Metagenome phylogenetic profiling of microbial community evolution in a tetrachloroethene-contaminated aquifer responding to enhanced reductive dechlorination protocols

Author:

Reiss Rebecca A.,Guerra Peter,Makhnin Oleg

Funder

National Center for Research Resources

National Institute of General Medical Sciences

Amec Foster Wheeler plc

Publisher

Springer Science and Business Media LLC

Subject

Genetics

Reference51 articles.

1. Lee PK, Macbeth TW, Sorenson Jr KS, Deeb RA, Alvarez-Cohen L. Quantifying genes and transcripts to assess the in situ physiology of “Dehalococcoides” spp. in a trichloroethene-contaminated groundwater site. Appl Environ Microbiol. 2008;74(9):2728–39.

2. Lee PKH, Cheng D, Hu P, West KA, Dick GJ, Brodie EL, et al. Comparative genomics of two newly isolated Dehalococcoides strains and an enrichment using a genus microarray. ISME J. 2011;5(6):1014–24.

3. Pathak A, Shanker R, Garg SK, Manickam N. Profiling of biodegradation and bacterial 16S rRNA genes in diverse contaminated ecosystems using 60-mer oligonucleotide microarray. Appl Microbiol Biotechnol. 2011;90(5):1739–54.

4. USEPA. Toxicological review of Tetrachloroethylene (Perchloroethylene) (CASRN 127-18-4) in support of summary information on the Integrated Risk Information System (IRIS). Washington DC: U.S. Environmental Protection Agency; 2011. Contract No.: EPA/635/R-08/011A.

5. Morse JJ, Alleman BC, Gossett JM, Zinder SH, Fennell DE, Sewell GW, et al. Draft Technical Protocol – A treatability test for evaluating the potential applicability of the reductive anaerobic biological in situ treatment technology (RABITT) to remediate chloroethenes. Alexandria: DoD Environmental Security Technology Certification Program; 1998. Contract No.: ER-199719.

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