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An in vivo analysis of the energetics of aldose oxidation by Acinetobacter calcoaceticus
An in vivo analysis of the energetics of aldose oxidation by Acinetobacter calcoaceticus
Floating Filters, a Novel Technique for Isolation and Enumeration of Fastidious, Acidophilic, Iron-Oxidizing, Autotrophic Bacteria
Floating Filters, a Novel Technique for Isolation and Enumeration of Fastidious, Acidophilic, Iron-Oxidizing, Autotrophic Bacteria
Bacterial diversity and activity along a salinity gradient in soda lakes of the Kulunda Steppe (Altai, Russia)
Bacterial diversity and activity along a salinity gradient in soda lakes of the Kulunda Steppe (Altai, Russia)
Energy Transduction by Anaerobic Ferric Iron Respiration in Thiobacillus-Ferrooxidans
Energy Transduction by Anaerobic Ferric Iron Respiration in Thiobacillus-Ferrooxidans
Microbial Selection in Continuous Culture
Microbial Selection in Continuous Culture
Thioalkalimicrobium aerophilum gen. nov., sp. nov. and Thioalkalimicrobium sibericum sp. nov., and Thioalkalivibrio versutus gen. nov., sp. nov., Thioalkalivibrio nitratis sp. nov. and Thioalkalivibrio denitrificans sp. nov., novel obligately alkaliphilic
Thioalkalimicrobium aerophilum gen. nov., sp. nov. and Thioalkalimicrobium sibericum sp. nov., and Thioalkalivibrio versutus gen. nov., sp. nov., Thioalkalivibrio nitratis sp. nov. and Thioalkalivibrio denitrificans sp. nov., novel obligately alkaliphilic and obligately chemolithoautotrophic sulfur-oxidizing bacteria from soda lakes
Metabolic flexibility of Thiobacillus A 2 during substrate transitions in the chemostat
Metabolic flexibility of Thiobacillus A 2 during substrate transitions in the chemostat
Heterotrophic Growth of Thiobacillus-Acidophilus in Batch and Chemostat Cultures
Heterotrophic Growth of Thiobacillus-Acidophilus in Batch and Chemostat Cultures
Low cost multichannel scanning pH-stat
Low cost multichannel scanning pH-stat
Key Physiology of Anaerobic Ammonium Oxidation
Key Physiology of Anaerobic Ammonium Oxidation
Mixotrophic Growth of Thiobacillus-A2 on Acetate and Thiosulfate as Growth Limiting Substrates in the Chemostat
Mixotrophic Growth of Thiobacillus-A2 on Acetate and Thiosulfate as Growth Limiting Substrates in the Chemostat
Use of a metabolically structured model in the study of growth, nitrification and denitrification by Thiosphaera pantotropha
Use of a metabolically structured model in the study of growth, nitrification and denitrification by Thiosphaera pantotropha
Effects of growth conditions on mitochondrial morphology in Saccharomyces cerevisiae
Effects of growth conditions on mitochondrial morphology in Saccharomyces cerevisiae
Microbial Transformations of Sulfur-Compounds in a Stratified Lake (Solar Lake, Sinai)
Microbial Transformations of Sulfur-Compounds in a Stratified Lake (Solar Lake, Sinai)
Aerobic Denitrification and Heterotrophic Nitrification by Thiosphaera-Pantotropha
Aerobic Denitrification and Heterotrophic Nitrification by Thiosphaera-Pantotropha
Thiobacillus sp. W5, the dominant autotroph oxidizing sulfide to sulfur in a reactor for aerobic treatment of sulfidic wastes
Thiobacillus sp. W5, the dominant autotroph oxidizing sulfide to sulfur in a reactor for aerobic treatment of sulfidic wastes
Purification and Partial Characterization of Thiosulfate Dehydrogenase from Thiobacillus-Acidophilus
Purification and Partial Characterization of Thiosulfate Dehydrogenase from Thiobacillus-Acidophilus
Incorporation of Long-Chain Fatty-Acids of Substrate Organism by Bdellovibrio-Bacteriovorus During Intraperiplasmic Growth
Incorporation of Long-Chain Fatty-Acids of Substrate Organism by Bdellovibrio-Bacteriovorus During Intraperiplasmic Growth
Quantitative measurement of sulphur formation by steady-state and transient-state continuous cultures of autotrophic Thiobacillus species
Quantitative measurement of sulphur formation by steady-state and transient-state continuous cultures of autotrophic Thiobacillus species
Growth of Thiobacillus-A2 under Alternating Growth-Conditions in the Chemostat
Growth of Thiobacillus-A2 under Alternating Growth-Conditions in the Chemostat
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