scholarly article | Q13442814 |
P50 | author | Jillian Banfield | Q6193127 |
Brett J Baker | Q47503543 | ||
P2093 | author name string | Jillian F Banfield | |
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Reclassification of some species of Thiobacillus to the newly designated genera Acidithiobacillus gen. nov., Halothiobacillus gen. nov. and Thermithiobacillus gen. nov. | Q33897615 | ||
Development and application of small-subunit rRNA probes for assessment of selected Thiobacillus species and members of the genus Acidiphilium | Q33987244 | ||
Novel bacterial and archaeal lineages from an in situ growth chamber deployed at a Mid-Atlantic Ridge hydrothermal vent | Q33987584 | ||
Comparison of acid mine drainage microbial communities in physically and geochemically distinct ecosystems. | Q33988109 | ||
Ferric iron reduction by acidophilic heterotrophic bacteria | Q35686318 | ||
Sulfobacillus disulfidooxidans sp. nov., a new acidophilic, disulfide-oxidizing, gram-positive, spore-forming bacterium | Q36826222 | ||
Leaching of pyrite by acidophilic heterotrophic iron-oxidizing bacteria in pure and mixed cultures | Q39480381 | ||
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Anaerobic Growth of Thiobacillus ferrooxidans. | Q39894211 | ||
The acidophilic thiobacilli and other acidophilic bacteria that share their habitat | Q40191351 | ||
MICROORGANISMS IN ACID DRAINAGE FROM A COPPER MINE | Q40255299 | ||
A microbiological survey of Montserrat Island hydrothermal biotopes | Q42046966 | ||
Relative contributions of biological and chemical reactions to the overall rate of pyrite oxidation at temperatures between 30 degrees C and 70 degrees C. | Q43024952 | ||
Microbiology of acidic, geothermal springs of Montserrat: environmental rDNA analysis | Q43028133 | ||
Microbial reduction of Fe(III) in the presence of oxygen under low pH conditions | Q44068030 | ||
Design and Performance of rRNA Targeted Oligonucleotide Probes for in Situ Detection and Phylogenetic Identification of Microorganisms Inhabiting Acid Mine Drainage Environments | Q44971805 | ||
Distribution of thiobacillus ferrooxidans and leptospirillum ferrooxidans: implications for generation of acid mine drainage | Q46650189 | ||
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Acidobacterium capsulatum gen. nov., sp. nov.: An acidophilic chemoorganotrophic bacterium containing menaquinone from acidic mineral environment | Q56341234 | ||
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Metallosphaera sedula gen, and sp. nov. Represents a New Genus of Aerobic, Metal-Mobilizing, Thermoacidophilic Archaebacteria | Q56600975 | ||
Metallosphaera prunae, sp. nov., a Novel Metal-mobilizing, Thermoacidophilic Archaeum, Isolated from a Uranium Mine in Germany | Q56600976 | ||
The effect of Fe-oxidizing bacteria on Fe-silicate mineral dissolution | Q60170859 | ||
Thermoplasma acidophilum and Thermoplasma volcanium sp. nov. from Solfatara Fields | Q60670693 | ||
Isolation and study of two strains of Leptospirillum-like bacteria from a natural mixed population cultured on a cobaltiferous pyrite substrate | Q72141448 | ||
A new look at microbial leaching patterns on sulfide minerals | Q73343676 | ||
Characteristics of attachment and growth of Thiobacillus caldus on sulphide minerals: a chemotactic response to sulphur minerals? | Q73493170 | ||
Phylogenetic Diversity of Archaea and Bacteria in a Deep Subsurface Paleosol | Q74634147 | ||
Acidic mine drainage: the rate-determining step | Q81171006 | ||
P433 | issue | 2 | |
P1104 | number of pages | 14 | |
P304 | page(s) | 139-152 | |
P577 | publication date | 2003-05-01 | |
P1433 | published in | FEMS Microbiology Ecology | Q15766483 |
P1476 | title | Microbial communities in acid mine drainage | |
P478 | volume | 44 |
Q35543544 | 16S rRNA and As-Related Functional Diversity: Contrasting Fingerprints in Arsenic-Rich Sediments from an Acid Mine Drainage |
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Q28709296 | A pyrosequencing-based metagenomic study of methane-producing microbial community in solid-state biogas reactor |
Q64997556 | A seasonal study of a passive abandoned coalmine drainage remediation system reveals three distinct zones of contaminant levels and microbial communities. |
Q37694285 | AMD biofilms: using model communities to study microbial evolution and ecological complexity in nature. |
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Q41684250 | Bacterial, Archaeal, and Eukaryotic Diversity across Distinct Microhabitats in an Acid Mine Drainage |
