Klebsiella pneumoniae 240 is a facultative anaerobe, Gram-negative, rod-shaped human pathogen of the family Enterobacteriaceae.
Gram-negative rod-shaped facultative anaerobe human pathogen genome sequence Bacteria| @ref 20215 |
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| Domain Bacteria |
| Phylum Pseudomonadota |
| Class Gammaproteobacteria |
| Order Enterobacterales |
| Family Enterobacteriaceae |
| Genus Klebsiella |
| Species Klebsiella pneumoniae |
| Full scientific name Klebsiella pneumoniae (Schroeter 1886) Trevisan 1887 (Approved Lists 1980) |
| Synonyms (1) |
| @ref | Name | Growth | Medium link | Composition | |
|---|---|---|---|---|---|
| 959 | COLUMBIA BLOOD MEDIUM (DSMZ Medium 693) | Medium recipe at MediaDive | Name: COLUMBIA BLOOD MEDIUM (DSMZ Medium 693) Composition: Defibrinated sheep blood 50.0 g/l Columbia agar base | ||
| 959 | 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 | ||
| 35132 | MEDIUM 3 - Columbia agar | Columbia agar (39.000 g);distilled water (1000.000 ml) | |||
| 121883 | CIP Medium 3 | Medium recipe at CIP |
| @ref | Spore formation | Confidence | |
|---|---|---|---|
| 125439 | 92.6 |
| @ref | Chebi-ID | Metabolite | Utilization activity | Kind of utilization tested | |
|---|---|---|---|---|---|
| 68368 | 27613 ChEBI | amygdalin | + | fermentation | from API 20E |
| 68371 | 18305 ChEBI | arbutin | + | builds acid from | from API 50CH acid |
| 68368 | 29016 ChEBI | arginine | - | hydrolysis | from API 20E |
| 68371 | 17057 ChEBI | cellobiose | + | builds acid from | from API 50CH acid |
| 121883 | 16947 ChEBI | citrate | + | carbon source | |
| 68368 | 16947 ChEBI | citrate | + | assimilation | from API 20E |
| 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 |
| 68368 | 17634 ChEBI | D-glucose | + | fermentation | from API 20E |
| 68371 | 62318 ChEBI | D-lyxose | - | builds acid from | from API 50CH acid |
| 68371 | 16899 ChEBI | D-mannitol | + | builds acid from | from API 50CH acid |
| 68368 | 16899 ChEBI | D-mannitol | + | fermentation | from API 20E |
| 68371 | 16024 ChEBI | D-mannose | + | builds acid from | from API 50CH acid |
| 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 |
| 68371 | 17113 ChEBI | erythritol | - | builds acid from | from API 50CH acid |
| 68371 | 4853 ChEBI | esculin | + | builds acid from | from API 50CH acid |
| 68371 | 16813 ChEBI | galactitol | - | builds acid from | from API 50CH acid |
| 68368 | 5291 ChEBI | gelatin | - | hydrolysis | from API 20E |
| 68371 | 28066 ChEBI | gentiobiose | + | builds acid from | from API 50CH acid |
| 68371 | 24265 ChEBI | gluconate | + | builds acid from | from API 50CH acid |
| 121883 | 17234 ChEBI | glucose | + | fermentation | |
| 121883 | 17234 ChEBI | glucose | + | degradation | |
| 68371 | 17754 ChEBI | glycerol | + | 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 |
| 68368 | 30849 ChEBI | L-arabinose | + | fermentation | from API 20E |
| 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 |
| 68368 | 62345 ChEBI | L-rhamnose | + | fermentation | from API 20E |
| 68371 | 17266 ChEBI | L-sorbose | + | builds acid from | from API 50CH acid |
| 68371 | 65328 ChEBI | L-xylose | - | builds acid from | from API 50CH acid |
| 121883 | 17716 ChEBI | lactose | + | fermentation | |
| 68371 | 17716 ChEBI | lactose | + | builds acid from | from API 50CH acid |
| 121883 | 15792 ChEBI | malonate | + | assimilation | |
| 68371 | 17306 ChEBI | maltose | + | builds acid from | from API 50CH acid |
| 121883 | 29864 ChEBI | mannitol | + | fermentation | |
| 68371 | 6731 ChEBI | melezitose | - | builds acid from | from API 50CH acid |
| 68371 | 28053 ChEBI | melibiose | + | builds acid from | from API 50CH acid |
| 68368 | 28053 ChEBI | melibiose | + | fermentation | from API 20E |
| 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 |
| 68368 | 17268 ChEBI | myo-inositol | + | fermentation | from API 20E |
| 68371 | 59640 ChEBI | N-acetylglucosamine | + | builds acid from | from API 50CH acid |
| 121883 | 17632 ChEBI | nitrate | + | reduction | |
| 121883 | 16301 ChEBI | nitrite | - | reduction | |
| 68368 | 18257 ChEBI | ornithine | - | degradation | from API 20E |
| 68371 | Potassium 2-ketogluconate | - | builds acid from | from API 50CH acid | |
| 68371 | 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 |
| 121883 | 132112 ChEBI | sodium thiosulfate | - | builds gas from | |
| 68368 | 30911 ChEBI | sorbitol | + | fermentation | from API 20E |
| 68371 | 28017 ChEBI | starch | + | builds acid from | from API 50CH acid |
| 68371 | 17992 ChEBI | sucrose | + | builds acid from | from API 50CH acid |
| 68368 | 17992 ChEBI | sucrose | + | fermentation | from API 20E |
| 68371 | 27082 ChEBI | trehalose | + | builds acid from | from API 50CH acid |
| 68368 | 27897 ChEBI | tryptophan | - | energy source | from API 20E |
| 68368 | 16199 ChEBI | urea | + | hydrolysis | from API 20E |
| 68371 | 17151 ChEBI | xylitol | - | builds acid from | from API 50CH acid |
| @ref | Metabolite | Is sensitive | Is resistant | |
|---|---|---|---|---|
| 121883 | 0129 (2,4-Diamino-6,7-di-iso-propylpteridine phosphate) |
| @ref | Value | Activity | Ec | |
|---|---|---|---|---|
| 68382 | acid phosphatase | - | 3.1.3.2 | from API zym |
| 121883 | 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 |
| 68368 | arginine dihydrolase | - | 3.5.3.6 | from API 20E |
| 68382 | beta-galactosidase | - | 3.2.1.23 | from API zym |
| 121883 | beta-galactosidase | + | 3.2.1.23 | |
| 68368 | beta-galactosidase | + | 3.2.1.23 | from API 20E |
| 68382 | beta-glucosidase | - | 3.2.1.21 | from API zym |
| 68382 | beta-glucuronidase | - | 3.2.1.31 | from API zym |
| 121883 | catalase | + | 1.11.1.6 | |
| 68382 | cystine arylamidase | - | 3.4.11.3 | from API zym |
| 68368 | cytochrome oxidase | - | 1.9.3.1 | from API 20E |
| 68382 | esterase (C 4) | - | from API zym | |
| 68382 | esterase lipase (C 8) | - | from API zym | |
| 121883 | gelatinase | - | ||
| 68368 | gelatinase | - | from API 20E | |
| 68382 | leucine arylamidase | - | 3.4.11.1 | from API zym |
| 68382 | lipase (C 14) | - | from API zym | |
| 121883 | 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 | |
| 121883 | ornithine decarboxylase | - | 4.1.1.17 | |
| 68368 | ornithine decarboxylase | - | 4.1.1.17 | from API 20E |
| 121883 | oxidase | - | ||
| 68382 | trypsin | - | 3.4.21.4 | from API zym |
