Acid mine drainage (AMD) microbial communities contain microbial eukaryotes (both fungi and protists) that confer a biofilm structure and impact the abundance of bacteria and archaea and the community composition via grazing and other mechanisms. Since prokaryotes impact iron oxidation rates and thus regulate AMD generation rates, it is important to analyze the fungal and protistan populations. We utilized 18S rRNA and beta-tubulin gene phylogenies and fluorescent rRNA-specific probes to characterize the eukaryotic diversity and distribution in extremely acidic (pHs 0.8 to 1.38), warm (30 to 50degreesC), metal-rich (up to 269 mM Fe2+, 16.8 mM Zn, 8.5 mM As, and 4.1 mM Cu) AMD solutions from the Richmond Mine at Iron Mountain, Calif. A Rhodo...
Microorganisms play an important role in weathering sulfide minerals worldwide and thrive in metal-r...
Microbial communities of iron-rich water in the Pyhäsalmi mine, Finland, were investigated with high...
Many studies have illustrated the potential role of eukaryotes in bioremediation of Acidic Mine Drai...
Acid mine drainage (AMD) microbial communities contain microbial eukaryotes (both fungi and protists...
Microscopic eukaryotes are known to have important ecosystem functions, but their diversity in most ...
During a molecular phylogenetic survey of extremely acidic (pH < 1), metal-rich acid mine drainage h...
An unusually thick (similar to 1 cm) slime developed on a slump of finely disseminated pyrite ore wi...
This study presents population analyses of microbial communities inhabiting a site of extreme acid m...
The Parys Mountain copper mine (Wales, UK) contains a wide range of discrete environmental micronich...
Culturing isolated microorganisms can be challenging, not only because usually the detailed environm...
The microbial community of acid mine drainage (AMD) fascinates researchers by their adaption and rol...
The Richmond Mine at Iron Mountain, Shasta County, California, USA provides an excellent opportunit...
Acid mine drainage (AMD) emplacements are low-complexity natural systems. Low-pH conditions appear t...
Macroscopic growths at geographically separated acid mine drainages (AMDs) exhibit distinct populati...
Acid Mine Drainage (AMD) results from sulfide oxidation, which incorporates hydrogen ions, sulfate,...
Microorganisms play an important role in weathering sulfide minerals worldwide and thrive in metal-r...
Microbial communities of iron-rich water in the Pyhäsalmi mine, Finland, were investigated with high...
Many studies have illustrated the potential role of eukaryotes in bioremediation of Acidic Mine Drai...
Acid mine drainage (AMD) microbial communities contain microbial eukaryotes (both fungi and protists...
Microscopic eukaryotes are known to have important ecosystem functions, but their diversity in most ...
During a molecular phylogenetic survey of extremely acidic (pH < 1), metal-rich acid mine drainage h...
An unusually thick (similar to 1 cm) slime developed on a slump of finely disseminated pyrite ore wi...
This study presents population analyses of microbial communities inhabiting a site of extreme acid m...
The Parys Mountain copper mine (Wales, UK) contains a wide range of discrete environmental micronich...
Culturing isolated microorganisms can be challenging, not only because usually the detailed environm...
The microbial community of acid mine drainage (AMD) fascinates researchers by their adaption and rol...
The Richmond Mine at Iron Mountain, Shasta County, California, USA provides an excellent opportunit...
Acid mine drainage (AMD) emplacements are low-complexity natural systems. Low-pH conditions appear t...
Macroscopic growths at geographically separated acid mine drainages (AMDs) exhibit distinct populati...
Acid Mine Drainage (AMD) results from sulfide oxidation, which incorporates hydrogen ions, sulfate,...
Microorganisms play an important role in weathering sulfide minerals worldwide and thrive in metal-r...
Microbial communities of iron-rich water in the Pyhäsalmi mine, Finland, were investigated with high...
Many studies have illustrated the potential role of eukaryotes in bioremediation of Acidic Mine Drai...