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A novel perchlorate- and nitrate-reducing bacterium, Azospira sp PMJ

Title
A novel perchlorate- and nitrate-reducing bacterium, Azospira sp PMJ
Author
이용우
Keywords
Azospira sp PMJ; Perchlorate-reducing bacteria (PCRB); Simultaneous perchlorate and nitrate reduction; Autotrophic perchlorate reduction; Kinetic parameters; MEMBRANE-BIOFILM REACTOR; (PER)CHLORATE-REDUCING BACTERIA; DECHLOROSOMA-SUILLUM; ELECTRON-ACCEPTORS; ELEMENTAL SULFUR; DRINKING-WATER; SP-NOV; REDUCTION; KINETICS; CHLORATE
Issue Date
2016-06
Publisher
SPRINGER
Citation
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, v. 100, No. 13, Page. 6055-6068
Abstract
A novel perchlorate-reducing bacterium (PCRB), PMJ, was isolated from the mixed liquor suspended solids in the aerobic tank of a wastewater treatment plant. The 16S ribosomal RNA (rRNA), perchlorate reductase, and chlorite dismutase gene sequences revealed that PMJ belonged to the genus Azospira. PMJ was removed high-strength (700 mg/L) perchlorate and also removed low-strength (a parts per thousand currency sign50 mg/L) perchlorate below the detection limit (2 mu g/L) when acetate was used as a sole and carbon source. The maximum specific perchlorate utilization rate, q (max,) was 0.96 mg ClO4 (-)/mg dry cell weight day, and the half-saturation constant, K (S) , was lower than 0.002 mg ClO4 (-)/L. PMJ also utilized inorganic electron donors [(H-2, S-0, and Fe(II)] with perchlorate as an electron acceptor. Perchlorate reduction by PMJ was completely inhibited by oxygen and chlorate but was not inhibited by nitrate. In the presence of similar concentrations (100 similar to 140 mg/L) of nitrate and perchlorate, PMJ simultaneously removed both electron acceptors. Therefore, it was concluded that the strains PMJ might possess separate pathways for perchlorate and nitrate reduction. These results indicated that Azospira sp. PMJ could be efficiently used for treating perchlorate-contaminated groundwater and wastewater because many of these water bodies are known to contain both perchlorate and nitrate. In addition, low K (S) value and autotrophic perchlorate reduction of PMJ might be useful to design the biological treatment systems.
URI
https://link.springer.com/article/10.1007/s00253-016-7401-3http://hdl.handle.net/20.500.11754/65438
ISSN
0175-7598; 1432-0614
DOI
10.1007/s00253-016-7401-3
Appears in Collections:
COLLEGE OF SCIENCE AND CONVERGENCE TECHNOLOGY[E](과학기술융합대학) > CHEMICAL AND MOLECULAR ENGINEERING(화학분자공학과) > Articles
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