| 121883 | tryptophan deaminase | - | ||
| 68368 | tryptophan deaminase | - | 4.1.99.1 | from API 20E |
| 121883 | urease | + | 3.5.1.5 | |
| 68368 | urease | + | 3.5.1.5 | from API 20E |
| 68382 | valine arylamidase | - | from API zym |
| @ref | ONPG | ADH (Arg) | LDC (Lys) | ODC | CIT | H2S productionH2S | URE | TDA (Trp) | IND | Acetoin production (Voges Proskauer test)VP | GEL | GLU | MAN | INO | Sor | RHA | SAC | MEL | AMY | ARA | OX | Nitrite productionNO2 | Reduction to N2N2 | MotilityMOB | Growth on MacConkey mediumMAC | OF-O | OF-F | |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 959 | + | - | +/- | - | + | - | + | - | - | + | - | + | + | + | + | + | + | + | + | + | - | not determinedn.d. | not determinedn.d. | not determinedn.d. | not determinedn.d. | not determinedn.d. | not determinedn.d. | |
| 959 | + | - | + | - | + | - | + | - | - | + | - | + | + | + | + | + | + | + | + | + | - | not determinedn.d. | not determinedn.d. | not determinedn.d. | not determinedn.d. | not determinedn.d. | not determinedn.d. |
| @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 | |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 121883 | not determinedn.d. | + | - | - | + | + | + | - | + | - | + | + | + | + | + | + | - | + | + | + | - | + | + | +/- | + | + | + | + | + | + | + | + | + | - | - | + | + | +/- | - | + | +/- | - | - | - | + | + | - | + | - | - |
| 121883 | Isolation date1911 |
| @ref | Description | Assembly level | INSDC accession | BV-BRC accession | IMG accession | NCBI tax ID | Score | |
|---|---|---|---|---|---|---|---|---|
| 66792 | 38273_C01 assembly for Klebsiella pneumoniae NCTC418 | complete | 573 | 97.27 | ||||
| 66792 | ASM94951v1 assembly for Klebsiella pneumoniae DSM 2026 | contig | 573 | 69.36 | ||||
| 66792 | ASM307691v1 assembly for Klebsiella pneumoniae NCTC 418 | chromosome | 573 | 63.85 | ||||
| 66792 | ASM1933632v1 assembly for Klebsiella pneumoniae 240 | contig | 573 | 53.39 | ||||
| 66792 | ASM31538v1 assembly for Klebsiella pneumoniae subsp. pneumoniae Ecl8 | scaffold | 1226680 | 43.22 |
| @ref | Trait | Model | Prediction | Confidence in % | In training data |
|---|---|---|---|---|---|
| 125439 | oxygen_tolerance | BacteriaNetⓘ | aerobe | 91.40 | no |
| 125439 | gram_stain | BacteriaNetⓘ | negative | 98.00 | no |
| 125439 | motility | BacteriaNetⓘ | yes | 72.40 | no |
| 125439 | spore_formation | BacteriaNetⓘ | no | 92.60 | no |
| @ref | Trait | Model | Prediction | Confidence in % | In training data |
|---|---|---|---|---|---|
| 125438 | gram-positive | gram-positiveⓘ | no | 100.00 | no |
| 125438 | anaerobic | anaerobicⓘ | no | 97.54 | yes |
| 125438 | aerobic | aerobicⓘ | no | 54.29 | no |
| 125438 | spore-forming | spore-formingⓘ | no | 89.83 | no |
| 125438 | thermophilic | thermophileⓘ | no | 100.00 | yes |
| 125438 | flagellated | motile2+ⓘ | no | 78.10 | no |
| Topic | Title | Authors | Journal | DOI | Year | |
|---|---|---|---|---|---|---|
| KpSC-ID: a multiplex real-time PCR assay for the simultaneous detection of the Klebsiella pneumoniae species complex and specific identification of Klebsiella pneumoniae, Klebsiella quasipneumoniae and Klebsiella variicola. | McAndrew G, Barbier E, Rodrigues C, Piveteau P, Brisse S, Reddington K. | Microbiology (Reading) | 10.1099/mic.0.001587 | 2025 | ||
| Microbial Conversion of Glycerol Into 1,3-Propanediol by Fermentation: Review of Fundamentals and Operational Strategies. | Perez-Bernal MF, Moscoviz R, Wang X, Bernet N, Trably E. | Microb Biotechnol | 10.1111/1751-7915.70265 | 2025 | ||
| Biological Control Efficacy and Action Mechanism of Klebsiella pneumoniae JCK-2201 Producing Meso-2,3-Butanediol Against Tomato Bacterial Wilt. | Kim B, Park AR, Song CW, Song H, Kim JC. | Front Microbiol | 10.3389/fmicb.2022.914589 | 2022 | ||
| Modern approaches for detection of volatile organic compounds in metabolic studies focusing on pathogenic bacteria: Current state of the art. | Zuchowska K, Filipiak W. | J Pharm Anal | 10.1016/j.jpha.2023.11.005 | 2024 | ||
| Headspace analyses using multi-capillary column-ion mobility spectrometry allow rapid pathogen differentiation in hospital-acquired pneumonia relevant bacteria. | Kunze-Szikszay N, Euler M, Kuhns M, Thiess M, Gross U, Quintel M, Perl T. | BMC Microbiol | 10.1186/s12866-021-02102-8 | 2021 | ||
| Metabolism | Adaptability of Klebsiella pneumoniae 2e, a Newly Isolated 1,3-Propanediol-Producing Strain, to Crude Glycerol as Revealed by Genomic Profiling. | Ma J, Jiang H, Hector SB, Xiao Z, Li J, Liu R, Li C, Zeng B, Liu GQ, Zhu Y. | Appl Environ Microbiol | 10.1128/aem.00254-19 | 2019 | |
| Metabolism | Engineering CRISPR interference system in Klebsiella pneumoniae for attenuating lactic acid synthesis. | Wang J, Zhao P, Li Y, Xu L, Tian P. | Microb Cell Fact | 10.1186/s12934-018-0903-1 | 2018 | |
| Enzymology | Insights into 3-hydroxypropionic acid biosynthesis revealed by overexpressing native glycerol dehydrogenase in Klebsiella pneumoniae. | Su MY, Li Y, Ge XZ, Tian PF. | Biotechnol Biotechnol Equip | 10.1080/13102818.2014.944419 | 2014 | |
| Enzymology | Enhanced Promoter Activity by Replenishment of Sigma Factor rpoE in Klebsiella pneumoniae. | Chen L, Li Y, Tian P. | Indian J Microbiol | 10.1007/s12088-016-0576-6 | 2016 | |
| Dynamic behavior of glycerol-glucose co-fermentation for 1,3-propanediol production by Klebsiella pneumoniae DSM 2026 under micro-aerobic conditions | Sun LH, Song ZY, Sun YQ, Xiu ZL. | World J Microbiol Biotechnol | 10.1007/s11274-010-0314-x | 2010 | ||
| Enzymology | Gene Arrangements in Expression Vector Affect 3-Hydroxypropionic Acid Production in Klebsiella pneumoniae. | Li Y, Ge X, Tian P. | Indian J Microbiol | 10.1007/s12088-013-0390-3 | 2013 | |
| Metabolism | Utilization of biodiesel derived-glycerol for 1,3-PD and citric acid production. | Mitrea L, Trif M, Catoi AF, Vodnar DC, Vodnar DC. | Microb Cell Fact | 10.1186/s12934-017-0807-5 | 2017 | |
| Enzymology | Heterologous Expression of Aldehyde Dehydrogenase from Saccharomyces cerevisiae in Klebsiella pneumoniae for 3-Hydroxypropionic Acid Production from Glycerol. | Wang K, Wang X, Ge X, Tian P. | Indian J Microbiol | 10.1007/s12088-012-0280-0 | 2012 | |
| Enzymology | Enhancing 1,3-Propanediol Productivity in the Non-Model Chassis Clostridium beijerinckii through Genetic Manipulation. | Bortolucci J, Guazzaroni ME, Schoch T, Durre P, Reginatto V. | Microorganisms | 10.3390/microorganisms11071855 | 2023 | |