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Q52692097 | Biofilm Formation by the Acidophile Bacterium Acidithiobacillus thiooxidans Involves c-di-GMP Pathway and Pel exopolysaccharide. |
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Q42580666 | Bioinformatic prediction of gene functions regulated by quorum sensing in the bioleaching bacterium Acidithiobacillus ferrooxidans |
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Q33817328 | Biosignature Preservation and Detection in Mars Analog Environments. |
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Q33343182 | Characterization of Fe(II) oxidizing bacterial activities and communities at two acidic Appalachian coalmine drainage-impacted sites |
Q33329468 | Characterization of a bacterial community in an abandoned semiarid lead-zinc mine tailing site |
Q36804104 | Characterization of cytochrome 579, an unusual cytochrome isolated from an iron-oxidizing microbial community |
Q33819747 | Characterization of the active bacterial community involved in natural attenuation processes in arsenic-rich creek sediments |
Q36045354 | Characterization of the microbial community composition and the distribution of Fe-metabolizing bacteria in a creek contaminated by acid mine drainage |
Q36148371 | Community genomics in microbial ecology and evolution |
Q35963511 | Community of thermoacidophilic and arsenic resistant microorganisms isolated from a deep profile of mine heaps |
Q29547528 | Community structure and metabolism through reconstruction of microbial genomes from the environment |
Q24490933 | Community-wide analysis of microbial genome sequence signatures |
Q41193067 | Comparative Analysis of Microbial Communities in Iron-Dominated Flocculent Mats in Deep-Sea Hydrothermal Environments |
Q33639521 | Comparative Genomics Unravels the Functional Roles of Co-occurring Acidophilic Bacteria in Bioleaching Heaps |
Q35533051 | Comparative metagenomic and metatranscriptomic analyses of microbial communities in acid mine drainage |
Q35228820 | Comparison of environmental and isolate Sulfobacillus genomes reveals diverse carbon, sulfur, nitrogen, and hydrogen metabolisms |
Q34801798 | Comparison of microbial diversity during column bioleaching of chalcopyrite at different temperatures |
Q31118724 | Composition and diversity of microbial communities recovered from surrogate minerals incubated in an acidic uranium-contaminated aquifer |
Q34487681 | Contemporary environmental variation determines microbial diversity patterns in acid mine drainage |
Q33743142 | Correlating microbial diversity patterns with geochemistry in an extreme and heterogeneous environment of mine tailings. |
Q46771747 | Cultivation and quantitative proteomic analyses of acidophilic microbial communities |
Q33338799 | Culturable and molecular phylogenetic diversity of microorganisms in an open-dumped, extremely acidic Pb/Zn mine tailings |
Q93381252 | Cuniculiplasmataceae, their ecogenomic and metabolic patterns, and interactions with 'ARMAN' |
Q50459253 | Cytochrome 572 is a conspicuous membrane protein with iron oxidation activity purified directly from a natural acidophilic microbial community |
Q57086818 | DNA-SIP Reveals the Diversity of Chemolithoautotrophic Bacteria Inhabiting Three Different Soil Types in Typical Karst Rocky Desertification Ecosystems in Southwest China |
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Q33646963 | Depth-dependent geochemical and microbiological gradients in Fe(III) deposits resulting from coal mine-derived acid mine drainage |
Q35933437 | Differences in the Effect of Coal Pile Runoff (Low pH, High Metal Concentrations) Versus Natural Carolina Bay Water (Low pH, Low Metal Concentrations) on Plant Condition and Associated Bacterial Epiphytes of Salvinia minima |
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Q35633212 | Diversity of the Sediment Microbial Community in the Aha Watershed (Southwest China) in Response to Acid Mine Drainage Pollution Gradients |
Q91707704 | Diversity, Ecology, and Prevalence of Antimicrobials in Nature |
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Q89494867 | Effect of Introduction of Exogenous Strain Acidithiobacillus thiooxidans A01 on Structure and Function of Adsorbed and Planktonic Microbial Consortia During Bioleaching of Low-Grade Copper Sulfide |
Q64939856 | Effect of Re-acidification on Buffalo Grass Rhizosphere and Bulk Microbial Communities During Phytostabilization of Metalliferous Mine Tailings. |
Q46454898 | Effect of metal sulfide pulp density on gene expression of electron transporters in Acidithiobacillus sp. FJ2. |
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