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Simultaneous chromate and sulfate removal by Streptomyces sp. MC1. Changes in intracellular protein profile induced by Cr(VI)
The purpose of this study was to investigate the influence of increasing sulfate concentrations on chromium removal, to evaluate the effect of the presence of Cr(VI) on sulfate removal by Streptomyces sp. MC1 and to analyze the differential protein expression profile in the presence of this metal for the identification of proteins repressed or overexpressed. In the presence of Cr(VI) but in the absence of sulfate ions, bacterial growth was negligible, showing the Cr(VI) toxicity for this bacterium. However, the sulfate presence stimulated bacterium growth and Cr(VI) removal, regardless of its concentrations. Streptomyces sp. MC1 showed ability to remove chromium and sulfate simultaneously. Also, the sulfate presence favored the decrease of total chromium concentration from supernatants reaching a decrease of 50% at 48 h. In presence of chromium, seven proteins were down‐expressed and showed homology to proteins involved in protein biosynthesis, energy production and free radicals detoxification while two proteins involved in oxidation‐reduction processes identified as dihydrolipoamide dehydrogenase and S‐adenosyl‐l‐methionine synthase were overexpressed.
- National University of Tucumán Argentina
- University of South Dakota United States
- National University of San Luis Argentina
- National University of San Luis Argentina
- National Scientific and Technical Research Council Argentina
Remoción de cromo, Chromium, Sulfates, Computational Biology, Industrial Waste, Streptomyces, Culture Media, https://purl.org/becyt/ford/2.8, Biodegradation, Environmental, Bacterial Proteins, Soil Pollutants, Remoción de sulfato, Biomass, Acinobacteria, https://purl.org/becyt/ford/2, Oxidation-Reduction, Soil Microbiology, Dihydrolipoamide Dehydrogenase
Remoción de cromo, Chromium, Sulfates, Computational Biology, Industrial Waste, Streptomyces, Culture Media, https://purl.org/becyt/ford/2.8, Biodegradation, Environmental, Bacterial Proteins, Soil Pollutants, Remoción de sulfato, Biomass, Acinobacteria, https://purl.org/becyt/ford/2, Oxidation-Reduction, Soil Microbiology, Dihydrolipoamide Dehydrogenase