| Genetically Engineered Strains: Application and Advances for 1,3-Propanediol Production from Glycerol. | Yang M, Yun J, Zhang H, Magocha TA, Zabed H, Xue Y, Fokum E, Sun W, Qi X, Qi X. | Food Technol Biotechnol | 10.17113/ftb.56.01.18.5444 | 2018 | ||
| Metabolism | High Production of 3-Hydroxypropionic Acid in Klebsiella pneumoniae by Systematic Optimization of Glycerol Metabolism. | Li Y, Wang X, Ge X, Tian P. | Sci Rep | 10.1038/srep26932 | 2016 | |
| Impurities of crude glycerol and their effect on metabolite production. | Samul D, Leja K, Grajek W. | Ann Microbiol | 10.1007/s13213-013-0767-x | 2014 | ||
| Enzymology | Investigation of the key factors on 3-hydroxypropionic acid production with different recombinant strains. | Niu K, Cheng XL, Qin HB, Liu JS, Zheng YG. | 3 Biotech | 10.1007/s13205-017-0966-4 | 2017 | |
| Metabolism | Hyperproduction of 3-hydroxypropionate by Halomonas bluephagenesis. | Jiang XR, Yan X, Yu LP, Liu XY, Chen GQ. | Nat Commun | 10.1038/s41467-021-21632-3 | 2021 | |
| Metabolism | 1,3-Propanediol production from glycerol by a newly isolated Trichococcus strain. | van Gelder AH, Aydin R, Alves MM, Stams AJ. | Microb Biotechnol | 10.1111/j.1751-7915.2011.00318.x | 2012 | |
| Optimization of cultural conditions for conversion of glycerol to ethanol by Enterobacter aerogenes S012. | Nwachukwu RE, Shahbazi A, Wang L, Worku M, Ibrahim S, Schimmel K. | AMB Express | 10.1186/2191-0855-3-12 | 2013 | ||
| Protein identification from two-dimensional gel electrophoresis analysis of Klebsiella pneumoniae by combined use of mass spectrometry data and raw genome sequences. | Wang W, Sun J, Nimtz M, Deckwer WD, Zeng AP. | Proteome Sci | 10.1186/1477-5956-1-6 | 2003 | ||
| Enzymology | Ion mobility spectrometry for microbial volatile organic compounds: a new identification tool for human pathogenic bacteria. | Junger M, Vautz W, Kuhns M, Hofmann L, Ulbricht S, Baumbach JI, Quintel M, Perl T. | Appl Microbiol Biotechnol | 10.1007/s00253-012-3924-4 | 2012 | |
| Engineering microbial chemical factories to produce renewable "biomonomers". | Adkins J, Pugh S, McKenna R, Nielsen DR. | Front Microbiol | 10.3389/fmicb.2012.00313 | 2012 | ||
| Biotechnology | Key enzymes catalyzing glycerol to 1,3-propanediol. | Jiang W, Wang S, Wang Y, Fang B. | Biotechnol Biofuels | 10.1186/s13068-016-0473-6 | 2016 | |
| Production of 3-Hydroxypropanoic Acid From Glycerol by Metabolically Engineered Bacteria. | Jers C, Kalantari A, Garg A, Mijakovic I. | Front Bioeng Biotechnol | 10.3389/fbioe.2019.00124 | 2019 | ||
| Phage engineering and phage-assisted CRISPR-Cas delivery to combat multidrug-resistant pathogens. | Khambhati K, Bhattacharjee G, Gohil N, Dhanoa GK, Sagona AP, Mani I, Bui NL, Chu DT, Karapurkar JK, Jang SH, Chung HY, Maurya R, Alzahrani KJ, Ramakrishna S, Singh V. | Bioeng Transl Med | 10.1002/btm2.10381 | 2023 | ||
| Accelerated aptamer selection via SELEX and molecular simulations for lipopolysaccharide detection | Thi Tran T, Nguyen H, Ngoc Hoa P, Pham T, Thanh Huyen N, Huong G, Hoang H, Wagner P, Charrier A, Lien T, Nguyen P, Toan N. | RSC Adv | 2025 | |||
| Chronic behavioral and seizure outcomes following experimental traumatic brain injury and comorbid Klebsiella pneumoniae lung infection in mice. | Rewell SSJ, Shad A, Chen L, Chu E, Wang J, Chen K, O'Brien TJ, Li J, Casillas Espinosa PM, Semple BD. | Epilepsia | 10.1111/epi.18551 | 2025 | ||
| Functional insights into Streptomyces isolates containing both clavulanic acid-like and carbapenem biosynthetic gene clusters. | Tahlan K, Shaikh AA, Liu J, Gupta K, AbuSara N, Srivastava SK, Deng A, Rouah A, Swackhamer MJ. | mSphere | 10.1128/msphere.00188-25 | 2025 | ||
| Physiochemical characterization of a potential Klebsiella phage MKP-1 and analysis of its application in reducing biofilm formation. | Das S, Kaledhonkar S. | Front Microbiol | 10.3389/fmicb.2024.1397447 | 2024 | ||
| Insights into the roles of macrophages in Klebsiella pneumoniae infections: a comprehensive review. | Li Y, Li X, Wu W, Liu P, Liu J, Jiang H, Deng L, Ni C, Wu X, Zhao Y, Ren J. | Cell Mol Biol Lett | 10.1186/s11658-025-00717-7 | 2025 | ||
| Pathogenicity | GPR68 Mediates Lung Endothelial Dysfunction Caused by Bacterial Inflammation and Tissue Acidification. | Karki P, Ke Y, Zhang C, Promnares K, Li Y, Williams CH, Hong CC, Birukov KG, Birukova AA. | Cells | 10.3390/cells13242125 | 2024 | |
| Enhancing the capability of Klebsiella pneumoniae to produce 1, 3-propanediol by overexpression and regulation through CRISPR-dCas9. | Wang X, Zhang L, Liang S, Yin Y, Wang P, Li Y, Chin WS, Xu J, Wen J. | Microb Biotechnol | 10.1111/1751-7915.14033 | 2022 | ||
| The Impact of Chlorine Disinfection of Hospital Wastewater on Clonal Similarity and ESBL-Production in Selected Bacteria of the Family Enterobacteriaceae. | Rolbiecki D, Korzeniewska E, Czatzkowska M, Harnisz M. | Int J Environ Res Public Health | 10.3390/ijerph192113868 | 2022 | ||
| Pathogenicity | The neutralizing effect of heparin on blood-derived antimicrobial compounds: impact on antibacterial activity and inflammatory response. | Cont D, Harm S, Schildbock C, Kolm C, Kirschner AKT, Farnleitner AH, Pilecky M, Zottl J, Hartmann J, Weber V. | Front Immunol | 10.3389/fimmu.2024.1373255 | 2024 | |
| A Novel Peptide as a Specific and Selective Probe for Klebsiella pneumoniae Detection. | Kim H, Jang JH, Jung IY, Cho JH. | Biosensors (Basel) | 10.3390/bios12030153 | 2022 | ||
| Metabolism | Efficient 2,3-butanediol production from whey powder using metabolically engineered Klebsiella oxytoca. | Meng W, Zhang Y, Cao M, Zhang W, Lu C, Yang C, Gao C, Xu P, Ma C. | Microb Cell Fact | 10.1186/s12934-020-01420-2 | 2020 | |
| Rational Proteomic Analysis of a New Domesticated Klebsiella pneumoniae x546 Producing 1,3-Propanediol. | Wang X, Zhang L, Chen H, Wang P, Yin Y, Jin J, Xu J, Wen J. | Front Microbiol | 10.3389/fmicb.2021.770109 | 2021 | ||
| Targeted and high-throughput gene knockdown in diverse bacteria using synthetic sRNAs. | Cho JS, Yang D, Prabowo CPS, Ghiffary MR, Han T, Choi KR, Moon CW, Zhou H, Ryu JY, Kim HU, Lee SY. | Nat Commun | 10.1038/s41467-023-38119-y | 2023 | ||
