | 2020 | |
| Phylogeny | Monitoring of oil pollution at Gemsa Bay and bioremediation capacity of bacterial isolates with biosurfactants and nanoparticles. | El-Sheshtawy HS, Khalil NM, Ahmed W, Abdallah RI | Mar Pollut Bull | 10.1016/j.marpolbul.2014.07.059 | 2014 | |
| Metabolism | Technoeconomic assessment of phenanthrene degradation by Pseudomonas stutzeri CECT 930 in a batch bioreactor. | Moscoso F, Deive FJ, Longo MA, Sanroman MA | Bioresour Technol | 10.1016/j.biortech.2011.10.053 | 2011 | |
| Metabolism | Assessment of a process to degrade metal working fluids using Pseudomonas stutzeri CECT 930 and indigenous microbial consortia. | Moscoso F, Deive FJ, Villar P, Pena R, Herrero L, Longo MA, Sanroman MA | Chemosphere | 10.1016/j.chemosphere.2011.10.012 | 2011 | |
| Genetics | Complete genome sequence of the type strain Pseudomonas stutzeri CGMCC 1.1803. | Chen M, Yan Y, Zhang W, Lu W, Wang J, Ping S, Lin M | J Bacteriol | 10.1128/JB.06061-11 | 2011 | |
| Metabolism | Natural and engineered hydroxyectoine production based on the Pseudomonas stutzeri ectABCD-ask gene cluster. | Seip B, Galinski EA, Kurz M | Appl Environ Microbiol | 10.1128/AEM.02124-10 | 2010 | |
| Phylogeny | Cultivation characteristics of denitrification by thermophilic Geobacillus sp. strain TDN01. | Mishima M, Iwata K, Nara K, Matsui T, Shigeno T, Omori T | J Gen Appl Microbiol | 10.2323/jgam.55.81 | 2009 | |
| Metabolism | [Mechanism of cyanide and thiocyanate decomposition by an association of Pseudomonas putida and Pseudomonas stutzeri strains]. | Grigor'eva NV, Kondrat'eva TF, Krasil'nikova EN, Karavaiko GI | Mikrobiologiia | 2006 | ||
| Denitrification activity of the bacterium Pseudomonas sp. ASM-2-3 isolated from the Ariake Sea tideland. | Kariminiaae-Hamedaani HR, Kanda K, Kato F | J Biosci Bioeng | 10.1016/S1389-1723(04)70163-2 | 2004 | ||
| Metabolism | Anaerobic oxidation of 2-chloroethanol under denitrifying conditions by Pseudomonas stutzeri strain JJ. | Dijk JA, Stams AJ, Schraa G, Ballerstedt H, de Bont JA, Gerritse J | Appl Microbiol Biotechnol | 10.1007/s00253-003-1346-z | 2003 | |
| Phylogeny | The rice inoculant strain Alcaligenes faecalis A15 is a nitrogen-fixing Pseudomonas stutzeri. | Vermeiren H, Willems A, Schoofs G, de Mot R, Keijers V, Hai W, Vanderleyden J | Syst Appl Microbiol | 10.1016/S0723-2020(99)80068-X | 1999 | |
| Metabolism | Pyrimidine biosynthesis in Pseudomonas stutzeri ATCC 17588. | West TP | Antonie Van Leeuwenhoek | 10.1023/a:1000399219144 | 1997 | |
| Phylogeny | Genome organization of Pseudomonas stutzeri and resulting taxonomic and evolutionary considerations. | Ginard M, Lalucat J, Tummler B, Romling U | Int J Syst Bacteriol | 10.1099/00207713-47-1-132 | 1997 | |
| Genetics | Investigation of the solution conformation of cytochrome c-551 from Pseudomonas stutzeri. | Cai M, Bradford EG, Timkovich R | Biochemistry | 10.1021/bi00151a030 | 1992 | |
| Enzymology | High-frequency electroporation and maintenance of pUC- and pBR-based cloning vectors in Pseudomonas stutzeri. | Pemberton JM, Penfold RJ | Curr Microbiol | 10.1007/BF01570078 | 1992 | |
| Transcriptome | Exploring the Functions of Efficient Canonical Denitrifying Bacteria as N(2)O Sinks: Implications from (15)N Tracer and Transcriptome Analyses. | Oba K, Suenaga T, Kuroiwa M, Riya S, Terada A | Environ Sci Technol | 10.1021/acs.est.2c02119 | 2022 | |
| Isolation of highly copper-resistant bacteria from deep-sea hydrothermal fields and description of a novel species Marinobacter metalliresistant sp. nov. | Yu T, Qin M, Shao Z, Zhao Y, Zeng X. | Front Microbiol | 10.3389/fmicb.2024.1390451 | 2024 | ||
