Biodegradation and Bioaccumulation of Decachlorobiphenyl (DCB) by Native Strain Pseudomonas extremaustralis ADA-5 View Full Text


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Article Info

DATE

2021-04-30

AUTHORS

Miguel Angel Gómez López, Adalberto Zenteno-Rojas, Esperanza Martinez-Romero, Clara Ivette Rincón-Molina, Miguel Angel Vences-Guzmán, Víctor Manuel Ruíz-Valdiviezo, Francisco Alexander Rincón-Molina, Luis Alberto Manzano-Gomez, Reiner Rincón-Rosales

ABSTRACT

Decachlorobiphenyl (DCB) is one of the 209 polychlorinated biphenyls congeners characterized by its high toxicity and chemical stability. It is produced by industrial activities. A possible strategy to eliminate DCB is by bacterial degradation. The main objective of this study was to define the optimal conditions for biodegradation and bioaccumulation of DCB by Pseudomonas extremaustralis ADA-5 isolated from a worm intestine. Bacterial growth kinetics were determined in minimal medium with added biphenyl and DCB. By GC coupled to mass spectrometry, we found that the strain had the ability to degrade 9.75% of available DCB, using it as a carbon source and was able to accumulate 19.98% of this pollutant in biomass. Membrane lipids may be altered by DCB. Phosphatidylethanolamine (PE), phosphatidylglycerol (PG), and cardiolipin (CL) were identified by thin-layer chromatography as the membrane lipids of the cell. At 250 mg L−1 of DCB in the culture medium, membranes showed a 30% decrease in the PE concentration, an 18% increase in the PG, and a 12% increase in CL. ADA-5 was able to catabolize DCB and may be used for bioremediation of highly chlorinated toxic compounds in soil. More... »

PAGES

192

References to SciGraph publications

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  • 2015-04-25. Removal of Decachlorobiphenyl in Vermicomposting Process Amended with Rabbit Manure and Peat Moss in WATER, AIR, & SOIL POLLUTION
  • 2018-01-17. Microbial Characterization of Methanogenic and Iron-reducing Consortium in Reactors with Polychlorinated Biphenyls in CURRENT MICROBIOLOGY
  • 2013-12-05. Tributyltin (TBT) induces oxidative stress and modifies lipid profile in the filamentous fungus Cunninghamella elegans in ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
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