| Addition of L-cysteine to the N- or C-terminus of the all-D-enantiomer [D(KLAKLAK)2] increases antimicrobial activities against multidrug-resistant Pseudomonas aeruginosa, Acinetobacter baumannii and Escherichia coli. | Ohno MK, Kirikae T, Yoshihara E, Kirikae F, Ishida I. | PeerJ | 10.7717/peerj.10176 | 2020 | ||
| Defects in early cell recruitment contribute to the increased susceptibility to respiratory Klebsiella pneumoniae infection in diabetic mice. | Martinez N, Ketheesan N, Martens GW, West K, Lien E, Kornfeld H. | Microbes Infect | 10.1016/j.micinf.2016.05.007 | 2016 | ||
| A Review on Medicinal and Ethnomedicinal Uses, Biological Features, and Phytochemical Constituents of Sesbania sesban L. Merr., A Nitrogen-Fixing Plant Native to the Republic of Chad | Brahim Mahamat O, Younes S, Otchom B, Franzel S, Ouchar Mahamat Hidjazi A, Soumaya E. | ScientificWorldJournal | 2024 | |||
| In Vitro Antibacterial, Antifungal, Antibiofilm, Antioxidant, and Anticancer Properties of Isosteviol Isolated from Endangered Medicinal Plant Pittosporum tetraspermum. | Abdullah Al-Dhabi N, Valan Arasu M, Rejiniemon TS. | Evid Based Complement Alternat Med | 10.1155/2015/164261 | 2015 | ||
| Preparation and characterization of chitosan microspheres for doxycycline delivery | Shanmuganathan S, Shanumugasundaram N, Adhirajan N, Lakshmi TSR, Babu M. | Carbohydrate polymers. | 10.1016/j.carbpol.2007.11.039 | 2008 | ||
| Antimicrobial Potential of Helicanthus elastica (Desr.) Danser - A less explored Indian mistletoe Growing on Mango Trees. | Sunil Kumar KN, Saraswathy A, Amerjothy S, Ravishankar B. | J Tradit Complement Med | 10.4103/2225-4110.126183 | 2014 | ||
| Phylogeny | New antimicrobial anthraquinone 6,61-bis (1,5,7-trihydroxy-3-hydroxymethylanthraquinone) isolated from Streptomyces sp. isolate ERI-26. | Duraipandiyan V, Al-Dhabi NA, Ignacimuthu S. | Saudi J Biol Sci | 10.1016/j.sjbs.2016.02.008 | 2016 | |
| Klebsiella species associated with bovine mastitis in Newfoundland. | Podder MP, Rogers L, Daley PK, Keefe GP, Whitney HG, Tahlan K. | PLoS One | 10.1371/journal.pone.0106518 | 2014 | ||
| In vitro antimicrobial activity on clinical microbial strains and antioxidant properties of Artemisia parviflora. | Ahameethunisa AR, Hopper W. | Ann Clin Microbiol Antimicrob | 10.1186/1476-0711-11-30 | 2012 | ||
| Development and evaluation of oligonucleotide chip based on the 16S-23S rRNA gene spacer region for detection of pathogenic microorganisms associated with sepsis. | Kim CM, Song ES, Jang HJ, Kim HJ, Lee S, Shin JH, Kim SJ, Jeong SH, Jeong J, Koh K, Choi GE, Lee EY, Chang CL. | J Clin Microbiol | 10.1128/jcm.01130-09 | 2010 | ||
| Metabolism | Immunomodulatory and Anti-inflammatory Activity in Vitro and in Vivo of a Novel Antimicrobial Candidate. | Brunetti J, Roscia G, Lampronti I, Gambari R, Quercini L, Falciani C, Bracci L, Pini A. | J Biol Chem | 10.1074/jbc.m116.750257 | 2016 | |
| Pathogenicity | Tridecaptin M, a New Variant Discovered in Mud Bacterium, Shows Activity against Colistin- and Extremely Drug-Resistant Enterobacteriaceae. | Jangra M, Kaur M, Tambat R, Rana R, Maurya SK, Khatri N, Ghafur A, Nandanwar H. | Antimicrob Agents Chemother | 10.1128/aac.00338-19 | 2019 | |
| Value-added uses for crude glycerol--a byproduct of biodiesel production. | Yang F, Hanna MA, Sun R. | Biotechnol Biofuels | 10.1186/1754-6834-5-13 | 2012 | ||
| Metabolism | Characterization of NLRP12 during the in vivo host immune response to Klebsiella pneumoniae and Mycobacterium tuberculosis. | Allen IC, McElvania-TeKippe E, Wilson JE, Lich JD, Arthur JC, Sullivan JT, Braunstein M, Ting JP. | PLoS One | 10.1371/journal.pone.0060842 | 2013 | |
| Phylogeny | Characterization and phylogenetic analysis of novel polyene type antimicrobial metabolite producing actinomycetes from marine sediments: Bay of Bengal, India. | Valan AM, Asha KR, Duraipandiyan V, Ignacimuthu S, Agastian P. | Asian Pac J Trop Biomed | 10.1016/s2221-1691(12)60233-0 | 2012 | |
| In-vitro antimicrobial, antibiofilm, cytotoxic, antifeedant and larvicidal properties of novel quinone isolated from Aegle marmelos (Linn.) Correa. | Rejiniemon TS, Arasu MV, Duraipandiyan V, Ponmurugan K, Al-Dhabi NA, Arokiyaraj S, Agastian P, Choi KC. | Ann Clin Microbiol Antimicrob | 10.1186/s12941-014-0048-y | 2014 | ||
| The biological activities of cinnamon, geranium and lavender essential oils. | Sienkiewicz M, Glowacka A, Kowalczyk E, Wiktorowska-Owczarek A, Jozwiak-Bebenista M, Lysakowska M. | Molecules | 10.3390/molecules191220929 | 2014 | ||
| Pathogenicity | Antibacterial activity of Artemisia nilagirica leaf extracts against clinical and phytopathogenic bacteria. | Ahameethunisa AR, Hopper W. | BMC Complement Altern Med | 10.1186/1472-6882-10-6 | 2010 | |
| Pathogenicity | The Sensitivity of Endodontic Enterococcus spp. Strains to Geranium Essential Oil. | Lysakowska ME, Sienkiewicz M, Banaszek K, Sokolowski J. | Molecules | 10.3390/molecules201219888 | 2015 | |
| Residual endotoxin induces primary graft dysfunction through ischemia/reperfusion-primed alveolar macrophages. | Akbarpour M, Lecuona E, Chiu SF, Wu Q, Querrey M, Fernandez R, Nunez-Santana FL, Sun H, Ravi S, Kurihara C, Walter JM, Joshi N, Ren Z, Roberts SC, Hauser A, Kreisel D, Li W, Chandel NS, Misharin AV, Mohanakumar T, Budinger GRS, Bharat A. | J Clin Invest | 10.1172/jci135838 | 2020 | ||
| In vivo functional analysis of a class A beta-lactamase-related protein essential for clavulanic acid biosynthesis in Streptomyces clavuligerus. | Srivastava SK, King KS, AbuSara NF, Malayny CJ, Piercey BM, Wilson JA, Tahlan K. | PLoS One | 10.1371/journal.pone.0215960 | 2019 | ||
| Pathogenicity | Antimicrobial activity of sesquiterpene lactones isolated from traditional medicinal plant, Costus speciosus (Koen ex.Retz.) Sm. | Duraipandiyan V, Al-Harbi NA, Ignacimuthu S, Muthukumar C. | BMC Complement Altern Med | 10.1186/1472-6882-12-13 | 2012 | |
| In vitro antibacterial activity of some plant essential oils. | Prabuseenivasan S, Jayakumar M, Ignacimuthu S. | BMC Complement Altern Med | 10.1186/1472-6882-6-39 | 2006 | ||
| Pathogenicity | Detection of multidrug resistance in Mycobacterium tuberculosis. | Sekiguchi J, Miyoshi-Akiyama T, Augustynowicz-Kopec E, Zwolska Z, Kirikae F, Toyota E, Kobayashi I, Morita K, Kudo K, Kato S, Kuratsuji T, Mori T, Kirikae T. | J Clin Microbiol | 10.1128/jcm.00750-06 | 2007 | |
