
Positive results for oxidase, Tween 80 hydrolysis, gelatin hydrolysis, arginine dihydrolase (48 h), tyrosine hydrolysis, assimilation of:
caprate, malate, citrate, glycerol, L-arabinose, D-glucose, D-fructose, D-trehalose, D-lyxose (weakly positive after 96 h), gluconate and
2-ketogluconate, utilization of: malonic acid, Tween 40, Tween 80, L-arabinose, D-fructose, D-galactose, alpha-D-glucose,
D-mannitol, D-mannose, D-psicose, D-trehalose, D-xylose, methyl pyruvate, acetic acid, cis-aconitic acid, citric acid, formic acid,
D-galactonic acid lactone, D-glucosaminic acid, alpha-hydroxybutyric acid, beta-hydroxybutyric acid, alpha-ketoglutaric acid,
alpha-ketovaleric acid, propionic acid, quinic acid, succinic acid, bromosuccinic acid, L-alaninamide, D-alanine, L-alanyl glycine,
L-aspartic acid, L-glutamic acid, L-histidine, hydroxy-L-proline, L-leucine, L-pyroglutamic acid, L-serine, L-threonine, DL-carnitine,
gamma-aminobutyric acid, urocanic acid, glycerol and DL-alpha-glycerol phosphate.
Negative results for ornithine decarboxylase, urease, DN-ase, nitrate reduction, aesculin hydrolysis, starch hydrolysis, lecithinase,
indole production, beta-galactosidase, fermentation of D-glucose, assimilation of: phenylacetic acid, adipate, erythritol, D-arabinose,
L-xylose, D-adonitol, methyl beta-xyloside, L-sorbose, L-rhamnose, dulcitol, inositol, D-sorbitol, methyl alpha-D-mannoside, methyl
alpha-D-glucoside, amygdalin, arbutin, salicin, D-cellobiose, D-maltose, D-lactose, D-melibiose, D-sucrose, inulin, D-melezitose,
D-raffinose, starch, glycogen, xylitol, gentiobiose, D-turanose, D-tagatose, D- and L-fucose, L-arabitol, 5-ketogluconate, utilization of:
alpha-cyclodextrin, dextrin, N-acetyl-D-galactosamine, adonitol, D-cellobiose, L-fucose, gentiobiose, myo-inositol, alpha-D-lactose,
lactulose, maltose, D-melibiose, methyl beta-D-glucoside, D-raffinose, L-rhamnose, D-sorbitol, sucrose, turanose, xylitol, itaconic
acid, sebacic acid, glycyl L-aspartic acid, L-ornithine, L-phenylalanine, D-serine, thymidine, phenylethylamine, 2,3-butanediol,
alpha-D-glucose 1-phosphate and D-glucose 6-phosphate.
____________________
(most reactions were determined by API 20NE, API 50 CH and Biolog systems)
Taxonomy
Morphology
Cultural characteristics
Biochemical characters
Ecology
Pathogenicity
References
Phylum Pseudomonadota (Proteobacteria), Class Gammaproteobacteria, Order Pseudomonadales, Family Pseudomonadaceae,
Genus Pseudomonas, Pseudomonas moraviensis Tvrzová et al. 2006.
Gram-negative, nonspore-forming rods, 0.6-1.3 x 2-5 μm, occurring singly or in pairs.
Motile by polar flagella. Cells form long rods (5-10 μm) in nutrient broth.
Colonies are circular, smooth and 2-3 mm in diameter after 24 h of cultivation.
Fluorescein is produced on King B medium. Pyocyanine is not produced on King A
medium. Growth occurs at 4-35 ºC, with optimum growth at 28-35 ºC.
Isolated from soil.
Unknown.
- Tvrzova L., Schumann P., Sproer C., Sedlacek I., Pacova Z., Sedo O., Zdrahal Z., Steffen M. & Lang E.: Pseudomonas moraviensis
sp. nov. and Pseudomonas vranovensis sp. nov., soil bacteria isolated on nitroaromatic compounds & emended description of
Pseudomonas asplenii. Int. J. Syst. Evol. Microbiol., 2006, 56, 2657-2663.
- Lopez JR, Dieguez AL, Doce A, De la Roca E, De la Herran R, Navas JI, Toranzo AE, Romalde JL. Pseudomonas baetica sp. nov.,
a fish pathogen isolated from wedge sole, Dicologlossa cuneata (Moreau). Int J Syst Evol Microbiol 2012; 62:874-882.
- Morimoto Y, Lu YJ, Zuo H, Aibibula Z, Tohya M, Kirikae T, Hiramatsu K, Daida H, Baba T. Pseudomonas allokribbensis sp. nov.
and Pseudomonas gozinkensis sp. nov., Two New Species Isolated from a Volcanic Island, Izu Oshima, Japan. Curr Microbiol
2021; 78:1670-1677.
- Poblete-Morales M, Carvajal D, Almasia R, Michea S, Cantillana C, Levican A, Silva-Moreno E. Pseudomonas atacamensis sp.
nov., isolated from the rhizosphere of desert bloom plant in the region of Atacama, Chile. Antonie Van Leeuwenhoek 2020; 113:
1201-1211.

(c) Costin Stoica