Enrichment and Characterization of a Trichloroethene-Dechlorinating Consortium Containing Multiple "Dehalococcoides" Strains

A microbial consortium that reductively dechlorinates trichloroethene, cis-1,2-dichloroethene (cis-DCE), and vinyl chloride (VC) to ethene with methanogenesis was enriched from chloroethene-contaminated soil from Japan. Dechlorination activity was maintained for over 4 years. Using quantitative poly...

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Veröffentlicht in:Bioscience, biotechnology, and biochemistry biotechnology, and biochemistry, 2011, Vol.75 (7), p.1268-1274
Hauptverfasser: FUTAGAMI, Taiki, OKAMOTO, Fuyuki, HASHIMOTO, Hiroshi, FUKUZAWA, Kotaro, HIGASHI, Koji, NAZIR, K.H.M. Nazmul Hussain, WADA, Erina, SUYAMA, Akiko, TAKEGAWA, Kaoru, GOTO, Masatoshi, NAKAMURA, Kanji, FURUKAWA, Kensuke
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Sprache:eng
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Zusammenfassung:A microbial consortium that reductively dechlorinates trichloroethene, cis-1,2-dichloroethene (cis-DCE), and vinyl chloride (VC) to ethene with methanogenesis was enriched from chloroethene-contaminated soil from Japan. Dechlorination activity was maintained for over 4 years. Using quantitative polymerase chain reaction (PCR) and denaturing gradient gel electrophoresis (DGGE) analysis targeting the "Dehalococcoides" 16S rRNA gene, four strains were detected. Their growth and dechlorination activities were classified into two types: one that grows by converting cis-DCE to ethene and the other that grows by converting cis-DCE to VC. Then, the vcrA and bvcA genes encoding cis-DCE/VC reductive dehalogenases were detected. Inhibitors of methanogenesis (2-bromoethanesulfonate) and sulfidogenesis (molybdate) led to accumulation of cis-DCE and of VC respectively. These results suggest that methanogens and sulfate-reducing bacteria can play a significant role in dechlorination by "Dehalococcoides."
ISSN:0916-8451
1347-6947
1347-6947
DOI:10.1271/bbb.110028