| Some biological activities of Epaltes divaricata L. - an in vitro study. | Glorybai L, Kannan K B, Arasu MV, Al-Dhabi NA, Agastian P. | Ann Clin Microbiol Antimicrob | 10.1186/s12941-015-0074-4 | 2015 | ||
| Development and evaluation of a line probe assay for rapid identification of pncA mutations in pyrazinamide-resistant mycobacterium tuberculosis strains. | Sekiguchi J, Nakamura T, Miyoshi-Akiyama T, Kirikae F, Kobayashi I, Augustynowicz-Kopec E, Zwolska Z, Morita K, Suetake T, Yoshida H, Kato S, Mori T, Kirikae T. | J Clin Microbiol | 10.1128/jcm.00352-07 | 2007 | ||
| Enzymology | Two sets of paralogous genes encode the enzymes involved in the early stages of clavulanic acid and clavam metabolite biosynthesis in Streptomyces clavuligerus. | Tahlan K, Park HU, Wong A, Beatty PH, Jensen SE. | Antimicrob Agents Chemother | 10.1128/aac.48.3.930-939.2004 | 2004 | |
| Metabolism | The paralogous pairs of genes involved in clavulanic acid and clavam metabolite biosynthesis are differently regulated in Streptomyces clavuligerus. | Tahlan K, Anders C, Jensen SE. | J Bacteriol | 10.1128/jb.186.18.6286-6297.2004 | 2004 | |
| Metabolism | Expression of ccaR, encoding the positive activator of cephamycin C and clavulanic acid production in Streptomyces clavuligerus, is dependent on bldG. | Bignell DR, Tahlan K, Colvin KR, Jensen SE, Leskiw BK. | Antimicrob Agents Chemother | 10.1128/aac.49.4.1529-1541.2005 | 2005 | |
| Phylogeny | Detection and genotyping of Mycobacterium species from clinical isolates and specimens by oligonucleotide array. | Park H, Jang H, Song E, Chang CL, Lee M, Jeong S, Park J, Kang B, Kim C. | J Clin Microbiol | 10.1128/jcm.43.4.1782-1788.2005 | 2005 | |
| Enzymology | Collagen-like sequences stabilize homotrimers of a bacterial hydrolase. | Charalambous BM, Keen JN, McPherson MJ. | EMBO J | 10.1002/j.1460-2075.1988.tb03148.x | 1988 | |
| Metabolism | Genes specific for the biosynthesis of clavam metabolites antipodal to clavulanic acid are clustered with the gene for clavaminate synthase 1 in Streptomyces clavuligerus. | Mosher RH, Paradkar AS, Anders C, Barton B, Jensen SE. | Antimicrob Agents Chemother | 10.1128/aac.43.5.1215 | 1999 | |
| Metabolism | Characterization of the CysB protein of Klebsiella aerogenes: direct evidence that N-acetylserine rather than O-acetylserine serves as the inducer of the cysteine regulon. | Lynch AS, Tyrrell R, Smerdon SJ, Briggs GS, Wilkinson AJ. | Biochem J | 10.1042/bj2990129 | 1994 | |
| Edible Leafy Plants from Mexico as Sources of Antioxidant Compounds, and Their Nutritional, Nutraceutical and Antimicrobial Potential: A Review. | Mateos-Maces L, Chavez-Servia JL, Vera-Guzman AM, Aquino-Bolanos EN, Alba-Jimenez JE, Villagomez-Gonzalez BB. | Antioxidants (Basel) | 10.3390/antiox9060541 | 2020 | ||
| Pathogenicity | Validating the protective role of orange and tangerine peel extracts foramending food safety against microorganisms' contamination using molecular docking. | Sabry BA, Badr AN, Mohammed DM, Desoukey MA, Farouk A. | Heliyon | 10.1016/j.heliyon.2024.e27737 | 2024 | |
| Promising role of Lawsonia inermis L. leaves extract and its nano-formulation as double treatment against aflatoxin toxicity in ulcerated-rats: Application in milk beverage. | Mohammed DM, El-Said MM, Badr AN, Abou Baker DH, Hathout AS, Sabry BA. | Heliyon | 10.1016/j.heliyon.2023.e19290 | 2023 | ||
| Pathogenicity | Probable mechanisms of biocidal action of Cocos nucifera Husk extract and fractions on bacteria isolates. | Akinpelu DA, Alayande KA, Aiyegoro OA, Akinpelu OF, Okoh AI. | BMC Complement Altern Med | 10.1186/s12906-015-0634-3 | 2015 | |
| Appraising the therapeutical potentials of Alchornea laxiflora (Benth.) Pax & K. Hoffm., an underexplored medicinal herb: A systematic review. | Jain NK, Tailang M, Kumar S, Chandrasekaran B, Alghazwani Y, Chandramoorthy HC, Kumar A, Deshpande H, Wal P, Balamurugan M, Chidambaram K. | Front Pharmacol | 10.3389/fphar.2022.958453 | 2022 | ||
| Bridelia ferruginea Benth.; An ethnomedicinal, phytochemical, pharmacological and toxicological review. | Yeboah GN, Owusu FWA, Archer MA, Kyene MO, Kumadoh D, Ayertey F, Mintah SO, Atta-Adjei Junior P, Appiah AA. | Heliyon | 10.1016/j.heliyon.2022.e10366 | 2022 | ||
| Evaluation of Antibacterial and Antifungal Properties of Alchornea laxiflora (Benth.) Pax. & Hoffman. | Akinpelu DA, Abioye EO, Aiyegoro OA, Akinpelu OF, Okoh AI. | Evid Based Complement Alternat Med | 10.1155/2015/684839 | 2015 | ||
| Preliminary phytochemical screening and antibacterial properties of crude stem bark extracts and fractions of Parkia biglobosa (Jacq.). | Abioye EO, Akinpelu DA, Aiyegoro OA, Adegboye MF, Oni MO, Okoh AI. | Molecules | 10.3390/molecules18078485 | 2013 | ||
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| Metabolism | Glucose phosphoenolpyruvate phosphotransferase activity and glucose uptake rate of Klebsiella aerogenes growing in chemostat culture. | O'Brien RW, Neijssel OM, Tempest DW. | J Gen Microbiol | 10.1099/00221287-116-2-305 | 1980 | |
| Differential regulation of lambda pL and pR promoters by a cI repressor in a broad-host-range thermoregulated plasmid marker system. | Winstanley C, Morgan JA, Pickup RW, Jones JG, Saunders JR. | Appl Environ Microbiol | 10.1128/aem.55.4.771-777.1989 | 1989 | ||
| Pathogenicity | Cadmium and zinc sensitivity and tolerance in Klebsiella (Aerobacter) aerogenes. | Pickett AW, Dean AC. | Microbios | 1976 | ||
| Metabolism | Enzymic activities of cadmium- and zinc-tolerant strains of Klebsiella (Aerobacter) aerogenes growing in glucose-limited chemostats. | Pickett AW, Carter IS, Dean AC. | Microbios | 1976 | ||
| Metabolism | Klebsiella pneumoniae 1,3-propanediol:NAD+ oxidoreductase. | Johnson EA, Lin EC. | J Bacteriol | 10.1128/jb.169.5.2050-2054.1987 | 1987 | |
| Metabolism | 1,3-Propanediol production by Escherichia coli expressing genes from the Klebsiella pneumoniae dha regulon. | Tong IT, Liao HH, Cameron DC. | Appl Environ Microbiol | 10.1128/aem.57.12.3541-3546.1991 | 1991 | |
| Enzymology | Inactivation of glycerol dehydrogenase of Klebsiella pneumoniae and the role of divalent cations. | Johnson EA, Levine RL, Lin EC. | J Bacteriol | 10.1128/jb.164.1.479-483.1985 | 1985 | |
| Enzymology | 1,3-Propanediol:NAD+ oxidoreductases of Lactobacillus brevis and Lactobacillus buchneri. | Veiga-da-Cunha M, Foster MA. | Appl Environ Microbiol | 10.1128/aem.58.6.2005-2010.1992 | 1992 | |
