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Biotransformation of limonene by Pseudomonas putida

Applied Microbiology and Biotechnology, 2001
From a study of three fungal and 15 bacterial strains, it was observed that Pseudomonas putida MTCC 1072 oxidized limonene with the highest efficiency of. Fermentation of limonene by P. putida MTCC 1072 was conducted for 120 h at 30 degrees C at a fixed pH of 5.0.
T, Chatterjee, D K, Bhattacharyya
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Transport of succinate by pseudomonas putida

Archives of Biochemistry and Biophysics, 1974
Abstract Induced succinate uptake and transport (defined as transport of a compound followed by its metabolism and transport in the absence of subsequent metabolism) by Pseudomonas putida are active processes resulting in intracellular succinate concentrations 10-fold that of the initial extracellular concentration.
R E, Dubler, W A, Toscano, R A, Hartline
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Transducing Phage for Pseudomonas putida

Nature, 1968
THE extensive biochemical knowledge of various Pseudomonas species1 would be considerably enhanced if genetic analysis was possible in these organisms. Conjugation and transduction have both been demonstrated for P. aeruginosa2,3, but, despite apparently many other attempts, only recently has a transducing phage been characterized for P. putida4.
B W, Holloway, P, Van de Putte
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The uptake of fructose by Pseudomonas putida

Archives of Microbiology, 1975
Fructose transport was not apparently affected in a number of Pseudomonas putida strains with deranged activity of a common glucose-gluconate uptake system, indicating the existence of an independent fructose uptake system. Fructose uptake by glucose-gluconate uptake mutants was induced by fructose and obeyed saturation kinetics (apparent Km equal 0.3 ...
M. Vicente   +4 more
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The metabolism of biphenyl byPseudomonas putida

Experientia, 1971
La degradazione del bifenile da parte diPs. putida inizia con la formazione di un diolo cui si attribuisce la struttura di 2,3-diidro-2,3-diossibifenile, in quanto, per disidratazione a caldo con acido cloridrico, si trasforma in 2-ossibifenile e tracce di 3-ossibifenile. Il diolo viene ulteriormente degradato ad acido benzoico. Le cellule diPs. putida
D. Catelani, C. Sorlini, V. Treccani
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Acetate inhibition of Pseudomonas putida

Biotechnology and Bioengineering, 1985
AbstractTo study the effect of acetate inhibition on the parameters of yield and maintenance for bacterial growth, Pseudomonas putida ATCC 23467 was grown in a minimal salts medium with acetate as the sole carbon source with limiting and with excess quantities of urea in the feed medium.
J, Fieschko, A E, Humphrey
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Simultaneous removal of nitrogen and phosphorous by heterotrophic nitrification-aerobic denitrification of a metal resistant bacterium Pseudomonas putida strain NP5.

Bioresource Technology, 2019
A novel strain NP5 with efficient heterotrophic nitrification, aerobic denitrification and phosphorus accumulation ability was isolated and identified as Pseudomonas putida strain NP5.
Lei Yang   +8 more
semanticscholar   +1 more source

Pseudomonas putida and Septic Arthritis

Annals of Internal Medicine, 1973
Excerpt To the editor:Pseudomonas putidais a Gram-negative, aerobic, fluorescent pseudomonad that has multitrichous flagella, does not grow at 42 °C, and is characterized by variable acid productio...
T, Madhavan   +3 more
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The uptake of 2-ketogluconate by Pseudomonas putida

Archives of Microbiology, 1976
The uptake of 2-ketogluconate is inducible in Pseudomonas putida: 2-ketogluconate, glucose, gluconate, glycerol and glycerate were each good nutritional inducers of this ability. 2-Ketogluconate uptake obeyed saturation kinetics (apparent Km in 2-ketogluconate-grown cells was 0.4 mM).
D, Torrontegui, R, Díaz, J L, Cánovas
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Lipoate metabolism in Pseudomonas putida LP

Archives of Biochemistry and Biophysics, 1975
dl-[1,6-14C]Lipoate was used to support the growth of Pseudomonas putida LP, which was found to grow on d- or l-lipoate as sole source of carbon and sulfur. The major radioactive catabolite in the benzene extract from acidified aerobic cultures was identified to be bisnorlipoate.
H H, Chang, M L, Rozo, D B, McCormick
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