Cr(VI) reduction by cell-free extract of thermophillic Bacillus fusiformis NTR9
Residual chromium compounds in discharged effluents is a serious problem, due to hexavalent chromium or chromate[Cr(VI)] being extremely toxic and showing mutagenic and carcinogenic effects on biological systems. The bacterial enzymaticCr(VI) reduction can occur and this could be an effective method...
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Prince of Songkla University
2013-08-01
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Online Access: | http://rdo.psu.ac.th/sjstweb/journal/35-4/35-4-5.pdf |
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doaj-6173f0adc1d54454ad135d31bf8803f42020-11-24T23:06:11ZengPrince of Songkla UniversitySongklanakarin Journal of Science and Technology (SJST)0125-33952013-08-01354407414Cr(VI) reduction by cell-free extract of thermophillic Bacillus fusiformis NTR9Pranee PattanapipitpaisalTipmontha ReakyaiResidual chromium compounds in discharged effluents is a serious problem, due to hexavalent chromium or chromate[Cr(VI)] being extremely toxic and showing mutagenic and carcinogenic effects on biological systems. The bacterial enzymaticCr(VI) reduction can occur and this could be an effective method of detoxifying Cr(VI) polluted effluent. The present studycharacterized Cr(VI) reductase activity of cell-free extracts (CFE) of thermophilic chromate-reducing bacteria, Bacillusfusiformis NTR9. Results showed that the optimum temperature and pH for Cr(VI) reductase activity of CFE was 80°C andpH 7, respectively. The reductase activity remained at 60.34% and 26.44% after 30 minutes of exposure to 70 and 90°C,respectively, suggesting a heat stable enzyme. Moreover, the enzyme was resistant under acidic and neutral condition but itsstability was decreased under alkaline condition. The Cr(VI) reductase activity of CFE was enhanced when exposed in Cu2+and Fe3+ by 188.19% and 180.38%, respectively. The Cr(VI) reductase activity could be reduced to 72.19% and 8.95% in thepresence of Mn2+ and Ag+, respectively. Mg2+, Zn2+, As3+ and electron acceptors like sulfate and nitrate had no affect on Cr(VI)reductase activity. The external electron donors (glucose, glycerol, citrate, malate, succinate, and acetate, but not NADH)were essential to improve the chromate reductase activity of NTR9 strain. The chromate reductase was mainly associatedwith the soluble fraction in the cytoplasm of the bacterial cell. The molecular weight of the enzyme was 20 KDa. The resultsshowed that Cr(VI) reductase could be a good candidate for detoxification of Cr(VI) in industrial effluents.http://rdo.psu.ac.th/sjstweb/journal/35-4/35-4-5.pdfCr(VI) reductaseCr(VI) reductionthermophillic chromate-reducing bacteria |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Pranee Pattanapipitpaisal Tipmontha Reakyai |
spellingShingle |
Pranee Pattanapipitpaisal Tipmontha Reakyai Cr(VI) reduction by cell-free extract of thermophillic Bacillus fusiformis NTR9 Songklanakarin Journal of Science and Technology (SJST) Cr(VI) reductase Cr(VI) reduction thermophillic chromate-reducing bacteria |
author_facet |
Pranee Pattanapipitpaisal Tipmontha Reakyai |
author_sort |
Pranee Pattanapipitpaisal |
title |
Cr(VI) reduction by cell-free extract of thermophillic Bacillus fusiformis NTR9 |
title_short |
Cr(VI) reduction by cell-free extract of thermophillic Bacillus fusiformis NTR9 |
title_full |
Cr(VI) reduction by cell-free extract of thermophillic Bacillus fusiformis NTR9 |
title_fullStr |
Cr(VI) reduction by cell-free extract of thermophillic Bacillus fusiformis NTR9 |
title_full_unstemmed |
Cr(VI) reduction by cell-free extract of thermophillic Bacillus fusiformis NTR9 |
title_sort |
cr(vi) reduction by cell-free extract of thermophillic bacillus fusiformis ntr9 |
publisher |
Prince of Songkla University |
series |
Songklanakarin Journal of Science and Technology (SJST) |
issn |
0125-3395 |
publishDate |
2013-08-01 |
description |
Residual chromium compounds in discharged effluents is a serious problem, due to hexavalent chromium or chromate[Cr(VI)] being extremely toxic and showing mutagenic and carcinogenic effects on biological systems. The bacterial enzymaticCr(VI) reduction can occur and this could be an effective method of detoxifying Cr(VI) polluted effluent. The present studycharacterized Cr(VI) reductase activity of cell-free extracts (CFE) of thermophilic chromate-reducing bacteria, Bacillusfusiformis NTR9. Results showed that the optimum temperature and pH for Cr(VI) reductase activity of CFE was 80°C andpH 7, respectively. The reductase activity remained at 60.34% and 26.44% after 30 minutes of exposure to 70 and 90°C,respectively, suggesting a heat stable enzyme. Moreover, the enzyme was resistant under acidic and neutral condition but itsstability was decreased under alkaline condition. The Cr(VI) reductase activity of CFE was enhanced when exposed in Cu2+and Fe3+ by 188.19% and 180.38%, respectively. The Cr(VI) reductase activity could be reduced to 72.19% and 8.95% in thepresence of Mn2+ and Ag+, respectively. Mg2+, Zn2+, As3+ and electron acceptors like sulfate and nitrate had no affect on Cr(VI)reductase activity. The external electron donors (glucose, glycerol, citrate, malate, succinate, and acetate, but not NADH)were essential to improve the chromate reductase activity of NTR9 strain. The chromate reductase was mainly associatedwith the soluble fraction in the cytoplasm of the bacterial cell. The molecular weight of the enzyme was 20 KDa. The resultsshowed that Cr(VI) reductase could be a good candidate for detoxification of Cr(VI) in industrial effluents. |
topic |
Cr(VI) reductase Cr(VI) reduction thermophillic chromate-reducing bacteria |
url |
http://rdo.psu.ac.th/sjstweb/journal/35-4/35-4-5.pdf |
work_keys_str_mv |
AT praneepattanapipitpaisal crvireductionbycellfreeextractofthermophillicbacillusfusiformisntr9 AT tipmonthareakyai crvireductionbycellfreeextractofthermophillicbacillusfusiformisntr9 |
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