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Biodegradation of crystal violet by Pseudomonas putida

Biotechnology Letters, 2007
Crystal violet (CV), which has been extensively used as a biological stain and a commercial textile dye, is a recalcitrant molecule. A strain of Pseudomonas putida was isolated that effectively degraded CV: up to 80% of 60 microM CV as the sole carbon source, was degraded in liquid media within 1 week.
Chiing-Chang, Chen   +4 more
openaire   +2 more sources

Green biogenic synthesis of zinc oxide nanoparticles using Pseudomonas putida culture and its In vitro antibacterial and anti-biofilm activity

Biocatalysis and Agricultural Biotechnology, 2019
In the present work we demonstrated an environmentally acceptable biogenic synthesis of ZnO NPs using Pseudomonas putida (MCC 2989) broth culture. The physiochemical and morphological characters of the synthesized ZnO NPs was confirmed using UV–vis ...
J. Jayabalan   +5 more
semanticscholar   +1 more source

Biodegradation characteristics of quinoline by Pseudomonas putida

Bioresource Technology, 2010
A quinoline-degrading strain was isolated from activated sludge of the municipal wastewater treatment plant and identified as Pseudomonas putida on the basis of its partial 16S rRNA gene sequence analysis. The characteristics of quinoline degradation were investigated.
Qiao, Lin, Wang, Jianlong
openaire   +2 more sources

The versatility of Pseudomonas putida in the rhizosphere environment

2020
This article addresses the lifestyle of Pseudomonas and focuses on how Pseudomonas putida can be used as a model system for biotechnological processes in agriculture, and in the removal of pollutants from soils. In this chapter we aim to show how a deep analysis using genetic information and experimental tests has helped to reveal insights into the ...
Molina Delgado, Lázaro   +3 more
openaire   +3 more sources

Oxidative stress response in Pseudomonas putida

Applied Microbiology and Biotechnology, 2014
Pseudomonas putida is widely distributed in nature and is capable of degrading various organic compounds due to its high metabolic versatility. The survival capacity of P. putida stems from its frequent exposure to various endogenous and exogenous oxidative stresses.
Jisun, Kim, Woojun, Park
openaire   +2 more sources

Pseudomonas putida in the quest of programmable chemistry

Current Opinion in Biotechnology, 2019
Traditional microbial biotechnology is in the midst of a profound transformation brought about not only by many conceptual and technical breakthroughs (e.g. systems and synthetic biology, the CRISPR revolution) but also by the major change of socioeconomic context generically known as the 4th Industrial Revolution.
Martínez-García, Esteban   +1 more
openaire   +4 more sources

Broad-spectrum antimicrobial activity of volatile organic compounds from endophytic Pseudomonas putida BP25 against diverse plant pathogens

Biocontrol science and technology (Print), 2019
Black pepper endophytic Pseudomonas putida BP25 produced diverse antimicrobial volatile organic compounds having potential for plant disease management.
V. N. Agisha   +4 more
semanticscholar   +1 more source

The uptake of Glucose and gluconate by Pseudomonas putida

Molecular and Cellular Biochemistry, 1975
The uptake of glucose and gluconate is under inductive control in Pseudomonas putida. Glucose, gluconate, and 2-ketogluconate were each good nutritional inducers of these transport abilities. Glucose and gluconate uptake obeyed saturation kinetics: the apparent Km for glucose was 6 mM and that for gluconate was 0.5 mM.
M, Vicente   +3 more
openaire   +2 more sources

Degradation of dibenzothiophene by Pseudomonas putida

Letters in Applied Microbiology, 1994
The microbial degradation of dibenzothiophene (DBT) and other organosulphur compounds such as thiophene-2-carboxylate (T2C) is of interest for the potential desulphurization of coal. The feasibility of degradation of DBT and T2C by Pseudomonas putida and other bacteria was analysed.
Magda, Constanti   +2 more
openaire   +2 more sources

Mechanism of formaldehyde biodegradation by Pseudomonas putida

Applied Microbiology and Biotechnology, 1990
Formaldehyde biodegradation by a strain of Pseudomonas putida has been studied. The results indicate that this biodegradation is initiated by a dismutation reaction, yielding as products formic acid and methanol. The degradation of methanol and formic acid begins after exhaustion of formaldehyde in the medium, and presents a diauxic pattern: first ...
N, Adroer, C, Casas, C, de Mas, C, Solà
openaire   +2 more sources

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