4.6 Article

Characterization of Arsenite-Oxidizing Bacteria Isolated from Arsenic-Rich Sediments, Atacama Desert, Chile

Journal

MICROORGANISMS
Volume 9, Issue 3, Pages -

Publisher

MDPI
DOI: 10.3390/microorganisms9030483

Keywords

arsenic; arsenite-oxidizing; biofilm; detoxification

Categories

Funding

  1. FONDECYT [11130383 ANID-Chile]
  2. VRID, University of Concepcion, Chile [216.036.043.1.0]

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Arsenic is a semimetal toxic to humans, commonly exposed through consumption of contaminated water. This study isolated a high As-resistant bacterium Pseudomonas migulae VC-19 from sediments of the As-rich Camarones River in Chile, showing high rates of As(III) conversion when immobilized on activated carbon. It has the potential for biotechnological application in treating arsenic contaminated waters.
Arsenic (As), a semimetal toxic for humans, is commonly associated with serious health problems. The most common form of massive and chronic exposure to As is through consumption of contaminated drinking water. This study aimed to isolate an As resistant bacterial strain to characterize its ability to oxidize As (III) when immobilized in an activated carbon batch bioreactor and to evaluate its potential to be used in biological treatments to remediate As contaminated waters. The diversity of bacterial communities from sediments of the As-rich Camarones River, Atacama Desert, Chile, was evaluated by Illumina sequencing. Dominant taxonomic groups (>1%) isolated were affiliated with Proteobacteria and Firmicutes. A high As-resistant bacterium was selected (Pseudomonas migulae VC-19 strain) and the presence of aio gene in it was investigated. Arsenite detoxification activity by this bacterial strain was determined by HPLC/HG/AAS. Particularly when immobilized on activated carbon, P. migulae VC-19 showed high rates of As(III) conversion (100% oxidized after 36 h of incubation). To the best of our knowledge, this is the first report of a P. migulae arsenite oxidizing strain that is promising for biotechnological application in the treatment of arsenic contaminated waters.

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