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Microbial Ecology|March 3, 2004
Sulfate-reducing bacteria-dominated biofilms that precipitate ZnS in a subsurface circumneutral-pH mine drainage systemM Labrenz, J F BanfieldFEMS Microbiology Letters|December 4, 2001
Arsenite oxidation and arsenate respiration by a new Thermus isolateT M Gihring, J F BanfieldApplied and Environmental Microbiology|August 31, 2000
Phylogeny of microorganisms populating a thick, subaerial, predominantly lithotrophic biofilm at an extreme acid mine drainage siteP L Bond, S P Smriga, J F BanfieldEnvironmental Microbiology|February 24, 2001
Characteristics of attachment and growth of Thiobacillus caldus on sulphide minerals: a chemotactic response to sulphur minerals?K J Edwards, P L Bond, J F BanfieldApplied and Environmental Microbiology|July 31, 1999
Seasonal variations in microbial populations and environmental conditions in an extreme acid mine drainage environmentK J Edwards, T M Gihring, J F BanfieldApplied and Environmental Microbiology|October 31, 2000
Comparison of acid mine drainage microbial communities in physically and geochemically distinct ecosystemsP L Bond, G K Druschel, J F BanfieldMolecular Biology and Evolution|March 1, 1992
Character analysis and the integration of molecular and morphological data in an understanding of sand dollar phylogenyC R MarshallJournal of Molecular Evolution|May 1, 1990
The fossil record and estimating divergence times between lineages: maximum divergence times and the importance of reliable phylogeniesC R MarshallProceedings of the National Academy of Sciences of the United States of America|March 31, 1999
Biological impact on mineral dissolution: application of the lichen model to understanding mineral weathering in the rhizosphereJ F Banfield, W W Barker, S A Welch, et al.Science (New York, N.Y.)|March 10, 2000
An archaeal iron-oxidizing extreme acidophile important in acid mine drainageK J Edwards, P L Bond, T M Gihring, et al.Pageof 4