The Electrochemically Active Arsenic Oxidising Bacterium Ancylobacter sp TS-1
School authors:
author photo
Ignacio Tomas Vargas
author photo
Mario Andres Vera
External authors:
  • Javiera M. Anguita ( Pontificia Universidad Catolica de Chile , Ctr Desarrollo Urbano Sustentable CEDEUS )
Abstract:

The study of electrochemically active microorganisms (EAMs) has revealed the metabolic versatility of chemolithoautotrophic microorganisms in bioelectrochemical systems (BESs). However, direct electron uptake from electrodes to support bacterial growth has been suggested only for the iron oxidiser Mariprofundus ferrooxydans, the sulfur oxidiser bacterium Thiobacillus denitrificans and the iron/sulfur oxidiser Acidithiobacillus ferrooxidans. To the best of our knowledge, chemolithoautotrophic arsenite oxidisers (CAOs) have not been reported as biocathodic EAM. This paper studies the electrochemical activity of Ancylobacter sp. TS-1, a new CAO. The electrochemical capacity of TS-1 was evidenced by linear sweep voltammetry tests, revealing a peak of cathodic current dependent on biomass concentration at -500 mV (vs. Ag/AgCl, at pH 7.2); and by chronoamperometry, showing an increase in the cathodic current over time. Cathodic currents obtained for TS-1 (9.5 +/- 2.4 mu A/cm(2)) are comparable with values previously reported for A. ferrooxidans (similar to 27 mu A/cm(2)) and M. ferrooxydans (similar to 8 mu A/cm(2)). Scanning electron micrographs show TS-1 cells on electrodes during the chronoamperometry, suggesting biofilm development of strain TS-1 when using the cathode only as an electron donor. Hence, TS-1 not only enlarges the list of known biocathodic EAMs, but also paves the way for novel BES applications on arsenic electro-bioaugmentation and bioremediation.

UT WOS:000451896100009
Number of Citations 4
Type
Pages 3633-3638
ISSUE 23
Volume 5
Month of Publication DEC 3
Year of Publication 2018
DOI https://doi.org/10.1002/celc.201800943
ISSN
ISBN