| Phylogeny | Pseudomonas flavocrustae sp. nov., an endophyte with plant growth promoting traits isolated from Passiflora incarnata. | Cueva-Yesquen LG, Sartoratto A, da Silva Santos A, de Melo IS, Fantinatti-Garboggini F. | Sci Rep | 10.1038/s41598-024-64349-1 | 2024 | |
| Genetics | Stutzerimonas decontaminans sp. nov. isolated from marine polluted sediments. | Mulet M, Gomila M, Lalucat J, Bosch R, Rossello-Mora R, Garcia-Valdes E. | Syst Appl Microbiol | 10.1016/j.syapm.2023.126400 | 2023 | |
| Genetics | Genome-Based Taxonomy of the Genus Stutzerimonas and Proposal of S. frequens sp. nov. and S. degradans sp. nov. and Emended Descriptions of S. perfectomarina and S. chloritidismutans. | Gomila M, Mulet M, Garcia-Valdes E, Lalucat J. | Microorganisms | 10.3390/microorganisms10071363 | 2022 | |
| Phylogeny | Pseudomonas phenolilytica sp. nov., a novel phenol-degrading bacterium. | Kujur RRA, Das SK | Arch Microbiol | 10.1007/s00203-022-02912-y | 2022 | |
| Phylogeny | Pseudomonas lopnurensis sp. nov., an endophytic bacterium isolated from Populus euphratica at the ancient Ugan river. | Mamtimin T, Anwar N, Abdurahman M, Kurban M, Rozahon M, Mamtimin H, Hamood B, Rahman E, Wu M | Antonie Van Leeuwenhoek | 10.1007/s10482-021-01524-8 | 2021 | |
| Phylogeny | Pseudomonas zhaodongensis sp. nov., isolated from saline and alkaline soils. | Zhang L, Pan Y, Wang K, Zhang X, Zhang C, Zhang S, Fu X, Jiang J | Int J Syst Evol Microbiol | 10.1099/ijs.0.000057 | 2015 | |
| Phylogeny | Pseudomonas songnenensis sp. nov., isolated from saline and alkaline soils in Songnen Plain, China. | Zhang L, Pan Y, Wang K, Zhang X, Zhang S, Fu X, Zhang C, Jiang J | Antonie Van Leeuwenhoek | 10.1007/s10482-014-0365-3 | 2014 | |
| Phylogeny | Pseudomonas kunmingensis sp. nov., an exopolysaccharide-producing bacterium isolated from a phosphate mine. | Xie F, Ma H, Quan S, Liu D, Chen G, Chao Y, Qian S | Int J Syst Evol Microbiol | 10.1099/ijs.0.055632-0 | 2013 | |
| Phylogeny | Pseudomonas chloritidismutans sp. nov., a non-denitrifying, chlorate-reducing bacterium. | Wolterink AFWM, Jonker AB, Kengen SWM, Stams AJM | Int J Syst Evol Microbiol | 10.1099/00207713-52-6-2183 | 2002 | |
| Phylogeny | 16S rRNA gene sequence analysis relative to genomovars of Pseudomonas stutzeri and proposal of Pseudomonas balearica sp. nov. | Bennasar A, Rossello-Mora R, Lalucat J, Moore ER | Int J Syst Bacteriol | 10.1099/00207713-46-1-200 | 1996 | |
| Phylogeny | Pseudomonas marianensis sp. nov., a marine bacterium isolated from deep-sea sediments of the Mariana Trench. | Yang Y, Gao Y, Liu Y, Liu B, Wang D, Xu Y, Wei Y | Arch Microbiol | 10.1007/s00203-022-03250-9 | 2022 |
| #1954 | Leibniz Institut DSMZ-Deutsche Sammlung von Mikroorganismen und Zellkulturen GmbH ; Curators of the DSMZ; DSM 5190 |
| #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 ) |
| #20218 | Verslyppe, B., De Smet, W., De Baets, B., De Vos, P., Dawyndt P.: StrainInfo introduces electronic passports for microorganisms.. Syst Appl Microbiol. 37: 42 - 50 2014 ( DOI 10.1016/j.syapm.2013.11.002 , PubMed 24321274 ) |
| #40511 | ; Curators of the CIP; |
| #45406 | Culture Collection University of Gothenburg (CCUG) ; Curators of the CCUG; CCUG 11256 |
| #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) . |
| #67770 | Japan Collection of Microorganism (JCM) ; Curators of the JCM; |
| #68369 | Automatically annotated from API 20NE . |
| #68371 | Automatically annotated from API 50CH acid . |
| #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 . |
| #123339 | Collection of Institut Pasteur ; Curators of the CIP; CIP 103022 |
| #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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