| Enzymology | Biochemical and molecular characterization of the oxidative branch of glycerol utilization by Citrobacter freundii. | Daniel R, Stuertz K, Gottschalk G. | J Bacteriol | 10.1128/jb.177.15.4392-4401.1995 | 1995 | |
| Enzymology | Purification and properties of dihydroxyacetone kinase from Klebsiella pneumoniae. | Johnson EA, Burke SK, Forage RG, Lin EC. | J Bacteriol | 10.1128/jb.160.1.55-60.1984 | 1984 | |
| Utilization of Glycerol as a Hydrogen Acceptor by Lactobacillus reuteri: Purification of 1,3-Propanediol:NAD Oxidoreductase. | Talarico TL, Axelsson LT, Novotny J, Fiuzat M, Dobrogosz WJ. | Appl Environ Microbiol | 10.1128/aem.56.4.943-948.1990 | 1990 | ||
| Metabolism | Small substrate, big surprise: fold, function and phylogeny of dihydroxyacetone kinases. | Erni B, Siebold C, Christen S, Srinivas A, Oberholzer A, Baumann U. | Cell Mol Life Sci | 10.1007/s00018-005-5518-0 | 2006 | |
| Metabolism | Production and isolation of reuterin, a growth inhibitor produced by Lactobacillus reuteri. | Talarico TL, Casas IA, Chung TC, Dobrogosz WJ. | Antimicrob Agents Chemother | 10.1128/aac.32.12.1854 | 1988 | |
| Metabolism | Derepression of an NAD-linked dehydrogenase that serves an Escherichia coli mutant for growth on glycerol. | Tang JC, St Martin EJ, Lin EC. | J Bacteriol | 10.1128/jb.152.3.1001-1007.1982 | 1982 | |
| Metabolism | Optimizing aerobic conversion of glycerol to 3-hydroxypropionaldehyde. | Slininger PJ, Bothast RJ. | Appl Environ Microbiol | 10.1128/aem.50.6.1444-1450.1985 | 1985 | |
| Molybdenum effector of fumarate reductase repression and nitrate reductase induction in Escherichia coli. | Iuchi S, Lin EC. | J Bacteriol | 10.1128/jb.169.8.3720-3725.1987 | 1987 | ||
| Metabolism | Chemical characterization of an antimicrobial substance produced by Lactobacillus reuteri. | Talarico TL, Dobrogosz WJ. | Antimicrob Agents Chemother | 10.1128/aac.33.5.674 | 1989 | |
| Metabolism | Radical catalysis of B12 enzymes: structure, mechanism, inactivation, and reactivation of diol and glycerol dehydratases. | Toraya T. | Cell Mol Life Sci | 10.1007/s000180050502 | 2000 | |
| Metabolism | Stimulation of dihydroxyacetone and glycerol kinase activity in Streptococcus faecalis by phosphoenolpyruvate-dependent phosphorylation catalyzed by enzyme I and HPr of the phosphotransferase system. | Deutscher J, Sauerwald H. | J Bacteriol | 10.1128/jb.166.3.829-836.1986 | 1986 | |
| Evidence of multiple bacterial, viral, and parasitic infectious disease agents in Mastomys natalensis rodents in riverine areas in selected parts of Zambia. | Munjita SM, Kalonda A, Mubemba B, Vanaerschot M, Tato C, Mwakibete L, Tembo J, Chitanga S, Changula K, Kajihara M, Muleya W, Sawa H, Takada A, Bates M, Munsaka S, Simulundu E. | Infect Ecol Epidemiol | 10.1080/20008686.2024.2441537 | 2025 | ||
| Genetics | Genomic resistance in historical clinical isolates increased in frequency and mobility after the age of antibiotics. | Kaul A, Souque C, Holland M, Baym M. | Microb Genom | 10.1099/mgen.0.001474 | 2025 | |
| Natural peptides and their synthetic congeners acting against Acinetobacter baumannii through the membrane and cell wall: latest progress. | Kumar G. | RSC Med Chem | 10.1039/d4md00745j | 2025 | ||
| Pathogenicity | The antibacterial activity of peptide dendrimers and polymyxin B increases sharply above pH 7.4. | Cai X, Javor S, Gan BH, Kohler T, Reymond JL. | Chem Commun (Camb) | 10.1039/d1cc01838h | 2021 | |
| Synergistic Effect of Propidium Iodide and Small Molecule Antibiotics with the Antimicrobial Peptide Dendrimer G3KL against Gram-Negative Bacteria. | Gan BH, Cai X, Javor S, Kohler T, Reymond JL. | Molecules | 10.3390/molecules25235643 | 2020 | ||
| Stereorandomized Oncocins with Preserved Ribosome Binding and Antibacterial Activity. | Gan BH, Bonvin E, Paschoud T, Personne H, Reusser J, Cai X, Rauscher R, Kohler T, van Delden C, Polacek N, Reymond JL. | J Med Chem | 10.1021/acs.jmedchem.4c01768 | 2024 | ||
| An intrinsically disordered antimicrobial peptide dendrimer from stereorandomized virtual screening. | Cai X, Orsi M, Capecchi A, Kohler T, van Delden C, Javor S, Reymond JL. | Cell Rep Phys Sci | 10.1016/j.xcrp.2022.101161 | 2022 | ||
| Metabolism | Identification of phenol- and p-cresol-producing intestinal bacteria by using media supplemented with tyrosine and its metabolites. | Saito Y, Sato T, Nomoto K, Tsuji H. | FEMS Microbiol Ecol | 10.1093/femsec/fiy125 | 2018 | |
| Metabolism | Neutral red-mediated microbial electrosynthesis by Escherichia coli, Klebsiella pneumoniae, and Zymomonas mobilis. | Harrington TD, Mohamed A, Tran VN, Biria S, Gargouri M, Park JJ, Gang DR, Beyenal H. | Bioresour Technol | 10.1016/j.biortech.2015.06.005 | 2015 | |
| Wound healing properties and kill kinetics of Clerodendron splendens G. Don, a Ghanaian wound healing plant. | Gbedema SY, Emelia K, Francis A, Kofi A, Eric W. | Pharmacognosy Res | 10.4103/0974-8490.62948 | 2010 | ||
| Electroporation and expression of plasmid pBR322 in Klebsiella aerogenes NCTC 418 and plasmid pRK2501 in Pseudomonas putida CYM 318. | Trevors JT. | J Basic Microbiol | 10.1002/jobm.3620300116 | 1990 | ||
| Metabolism | Metabolic and energetic aspects of the growth of Klebsiella aerogenes NCTC 418 on glucose in anaerobic chemostat culture. | Teizeira de Mattos MJ, Tempest DW. | Arch Microbiol | 10.1007/bf00429412 | 1983 | |
| Metabolism | Influence of nutrient limitation and growth rate on the outer membrane proteins of Klebsiella aerogenes NCTC 418. | Sterkenburg A, Vlegels E, Wouters JT. | J Gen Microbiol | 10.1099/00221287-130-9-2347 | 1984 | |
| Pathogenicity | Expression and loss of the pBR322 plasmid in Klebsiella aerogenes NCTC 418, grown in chemostat culture. | Sterkenburg A, Prozee GA, Leegwater PA, Wouters JT. | Antonie Van Leeuwenhoek | 10.1007/bf00394654 | 1984 | |
| Metabolism | Effect of macromolecular composition of microorganisms on the thermodynamic description of their growth. | Mulder MM, van der Gulden HM, Postma PW, van Dam K. | Biochim Biophys Acta | 10.1016/0005-2728(88)90017-5 | 1988 | |
| Phenotypic variability of the sensitivity to cycloserine of Klebsiella aerogenes NCTC 418, growing in chemostat culture. | Sterkenburg A, Wouters JT. | J Gen Microbiol | 10.1099/00221287-124-1-29 | 1981 | ||
