Search Results - "Rosenzweig, R. F"
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Desulfosporosinus lacus sp. nov., a sulfate-reducing bacterium isolated from pristine freshwater lake sediments
Published in International journal of systematic and evolutionary microbiology (01-12-2006)“…1 Division of Biological Sciences, Program in Microbial Ecology, University of Montana, Missoula, MT 59812-4824, USA 2 Institut für Chemie und Biologie des…”
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Diversity of geobacteraceae species inhabiting metal-polluted freshwater lake sediments ascertained by 16S rDNA analyses
Published in Microbial ecology (01-08-2003)“…The abundance, distribution, and phylogenetic diversity of members of the Fe(III)-reducing family Geobacteraceae were studied along a gradient of metal…”
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3
Microbial Evolution in a Simple Unstructured Environment: Genetic Differentiation in Escherichia coli
Published in Genetics (Austin) (01-08-1994)“…Populations of Escherichia coli initiated with a single clone and maintained for long periods in glucose-limited continuous culture, become polymorphic. In one…”
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4
Arsenic Mobilization by the Dissimilatory Fe(III)-Reducing Bacterium Shewanella alga BrY
Published in Environmental science & technology (01-03-1999)“…The mobility of arsenic commonly increases as reducing conditions are established within sediments or flooded soils. Although the reduction of arsenic…”
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5
Multiple duplications of yeast hexose transport genes in response to selection in a glucose-limited environment
Published in Molecular biology and evolution (01-08-1998)“…When microbes evolve in a continuous, nutrient-limited environment, natural selection can be predicted to favor genetic changes that give cells greater access…”
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6
Phase Associations and Mobilization of Iron and Trace Elements in Coeur d'Alene Lake, Idaho
Published in Environmental science & technology (01-03-1998)“…Sediments of Coeur d'Alene Lake, ID, are heavily contaminated with mine tailings that contain high levels of iron, lead, zinc, arsenic, and other trace…”
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Evidence for Microbial Fe(III) Reduction in Anoxic, Mining-Impacted Lake Sediments (Lake Coeur d'Alene, Idaho)
Published in Applied and Environmental Microbiology (01-01-2000)“…Classifications Services AEM Citing Articles Google Scholar PubMed Related Content Social Bookmarking CiteULike Delicious Digg Facebook Google+ Mendeley Reddit…”
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Desulfovibrio idahonensis sp. nov., sulfate-reducing bacteria isolated from a metal(loid)-contaminated freshwater sediment
Published in International journal of systematic and evolutionary microbiology (01-09-2009)“…1 School of Earth, Ocean and Planetary Sciences, Cardiff University, Main Building, Park Place, Cardiff CF10 3YE, UK 2 Division of Biological Sciences,…”
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Biotic Generation of Arsenic(III) in Metal(loid)-Contaminated Freshwater Lake Sediments
Published in Environmental science & technology (15-08-1998)“…Sediments of Coeur d'Alene Lake, ID, are heavily contaminated with mine tailings that contain high levels of arsenic, iron, lead, and other trace elements…”
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Ferribacterium limneticum, gen. nov., sp. nov., an Fe(III)-reducing microorganism isolated from mining-impacted freshwater lake sediments
Published in Archives of microbiology (22-02-1999)Get full text
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Isolation and Characterization of a Novel As(V)-Reducing Bacterium: Implications for Arsenic Mobilization and the Genus Desulfitobacterium
Published in Applied and Environmental Microbiology (01-12-2001)“…Classifications Services AEM Citing Articles Google Scholar PubMed Related Content Social Bookmarking CiteULike Delicious Digg Facebook Google+ Mendeley Reddit…”
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12
Systematic changes in gene expression patterns following adaptive evolution in yeast
Published in Proceedings of the National Academy of Sciences - PNAS (17-08-1999)“…Culturing a population of Saccharomyces cerevisiae for many generations under conditions to which it is not optimally adapted selects for fitter genetic…”
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A Laboratory Evaluation of Trace Element Mobility from Flooding and Nutrient Loading of Coeur d'Alene River Sediments
Published in Journal of environmental quality (01-03-1998)“…The main stem (MSCDR) and south fork (SFCDR) of the Coeur d'Alene River, Idaho, are contaminated with heavy metals from many years of mining. To assess the…”
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Identification of adaptive changes in an evolving population of Escherichia coli : the role of changes with regulatory and highly pleiotropic effects
Published in Molecular biology and evolution (01-05-1991)“…A population of Escherichia coli initiated with a single clone developed extensive morphological and physiological polymorphism after being maintained for 773…”
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15
Diversity of Geobacteraceae Species Inhabiting Metal-Polluted Freshwater Lake Sediments Ascertained by 16S rDNA Analyses
Published in Microbial ecology (01-09-2003)“…The abundance, distribution, and phylogenetic diversity of members of the Fe(III)-reducing family Geobacteraceae were studied along a gradient of metal…”
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16
Plasmid macro-evolution : selection of deletions during adaptation in a nutrient-limited environment
Published in Genetica (1991)“…Under conditions where plasmid-carriage is deleterious to the cell, evolutionary changes may be expected which result in an attenuation of the deleterious…”
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Ferribacterium limneticum, gen. nov., sp. nov., an Fe(III)-reducing microorganism isolated from mining-impacted freshwater lake sediments
Published in Archives of microbiology (01-01-1999)“…A dissimilatory Fe(III)-reducing bacterium was isolated from mining-impacted lake sediments and designated strain CdA-1. The strain was isolated from a 4-month…”
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Inhibition of Bacterially Promoted Uranium Reduction: Ferric (Hydr)oxides as Competitive Electron Acceptors
Published in Environmental science & technology (01-06-2000)“…The reduction of uranyl (U(VI)) to the relatively insoluble tetravalent form (U(IV)) by Shewanella alga (BrY), a dissimilatory metal-reducing bacteria, was…”
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Biogeochemical transformations of arsenic in circumneutral freshwater sediments
Published in Biodegradation (Dordrecht) (01-04-2003)“…Arsenic is a wide-spread contaminant of soils and sediments, and many watersheds worldwide regularly experience severe arsenic loading. While the toxicity of…”
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Regulation of fitness in yeast overexpressing glycolytic enzymes: parameters of growth and viability
Published in Genetical research (01-02-1992)“…Current models predict that large increases over wild-type in the activity of one enzyme will not alter an organism's fitness. This prediction is tested in…”
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