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This concise, yet comprehensive textbook surveys the domain of Bacterial Metabolism: Biology, Microbiology and describes the various facets of this subject in terms useful to students and research workers. Emphasis is on those metabolic reactions which occur only in bacteria or those of particular importance for bacteria. Thus, the book describes in detail the energy metabolism of various groups of bacteria including aerobic and anaerobic heterotrophs, as well as chemolithotrophs, and phototrophs. In addition, the book examines various pathways used by bacteria for the degradation of certain…mehr

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This concise, yet comprehensive textbook surveys the domain of Bacterial Metabolism: Biology, Microbiology and describes the various facets of this subject in terms useful to students and research workers. Emphasis is on those metabolic reactions which occur only in bacteria or those of particular importance for bacteria. Thus, the book describes in detail the energy metabolism of various groups of bacteria including aerobic and anaerobic heterotrophs, as well as chemolithotrophs, and phototrophs. In addition, the book examines various pathways used by bacteria for the degradation of certain organic compounds, the fixation of molecular nitrogen, the biosynthesis of cellular constituents, and the regulation of Bacterial Metabolism: Biology, Microbiology. This book describes microbial systematics and microbial chemistry and focuses on catabolic events. It deals with the progress made in Bacterial Metabolism: Biology, Microbiology that includes data on regulatory mechanisms; comparison of bacterial growth kinetics with enzyme kinetics; aerobic amino acid catabolism; and the glucose transport mechanism. This text also emphasizes the development of photosynthetic phosphorylation in the different bacterial families. This book explains anaerobic respiration and carbohydrate metabolism- glucose, fructose, lactose, mannose, allose, and sorbitol. This text then describes aerobic respiration including the "e;Nitroso"e; and "e;Nitro"e; groups of genera, and the Knallgas bacteria, which use the reaction between molecular hydrogen and molecular oxygen as their source of energy. This book also explains the microbial transformation of iron as caused by either specific organisms (e.g. Ferrobacillusferrooxidans) or nonspecific organisms. This selection also explains the process of fermentation by Enterobacteriaceae, lactic acid bacteria, and proteolytic clostridia. This text can be valuable for microchemists, microbiologists, students, and academicians whose disciplines are in biological chemistry and cellular biology.

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