| Metabolism | Energy requirement for maintenance of the transmembrane potassium gradient in Klebsiella aerogenes NCTC 418: a continuous culture study. | Hueting S, de Lange T, Tempest DW. | Arch Microbiol | 10.1007/bf00446818 | 1979 | |
| Metabolism | Influence of the glucose input concentration on the kinetics of metabolic production by Klebsiella aerogenes NCTC 418: growing in chemostat culture in potassium- or ammonia-limited environments. | Hueting S, Tempest DW. | Arch Microbiol | 10.1007/bf00446819 | 1979 | |
| Metabolism | The regulation of carbohydrate metabolism in Klebsiella aerogenes NCTC 418 organisms, growing in chemostat culture. | Neijssel OM, Tempest DW. | Arch Microbiol | 10.1007/bf00446531 | 1975 | |
| Metabolism | Inorganic phosphate accumulation and cadmium detoxification in Klebsiella aerogenes NCTC 418 growing in continuous culture. | Aiking H, Stijnman A, van Garderen C, van Heerikhuizen H, van 't Riet J. | Appl Environ Microbiol | 10.1128/aem.47.2.374-377.1984 | 1984 | |
| Production of gluconic acid and 2-ketogluconic acid by Klebsiella aerogenes NCTA 418. | Neijssel OM, Tempest DW. | Arch Microbiol | 10.1007/bf00447135 | 1975 | ||
| Metabolism | Detoxification of mercury, cadmium, and lead in Klebsiella aerogenes NCTC 418 growing in continuous culture. | Aiking H, Govers H, van 't Riet J. | Appl Environ Microbiol | 10.1128/aem.50.5.1262-1267.1985 | 1985 | |
| Metabolism | Influence of growth rate and iron limitation on the expression of outer membrane proteins and enterobactin by Klebsiella pneumoniae grown in continuous culture. | Lodge JM, Williams P, Brown MR. | J Bacteriol | 10.1128/jb.165.2.353-356.1986 | 1986 | |
| Metabolism | Efficiency factors and ATP/ADP ratios in nitrogen-fixing Bacillus polymyxa and Bacillus azotofixans. | Kanamori K, Weiss RL, Roberts JD. | J Bacteriol | 10.1128/jb.172.4.1962-1968.1990 | 1990 | |
| Pathogenicity | Physiological studies of chloramine resistance developed by Klebsiella pneumoniae under low-nutrient growth conditions. | Stewart MH, Olson BH. | Appl Environ Microbiol | 10.1128/aem.58.9.2918-2927.1992 | 1992 | |
| Pathogenicity | In vitro and in vivo antibacterial properties of FK 027, a new orally active cephem antibiotic. | Kamimura T, Kojo H, Matsumoto Y, Mine Y, Goto S, Kuwahara S. | Antimicrob Agents Chemother | 10.1128/aac.25.1.98 | 1984 | |
| Metabolism | Synthesis of pyrroloquinoline quinone in vivo and in vitro and detection of an intermediate in the biosynthetic pathway. | Velterop JS, Sellink E, Meulenberg JJ, David S, Bulder I, Postma PW. | J Bacteriol | 10.1128/jb.177.17.5088-5098.1995 | 1995 | |
| Metabolism | Incorporation of pantothenate into citrate lyase by a pantothenateless mutant of Klebsiella pneumoniae. | Singh M, Dempsey WB, Srere PA. | J Bacteriol | 10.1128/jb.124.2.686-692.1975 | 1975 | |
| Pathogenicity | Antibacterial properties of Ro 40-6890, a broad-spectrum cephalosporin, and its novel orally absorbable ester, Ro 41-3399. | Angehrn P, Hohl P, Hubschwerlen C, Page M, Then R. | Antimicrob Agents Chemother | 10.1128/aac.36.12.2825 | 1992 | |
| Pathogenicity | Ceftizoxime (FK 749), a new parenteral cephalosporin: in vitro and in vivo antibacterial activities. | Kamimura T, Matsumoto Y, Okada N, Mine Y, Nishida M, Goto S, Kuwahara S. | Antimicrob Agents Chemother | 10.1128/aac.16.5.540 | 1979 | |
| Beta-lactamase inhibitors from laboratory to clinic. | Bush K. | Clin Microbiol Rev | 10.1128/cmr.1.1.109 | 1988 | ||
| Laboratory evaluation of FR10024 a new cephalosporin derivative. | Nishida M, Murakawa T, Kamimura T, Okada N, Fukada S. | Antimicrob Agents Chemother | 10.1128/aac.11.1.51 | 1977 | ||
| Determination of the carbon-bound electron composition of microbial cells and metabolites by dichromate oxidation. | Harris RF, Adams SS. | Appl Environ Microbiol | 10.1128/aem.37.2.237-243.1979 | 1979 | ||
| Pathogenicity | In vitro and in vivo evaluation of ceftezole, a new cephalosporin derivative. | Nishida M, Murakawa T, Kamimura T, Okada N, Sakamoto H, Fukada S, Nakamoto S, Yokota Y, Miki K. | Antimicrob Agents Chemother | 10.1128/aac.10.1.1 | 1976 | |
| Pathogenicity | Evaluation of the bactericidal activity of beta-lactam antibiotics on slowly growing bacteria cultured in the chemostat. | Cozens RM, Tuomanen E, Tosch W, Zak O, Suter J, Tomasz A. | Antimicrob Agents Chemother | 10.1128/aac.29.5.797 | 1986 | |
| Metabolism | Phosphate-starvation-induced outer membrane proteins of members of the families Enterobacteriaceae and Pseudomonodaceae: demonstration of immunological cross-reactivity with an antiserum specific for porin protein P of Pseudomonas aeruginosa. | Poole K, Hancock RE. | J Bacteriol | 10.1128/jb.165.3.987-993.1986 | 1986 | |
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| Metabolism | Nitrate respiration in relation to facultative metabolism in enterobacteria. | Stewart V. | Microbiol Rev | 10.1128/mr.52.2.190-232.1988 | 1988 | |
| Metabolism | Bacterial respiration. | Haddock BA, Jones CW. | Bacteriol Rev | 10.1128/br.41.1.47-99.1977 | 1977 | |
| Specific identification of the enteropathogens Campylobacter jejuni and Campylobacter coli by using a PCR test based on the ceuE gene encoding a putative virulence determinant. | Gonzalez I, Grant KA, Richardson PT, Park SF, Collins MD. | J Clin Microbiol | 10.1128/jcm.35.3.759-763.1997 | 1997 | ||
| Metabolism | Characterization and cofactor binding mechanism of a novel NAD(P)H-dependent aldehyde reductase from Klebsiella pneumoniae DSM2026. | Ma CW, Zhang L, Dai JY, Xiu ZL | J Microbiol Biotechnol | 10.4014/jmb.1307.07015 | 2013 | |
| Genetics | Genome Sequence of Klebsiella pneumoniae Ecl8, a Reference Strain for Targeted Genetic Manipulation. | Fookes M, Yu J, De Majumdar S, Thomson N, Schneiders T | Genome Announc | 10.1128/genomeA.00027-12 | 2013 | |
| Metabolism | Effect of puuC overexpression and nitrate addition on glycerol metabolism and anaerobic 3-hydroxypropionic acid production in recombinant Klebsiella pneumoniae DeltaglpKDeltadhaT. | Ashok S, Mohan Raj S, Ko Y, Sankaranarayanan M, Zhou S, Kumar V, Park S | Metab Eng | 10.1016/j.ymben.2012.09.004 | 2012 | |
| Metabolism | Fermentation and evaluation of Klebsiella pneumoniae and K. oxytoca on the production of 2,3-butanediol. | Cho JH, Rathnasingh C, Song H, Chung BW, Lee HJ, Seung D | Bioprocess Biosyst Eng | 10.1007/s00449-012-0691-7 | 2012 | |
