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  5. Genetically Engineering Bacillus subtilis with a Heat-Resistant Arsenite Methyltransferase for Bioremediation of Arsenic-Contaminated Organic Waste

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Article
English
2015

Genetically Engineering Bacillus subtilis with a Heat-Resistant Arsenite Methyltransferase for Bioremediation of Arsenic-Contaminated Organic Waste

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English
2015
Applied and Environmental Microbiology
Vol 81 (19)
DOI: 10.1128/aem.01535-15

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Fang-jie Zhao
Fang-jie Zhao

Nanjing Agricultural University

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Ke Huang
Chuan Chen
Qirong Shen
+2 more

Abstract

Organic manures may contain high levels of arsenic (As) due to the use of As-containing growth-promoting substances in animal feed. To develop a bioremediation strategy to remove As from organic waste, Bacillus subtilis 168, a bacterial strain which can grow at high temperature but is unable to methylate and volatilize As, was genetically engineered to express the arsenite S-adenosylmethionine methyltransferase gene (CmarsM) from the thermophilic alga Cyanidioschyzon merolae. The genetically engineered B. subtilis 168 converted most of the inorganic As in the medium into dimethylarsenate and trimethylarsine oxide within 48 h and volatized substantial amounts of dimethylarsine and trimethylarsine. The rate of As methylation and volatilization increased with temperature from 37 to 50°C. When inoculated into an As-contaminated organic manure composted at 50°C, the modified strain significantly enhanced As volatilization. This study provides a proof of concept of using genetically engineered microorganisms for bioremediation of As-contaminated organic waste during composting.

How to cite this publication

Ke Huang, Chuan Chen, Qirong Shen, Barry P. Rosen, Fang-jie Zhao (2015). Genetically Engineering Bacillus subtilis with a Heat-Resistant Arsenite Methyltransferase for Bioremediation of Arsenic-Contaminated Organic Waste. Applied and Environmental Microbiology, 81(19), pp. 6718-6724, DOI: 10.1128/aem.01535-15.

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Publication Details

Type

Article

Year

2015

Authors

5

Datasets

0

Total Files

0

Language

English

Journal

Applied and Environmental Microbiology

DOI

10.1128/aem.01535-15

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