Transcriptomic fingerprinting of Pseudomonas putida under 2 alternative physiological regimes 3 4 by 5 6
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Oxidation of nitrotoluenes by toluene dioxygenase: evidence for a monooxygenase reaction.
Pseudomonas putida F1 and Pseudomonas sp. strain JS150 initiate toluene degradation by incorporating molecular oxygen into the aromatic nucleus to form cis-1,2-dihydroxy-3-methylcyclohexa-3,5-diene. When toluene-grown cells were incubated with 2- and 3-nitrotoluene, the major products identified were 2- and 3-nitrobenzyl alcohol, respectively. The same cells oxidized 4-nitrotoluene to 2-methyl-...
متن کامل1 2 3 4 5 Calcium causes multimerization of the large adhesin LapF and 6 modulates biofilm formation by Pseudomonas putida 7 8
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Permanent draft genome sequence of sulfoquinovose-degrading Pseudomonas putida strain SQ1
Pseudomonas putida SQ1 was isolated for its ability to utilize the plant sugar sulfoquinovose (6-deoxy-6-sulfoglucose) for growth, in order to define its SQ-degradation pathway and the enzymes and genes involved. Here we describe the features of the organism, together with its draft genome sequence and annotation. The draft genome comprises 5,328,888 bp and is predicted to encode 5,824 protein-...
متن کامل1 Metabolic and regulatory rearrangements underlying glycerol metabolism in 2 Pseudomonas putida KT 2440 3 4 by 5 6
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Degradation of chloronitrobenzenes by a coculture of Pseudomonas putida and a Rhodococcus sp.
A single microorganism able to mineralize chloronitrobenzenes (CNBs) has not been reported, and degradation of CNBs by coculture of two microbial strains was attempted. Pseudomonas putida HS12 was first isolated by analogue enrichment culture using nitrobenzene (NB) as the substrate, and this strain was observed to possess a partial reductive pathway for the degradation of NB. From high-perform...
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