| Metabolism | Development of recombinant Klebsiella pneumoniae dhaT strain for the co-production of 3-hydroxypropionic acid and 1,3-propanediol from glycerol. | Ashok S, Raj SM, Rathnasingh C, Park S | Appl Microbiol Biotechnol | 10.1007/s00253-011-3148-z | 2011 | |
| Metabolism | 1,3-Propanediol production from crude glycerol from Jatropha biodiesel process. | Hiremath A, Kannabiran M, Rangaswamy V | N Biotechnol | 10.1016/j.nbt.2010.06.006 | 2010 | |
| C-3 Substituted Lawsonemonoximates of Holmium(III): Synthesis, Characterization, and Antimicrobial Activity. | Jagtap SB, Joshi SG, Litake GM, Ghole VS, Kulkarni BA | Met Based Drugs | 10.1155/MBD.2000.147 | 2000 | ||
| Metabolism | Optimization of bio-hydrogen production from biodiesel wastes by Klebsiella pneumoniae. | Liu F, Fang B | Biotechnol J | 10.1002/biot.200600102 | 2007 | |
| Enzymology | Discovery and investigation of a new, second triose phosphate isomerase in Klebsiella pneumoniae. | Zheng P, Sun J, van den Heuvel J, Zeng AP | J Biotechnol | 10.1016/j.jbiotec.2006.03.034 | 2006 | |
| Pathogenicity | Carbapenem-based prodrugs. Design, synthesis, and biological evaluation of carbapenems. | Hakimelahi GH, Moosavi-Movahedi AA, Saboury AA, Osetrov V, Khodarahmi GA, Shia KS | Eur J Med Chem | 10.1016/j.ejmech.2004.11.002 | 2005 | |
| Pathogenicity | Application of the Barton photochemical reaction in the synthesis of 1-dethia-3-aza-1-carba-2-oxacephem: a novel agent against resistant pathogenic microorganisms. | Hakimelahi GH, Li PC, Moosavi-Movahedi AA, Chamani J, Khodarahmi GA, Ly TW, Valiyev F, Leong MK, Hakimelahi S, Shia KS, Chao I | Org Biomol Chem | 10.1039/b304167k | 2003 | |
| Metabolism | Microbial fed-batch production of 1,3-propanediol by Klebsiella pneumoniae under micro-aerobic conditions. | Chen X, Zhang DJ, Qi WT, Gao SJ, Xiu ZL, Xu P | Appl Microbiol Biotechnol | 10.1007/s00253-003-1369-5 | 2003 | |
| Pathogenicity | Synthesis and biological evaluation of an electronically activated isooxacephem. | Hakimelahi GH, Tsay SC, Tso HH, Ramezani Z, Hwu JR | Bioorg Med Chem | 10.1016/0968-0896(96)00131-9 | 1996 | |
| Metabolism | Comparison of the energetic efficiencies of hydrogen and oxychemicals formation in Klebsiella pneumoniae and Clostridium butyricum during anaerobic growth on glycerol. | Solomon BO, Zeng AP, Biebl H, Schlieker H, Posten C, Deckwer WD | J Biotechnol | 10.1016/0168-1656(94)00148-6 | 1995 | |
| Metabolism | The physiological function of periplasmic glucose oxidation in phosphate-limited chemostat cultures of Klebsiella pneumoniae NCTC 418. | Buurman ET, ten Voorde GJ, Teixeira de Mattos MJ | Microbiology (Reading) | 10.1099/13500872-140-9-2451 | 1994 | |
| Metabolism | Gluconate metabolism of Klebsiella pneumoniae NCTC 418 grown in chemostat culture. | Simons JA, Teixeira de Mattos MJ, Neijssel OM | Arch Microbiol | 10.1007/BF00290922 | 1993 | |
| Metabolism | Anaerobic 2-ketogluconate metabolism of Klebsiella pneumoniae NCTC 418 grown in chemostat culture: involvement of the pentose phosphate pathway. | Simons JA, Snoep JL, Feitz S, Teixeira de Mattos MJ, Neijssel OM | J Gen Microbiol | 10.1099/00221287-138-3-423 | 1992 | |
| Utility of phenomenological models for describing temperature dependence of bacterial growth. | Heitzer A, Kohler HP, Reichert P, Hamer G | Appl Environ Microbiol | 10.1128/aem.57.9.2656-2665.1991 | 1991 | ||
| Metabolism | Aerobic 2-ketogluconate metabolism of Klebsiella pneumoniae NCTC 418 grown in chemostat culture. | Simons JA, Teixeira de Mattos MJ, Neijssel OM | J Gen Microbiol | 10.1099/00221287-137-7-1479 | 1991 | |
| Metabolism | Quantification of multiple-substrate controlled growth--simultaneous ammonium and glucose limitation in chemostat cultures of Klebsiella pneumoniae. | Rutgers M, Balk PA, van Dam K | Arch Microbiol | 10.1007/BF00248430 | 1990 | |
| Cultivation | Recovery of exponentially growing cultures of Klebsiella pneumoniae NCIB 418 after heat shocks. | Heitzer A, Hamer G | Arch Microbiol | 10.1007/BF00249081 | 1990 | |
| Enzymology | The role of magnesium and calcium ions in the glucose dehydrogenase activity of Klebsiella pneumoniae NCTC 418. | Buurman ET, Boiardi JL, Teixeira de Mattos MJ, Neijssel OM | Arch Microbiol | 10.1007/BF00248434 | 1990 | |
| Metabolism | Nitrogen-limited behaviour of micro-organisms growing in the presence of large concentrations of ammonium ions. | Buurman ET, Teixeira de Mattos MJ, Neijssel OM | FEMS Microbiol Lett | 10.1016/0378-1097(89)90043-8 | 1989 | |
| Enzymology | The influence of the culture pH value on the direct glucose oxidative pathway in Klebsiella pneumoniae NCTC 418. | Hommes RW, Postma PW, Tempest DW, Neijssel OM | Arch Microbiol | 10.1007/BF00413140 | 1989 | |
| Enzymology | The separate roles of PQQ and apo-enzyme syntheses in the regulation of glucose dehydrogenase activity in Klebsiella pneumoniae NCTC 418. | Hommes RW, Herman PT, Postma PW, Tempest DW, Neijssel OM | Arch Microbiol | 10.1007/BF00413139 | 1989 | |
| Cultivation | Establishment of the steady state in glucose-limited chemostat cultures of Klebsiella pneumoniae. | Rutgers M, Teixeira de Mattos MJ, Postma PW, Van Dam K | J Gen Microbiol | 10.1099/00221287-133-2-445 | 1987 | |
| Pathogenicity | Potential prodrugs of 6-acetylmethylenepenicillanic acid (Ro 15-1903). | Adam S, Then R, Angehrn P | J Antibiot (Tokyo) | 10.7164/antibiotics.39.833 | 1986 | |
| Metabolism | DHA system mediating aerobic and anaerobic dissimilation of glycerol in Klebsiella pneumoniae NCIB 418. | Forage RG, Lin EC | J Bacteriol | 10.1128/jb.151.2.591-599.1982 | 1982 | |
| Pathogenicity | Cobalt and nickel sensitivity and tolerance in Klebsiella pneumoniae. | Ainsworth MA, Tompsett CP, Dean AC | Microbios | 1980 |
| #959 | Leibniz Institut DSMZ-Deutsche Sammlung von Mikroorganismen und Zellkulturen GmbH ; Curators of the DSMZ; DSM 2026 |
| #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 ) |
| #35132 | ; Curators of the CIP; |
| #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) . |
| #68368 | Automatically annotated from API 20E . |
| #68371 | Automatically annotated from API 50CH acid . |
| #68382 | Automatically annotated from API zym . |
| #121883 | Collection of Institut Pasteur ; Curators of the CIP; CIP 103733 |
| #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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