A new species of Archaea grows at pH similar to 0.5 and similar to 40 degrees C in slime streamers and attached to pyrite surfaces at a sulfide ore body, Iron Mountain, California. This iron-oxidizing Archaeon is capable of growth at pH 0. This species represents a dominant prokaryote in the environment studied (slimes and sediments) and constituted up to 85% of the microbial community when solution concentrations were high (conductivity of 100 to 160 millisiemens per centimeter). The presence of this and other closely related Thermoplasmales suggests that these acidophiles are important contributors to acid mine drainage and may substantially impact iron and sulfur cycles
The microbial community of acid mine drainage (AMD) fascinates researchers by their adaption and rol...
Abstract Background The current view suggests that in low-temperature acidic environments, archaea a...
This study presents population analyses of microbial communities inhabiting a site of extreme acid m...
The Richmond Mine at Iron Mountain, Shasta County, California, USA provides an excellent opportunit...
The geochemical dynamics and composition of microbial communities within a low-temperature (�8.5°...
Parys Mountain or Mynydd Parys (Isle of Anglesey, United Kingdom) is a mine-impacted environment, wh...
Microbial life in extremely low pH (6 3) natural and man-made environments may be considerably diver...
An unusually thick (similar to 1 cm) slime developed on a slump of finely disseminated pyrite ore wi...
A legacy of coal mining in the Appalachians has provided a unique opportunity to study the ecologica...
Acid mine drainages (AMDs) arise at the weathering of sulphidic minerals. The occurrence of acidic s...
Pyrite oxidation in the underground mining environment of Iron Mountain, California, has created the...
Acidophiles are organisms that have evolved to grow optimally at high concentrations of protons. Mem...
cited By 22International audienceThe acid waters (pH=2.73-3.4) that originate from the Carnoulès min...
A novel thermoacidophilic iron and sulfur-oxidizing archaeon, strain YN25, was isolated from an in s...
The indigenous microbial communities of two extremely acidic, metal-rich stratified pit lakes, locat...
The microbial community of acid mine drainage (AMD) fascinates researchers by their adaption and rol...
Abstract Background The current view suggests that in low-temperature acidic environments, archaea a...
This study presents population analyses of microbial communities inhabiting a site of extreme acid m...
The Richmond Mine at Iron Mountain, Shasta County, California, USA provides an excellent opportunit...
The geochemical dynamics and composition of microbial communities within a low-temperature (�8.5°...
Parys Mountain or Mynydd Parys (Isle of Anglesey, United Kingdom) is a mine-impacted environment, wh...
Microbial life in extremely low pH (6 3) natural and man-made environments may be considerably diver...
An unusually thick (similar to 1 cm) slime developed on a slump of finely disseminated pyrite ore wi...
A legacy of coal mining in the Appalachians has provided a unique opportunity to study the ecologica...
Acid mine drainages (AMDs) arise at the weathering of sulphidic minerals. The occurrence of acidic s...
Pyrite oxidation in the underground mining environment of Iron Mountain, California, has created the...
Acidophiles are organisms that have evolved to grow optimally at high concentrations of protons. Mem...
cited By 22International audienceThe acid waters (pH=2.73-3.4) that originate from the Carnoulès min...
A novel thermoacidophilic iron and sulfur-oxidizing archaeon, strain YN25, was isolated from an in s...
The indigenous microbial communities of two extremely acidic, metal-rich stratified pit lakes, locat...
The microbial community of acid mine drainage (AMD) fascinates researchers by their adaption and rol...
Abstract Background The current view suggests that in low-temperature acidic environments, archaea a...
This study presents population analyses of microbial communities inhabiting a site of extreme acid m...