Strain identifier

BacDive ID: 12925

Type strain: No

Species: Pseudomonas putida

Strain Designation: MT-I1

Strain history: <- J. H. Wübbeler, Univ. Münster, Inst. Mol. Microbiol. Biotechnol., Germany; MT-I1 <- M. Toups

NCBI tax ID(s): 303 (species)

For citation purpose refer to the digital object identifier (doi) of the current version.
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General

@ref: 15882

BacDive-ID: 12925

DSM-Number: 21680

keywords: Bacteria, mesophilic, human pathogen

description: Pseudomonas putida MT-I1 is a mesophilic human pathogen that was isolated from activated sludge of municipal sewage treatment plant Münster-Coerde.

NCBI tax id

  • NCBI tax id: 303
  • Matching level: species

strain history

  • @ref: 15882
  • history: <- J. H. Wübbeler, Univ. Münster, Inst. Mol. Microbiol. Biotechnol., Germany; MT-I1 <- M. Toups

doi: 10.13145/bacdive12925.20230509.8.1

Name and taxonomic classification

LPSN

  • @ref: 20215
  • description: domain/bacteria
  • keyword: phylum/pseudomonadota
  • domain: Bacteria
  • phylum: Pseudomonadota
  • class: Gammaproteobacteria
  • order: Pseudomonadales
  • family: Pseudomonadaceae
  • genus: Pseudomonas
  • species: Pseudomonas putida
  • full scientific name: Pseudomonas putida (Trevisan 1889) Migula 1895 (Approved Lists 1980)
  • synonyms

    @refsynonym
    20215Bacillus putidus
    20215Arthrobacter siderocapsulatus

@ref: 15882

domain: Bacteria

phylum: Proteobacteria

class: Gammaproteobacteria

order: Pseudomonadales

family: Pseudomonadaceae

genus: Pseudomonas

species: Pseudomonas putida

full scientific name: Pseudomonas putida (Trevisan 1889) Migula 1895

strain designation: MT-I1

type strain: no

Culture and growth conditions

culture medium

  • @ref: 15882
  • name: TRYPTICASE SOY BROTH AGAR (DSMZ Medium 535)
  • growth: yes
  • link: https://mediadive.dsmz.de/medium/535
  • composition: Name: TRYPTICASE SOY BROTH AGAR (DSMZ Medium 535) Composition: Trypticase soy broth 30.0 g/l Agar 15.0 g/l Distilled water

culture temp

  • @ref: 15882
  • growth: positive
  • type: growth
  • temperature: 28
  • range: mesophilic

Physiology and metabolism

metabolite utilization

@refChebi-IDmetaboliteutilization activitykind of utilization tested
6836925115malate+assimilation
6836917128adipate-assimilation
6836927689decanoate+assimilation
6836924265gluconate+assimilation
6836917306maltose-assimilation
6836959640N-acetylglucosamine-assimilation
6836916899D-mannitol-assimilation
6836916024D-mannose-assimilation
6836930849L-arabinose-assimilation
6836917634D-glucose+assimilation
683695291gelatin-hydrolysis
683694853esculin-hydrolysis
6836916199urea-hydrolysis
6836929016arginine+hydrolysis
6836917634D-glucose-fermentation
6836927897tryptophan-energy source
6836917632nitrate-reduction

metabolite production

  • @ref: 68369
  • Chebi-ID: 35581
  • metabolite: indole
  • production: no

metabolite tests

  • @ref: 68369
  • Chebi-ID: 35581
  • metabolite: indole
  • indole test: -

enzymes

@refvalueactivityec
68369cytochrome oxidase+1.9.3.1
68369gelatinase-
68369beta-glucosidase-3.2.1.21
68369urease-3.5.1.5
68369arginine dihydrolase+3.5.3.6

API 20NE

@refNO3TRPGLU_ FermADH ArgUREESCGELPNPGGLU_ AssimARAMNEMANNAGMALGNTCAPADIMLTCITPACOX
15882---+----+-----++-++++

Isolation, sampling and environmental information

isolation

  • @ref: 15882
  • sample type: activated sludge of municipal sewage treatment plant Münster-Coerde
  • geographic location: Münster-Coerde
  • country: Germany
  • origin.country: DEU
  • continent: Europe

isolation source categories

Cat1Cat2Cat3
#Engineered#Waste#Activated sludge
#Engineered#Waste#Water treatment plant

Safety information

risk assessment

  • @ref: 15882
  • pathogenicity human: yes
  • pathogenicity animal: yes
  • biosafety level: 2
  • biosafety level comment: Risk group (German classification)

External links

@ref: 15882

culture collection no.: DSM 21680

straininfo link

  • @ref: 82138
  • straininfo: 403811

literature

  • topic: Phylogeny
  • Pubmed-ID: 19789984
  • title: Microbial utilization of the industrial wastewater pollutants 2-ethylhexylthioglycolic acid and iso-octylthioglycolic acid by aerobic gram-negative bacteria.
  • authors: Toups M, Wubbeler JH, Steinbuchel A
  • journal: Biodegradation
  • DOI: 10.1007/s10532-009-9302-y
  • year: 2009
  • mesh: Aerobiosis, Biodegradation, Environmental, Environmental Microbiology, Gram-Negative Aerobic Bacteria/classification/genetics/isolation & purification/*metabolism, Industrial Waste/*analysis, Molecular Sequence Data, Phylogeny, Sulfur Compounds/*metabolism, Water Pollutants, Chemical/*metabolism
  • topic2: Metabolism

Reference

@idauthorscataloguedoi/urltitle
15882Curators of the DSMZLeibniz Institut DSMZ-Deutsche Sammlung von Mikroorganismen und Zellkulturen GmbH (DSM 21680)https://www.dsmz.de/collection/catalogue/details/culture/DSM-21680
20215Parte, A.C., Sardà Carbasse, J., Meier-Kolthoff, J.P., Reimer, L.C. and Göker, M.10.1099/ijsem.0.004332List of Prokaryotic names with Standing in Nomenclature (LPSN) moves to the DSMZ
68369Automatically annotated from API 20NE
82138Reimer, L.C., Lissin, A.,Schober, I., Witte,J.F., Podstawka, A., Lüken, H., Bunk, B.,Overmann, J.10.60712/SI-ID403811.1StrainInfo: A central database for resolving microbial strain identifiers