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Isolation and ars detoxification of arsenite-oxidizing bacteria from abandoned arsenic-contaminated mines

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Abstract
The ecosystems of certain abandoned mines contain arsenic-resistant bacteria capable of performing detoxification when an ars gene is present in the bacterial genome. The ars gene has already been isolated from Pseudomonas putida and identified as a member of the membrane transport regulatory deoxyribonucleic acid family. The arsenite-oxidizing bacterial strains isolated in the present study were found to grow in the presence of 66.7 mM sodium arsenate (V; Na2HAsO4,center dot 7H(2)O), yet experienced inhibited growth when the sodium arsenite (III; NaAsO2) concentration was higher than 26 mM. Batch experiment results showed that Pseudomonas putida strain OS-5 completely oxidized I mM of As(III to As(V) within 35 h. An arsB gene encoding a membrane transport regulatory protein was observed in arsenite-oxidizing Pseudomonas putida strain OS-5, whereas arsB, arsH, and an-A were detected in strain OS-19, arsD and arsB were isolated from strain RW-18, and arsR, arsD, and arsB were found in E. coli strain OS-80. The leader gene of arsR, -arsD, was observed in a weak acid position. Thus, for bacteria exposed to weak acidity, the ars system may cause changes to the ecosystems of As-contaminated mines. Accordingly, the present results suggest that arsR, arsD, arsAB, arsA, arsB, arsC, arsH, arrA, arrB, aoxA, aoxB, aoxC, aoxD, aroA, and aroB may be useful for arsenite-oxidizing bacteria in abandoned arsenic-contaminated mines.
Author(s)
Chang, Jin-SooYoon, In-HoKim, Kyoung-Woong
Issued Date
2007-05
Type
Article
URI
https://scholar.gist.ac.kr/handle/local/17680
Publisher
한국미생물·생명공학회
Citation
Journal of Microbiology and Biotechnology, v.17, no.5, pp.812 - 821
ISSN
1017-7825
Appears in Collections:
Department of Environment and Energy Engineering > 1. Journal Articles
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