Genetics and Genomics of Sulfate Respiration in Desulfovibrio.- Living on Sulfate: Three-Dimensional Structure and Spectroscopy of Adenosine 5´-Phosphosulfate Reductase and Dissimilatory Sulfite Reductase.- Respiratory Membrane Complexes of Desulfovibrio.- Biochemical and Evolutionary Aspects of Eukaryotes That Inhabit Sulfidic Environments.- Evolution and Ecology of Microbes Dissimilating Sulfur Compounds: Insights from Siroheme Sulfite Reductases.- Genomic and Evolutionary Perspectives on Sulfur Metabolism in Green Sulfur Bacteria.- Differential-Expression Proteomics for the Study of Sulfur Metabolism in the Chemolithoautotrophic Acidithiobacillus ferrooxidans.- Sulfur and Light? History and "Thiology" of the Phototrophic Sulfur Bacteria.- Thiosulfate and Sulfur Oxidation in Purple Sulfur Bacteria.- Sulfur Oxidation in Chlorobium tepidum (syn. Chlorobaculum tepidum): Genetic and Proteomic Analyses.- Structural Insights into Component SoxY of the Thiosulfate-Oxidizing Multienzyme System of Chlorobaculum thiosulfatiphilum.- Redox Control of Chemotrophic Sulfur Oxidation of Paracoccus pantotrophus.- Bacterial Sulfite-Oxidizing Enzymes - Enzymes for Chemolithotrophs Only?.- Sulfonates and Organotrophic Sulfite Metabolism.- Oxidation of Sulfur and Inorganic Sulfur Compounds in Acidianus ambivalens.- A Novel Coenzyme F420 Dependent Sulfite Reductase and a Small Sulfite Reductase in Methanogenic Archaea.- Archaeal and Bacterial Sulfur Oxygenase-Reductases: Genetic Diversity and Physiological Function.- Diversity of Halophilic Sulfur-Oxidizing Bacteria in Hypersaline Habitats.- Sulfur Oxidation at Deep-Sea Hydrothermal Vents.- Speciation Analysis of Microbiologically Produced Sulfur by X-ray Absorption Near Edge Structure Spectroscopy.- Controls on Isotope Fractionation During Dissimilatory Sulfate Reduction.- Bioprocess Engineering of Sulfate Reduction for Environmental Technology.- Impact of Nitrate on the Sulfur Cycle in Oil Fields.
Genetics and Genomics of Sulfate Respiration in Desulfovibrio.- Living on Sulfate: Three-Dimensional Structure and Spectroscopy of Adenosine 5´-Phosphosulfate Reductase and Dissimilatory Sulfite Reductase.- Respiratory Membrane Complexes of Desulfovibrio.- Biochemical and Evolutionary Aspects of Eukaryotes That Inhabit Sulfidic Environments.- Evolution and Ecology of Microbes Dissimilating Sulfur Compounds: Insights from Siroheme Sulfite Reductases.- Genomic and Evolutionary Perspectives on Sulfur Metabolism in Green Sulfur Bacteria.- Differential-Expression Proteomics for the Study of Sulfur Metabolism in the Chemolithoautotrophic Acidithiobacillus ferrooxidans.- Sulfur and Light? History and "Thiology" of the Phototrophic Sulfur Bacteria.- Thiosulfate and Sulfur Oxidation in Purple Sulfur Bacteria.- Sulfur Oxidation in Chlorobium tepidum (syn. Chlorobaculum tepidum): Genetic and Proteomic Analyses.- Structural Insights into Component SoxY of the Thiosulfate-Oxidizing Multienzyme System of Chlorobaculum thiosulfatiphilum.- Redox Control of Chemotrophic Sulfur Oxidation of Paracoccus pantotrophus.- Bacterial Sulfite-Oxidizing Enzymes - Enzymes for Chemolithotrophs Only?.- Sulfonates and Organotrophic Sulfite Metabolism.- Oxidation of Sulfur and Inorganic Sulfur Compounds in Acidianus ambivalens.- A Novel Coenzyme F420 Dependent Sulfite Reductase and a Small Sulfite Reductase in Methanogenic Archaea.- Archaeal and Bacterial Sulfur Oxygenase-Reductases: Genetic Diversity and Physiological Function.- Diversity of Halophilic Sulfur-Oxidizing Bacteria in Hypersaline Habitats.- Sulfur Oxidation at Deep-Sea Hydrothermal Vents.- Speciation Analysis of Microbiologically Produced Sulfur by X-ray Absorption Near Edge Structure Spectroscopy.- Controls on Isotope Fractionation During Dissimilatory Sulfate Reduction.- Bioprocess Engineering of Sulfate Reduction for Environmental Technology.- Impact of Nitrate on the Sulfur Cycle in Oil Fields.
Sulfur is a nutrient essential for plant growth. Sulfates are the primary source of sulfur for plants, which they take up from the rhizosphere. Gaseous sulfur dioxide is also absorbed by plants...
Metabolic engineering has been developed over the past 20 years to become an important tool for the rational engineering of industrial microorganisms. This book has a particular interest in the...
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