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Applied and Environmental Microbiology|December 1, 1987
Adaptation of aquatic microbial communities to hg stressT BarkayMicrobiological Sciences|June 1, 1988
Adaptation of aquatic microbial communities to pollutant stressT Barkay, H PritchardCurrent Opinion in Microbiology|May 30, 2001
Metal and radionuclide bioremediation: issues, considerations and potentialsT Barkay, J SchaeferApplied and Environmental Microbiology|November 5, 2005
New findings on evolution of metal homeostasis genes: evidence from comparative genome analysis of bacteria and archaeaJ M Coombs, T BarkayApplied and Environmental Microbiology|August 1, 1986
Phenotypic and genotypic adaptation of aerobic heterotrophic sediment bacterial communities to mercury stressT Barkay, B H OlsonApplied and Environmental Microbiology|October 1, 1994
Role of Na+ in transport of Hg2+ and induction of the Tn21 mer operonO V Selifonova, T BarkayApplied and Environmental Microbiology|March 10, 2004
Molecular evidence for the evolution of metal homeostasis genes by lateral gene transfer in bacteria from the deep terrestrial subsurfaceJ M Coombs, T BarkayApplied and Environmental Microbiology|June 1, 1990
Genes encoding mercuric reductases from selected gram-negative aquatic bacteria have a low degree of homology with merA of transposon Tn501T Barkay, M Gillman, C LiebertApplied and Environmental Microbiology|March 1, 1993
Conjugal gene transfer to aquatic bacteria detected by the generation of a new phenotypeT Barkay, C Liebert, M GillmanApplied and Environmental Microbiology|May 1, 1989
Environmental significance of the potential for mer(Tn21)-mediated reduction of Hg2+ to Hg0 in natural watersT Barkay, C Liebert, M GillmanPageof 3