Stutzerimonas tarimensis
Taxonomy
Morphology
Cultural characteristics
Biochemical characters
Ecology
Pathogenicity
References
Phylum Pseudomonadota (Proteobacteria), Class Gammaproteobacteria, Order Pseudomonadales, Family Pseudomonadaceae,
Genus Stutzerimonas,
Stutzerimonas tarimensis (Anwar et al. 2017) Gomila et al. 2022.

Old synonym:
Pseudomonas tarimensis Anwar et al. 2017.
Species decription is based on a single isolate.
Gram-negative rods, 0.5-0.7 x 1.5-2.0 µm. Motile by one polar flagellum. Non-spore
forming.
Colonies on Marine Agar are circular with entire margins, smooth, yellow and 1.0 mm
in diameter after incubation for 3 days at 30 ºC and at pH 7.5. Fluorescent pigments
are not produced. Grows at 25-37 ºC (optimum 30 ºC), and at pH 6.0-9.0 (optimum pH
7.5). Growth is observed on MA agar supplemented with 0-3 % (w/v) NaCl, with an
optimum of 1% NaCl. Aerobic.
Isolated from from the storage liquid in the stem of Populus euphratica stands at the ancient Ugan River in Xinjiang Uyghur
Autonomous Region, China.
Resistant to: tetracycline, gentamicin, chloramphenicol, kanamycin and streptomycin.
Undetermined.
  1. Anwar N, Rozahon M, Zayadan B, Mamtimin H, Abdurahman M, Kurban M, Abdurusul M, Mamtimin T, Abdukerim M, Rahman E.
    Pseudomonas tarimensis sp. nov., an endophytic bacteria isolated from Populus euphratica. Int J Syst Evol Microbiol 2017; 67:4372-
    4378.
  2. Gomila M, Mulet M, Garcia-Valdes E, Lalucat J. 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. Microorganisms 2022;
    10:0.
  3. Zou Y, He S, Sun Y, Zhang X, Liu Y, Cheng Q. Pseudomonas urumqiensis sp. nov., isolated from rhizosphere soil of Alhagi
    sparsifolia. Int J Syst Evol Microbiol 2019; 69:1760-1766.
Positive results for alkaline phosphatase, catalase, esculin hydrolysis, esterase, esterase lipase, beta-fucosidase, alpha- and
beta-galactosidase, beta-glucuronidase, beta-glucosidase, N-acetyl-beta-glucosamine, leucine arylamidase, alpha-mannosidase,  
naphthol-AS-BI-phophohydrolase, oxidase, starch hydrolysis, trypsin and valine arylamidase.
Can utilize as sole carbon source: D-fructose, D-fructose-6-phosphate, L-alanine, D-glucuronic acid, glucuronamide, quinic acid,
D-lactic acid methyl ester, L-lactic acid, alpha-ketoglutaric acid and L-malic acid.

Negative results for arginine dihydrolase, acid phosphatase, cystine arylamidase, alpha-glucosidase, gelatinase, indole production,
lipase (C14), lysine decarboxylase, methyl red test, ornithine decarboxylase, phenylalanine deaminase, alpha-chymotrypsin, Tween
80 hydrolsis, urease, VogesProskauer reaction and production of acid from D-glucose.
No assimilation (API 20 NE): adipate, caprate, phenylacetate, malate, D-glucose, L-arabinose, D-mannose, D-mannitol and maltose.
No utilization of: dextrin, maltose, trehalose, cellobiose, gentiobiose, sucrose, turanose, stachyose, raffinose, lactose, melibiose,
methyl beta-D-glucoside, D-salicin, N-acetyl-D-glucosamine, N-acetyl-beta-D-mannosamine, N-acetyl-D-galactosamine, N-acetyl
neuraminic acid, alpha-D-glucose, D-mannose, D-galactose, 3-methyl glucose, D- and L-fucose, L-rhamnose, inosine, D-sorbitol,
D-mannitol, D-arabitol, myo-inositol, glycerol, D-glucose-6-phosphate, D-aspartic acid, D- and L-serine, gelatin, glycyl L-proline,
L-arginine, L-aspartic acid, L-glutamic acid, L-histidine, Lpyroglutamic acid, pectin, D-galacturonic acid, L-galactonic acid lactone,
D-gluconic acid, mucic acid, D-saccharic acid, p-hydroxyphenylacetic acid, methyl pyruvate, citric acid, D-malic acid, bromosuccinic
acid, Tween 40, gaminobutryric acid, alpha-hydroxybutyric acid, beta-hydroxy-DL-butyric acid, alpha-ketobutyric acid, acetoacetic acid,
propionic acid, acetic acid, formic acid and fusidic acid.
(c) Costin Stoica
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