Advances in Microbial PhysiologyAcademic Press, 06 հոկ, 1998 թ. - 473 էջ Advances in Microbial Physiology |
Բովանդակություն
81 | |
Chapter 3 The Physiology and Metabolism of the Human Gastric Pathogen Helicobacter pylori | 137 |
Chapter 4 Genes Involved in the Formation and Assembly of Rhizobial Cytochromes and their Role in Symbiotic Nitrogen Fixation | 191 |
Chapter 5 The StarvationStress Response SSR of Salmonella | 233 |
Chapter 6 Iron Storage in Bacteria | 281 |
Chapter 7 How Did Bacteria Come to Be? | 353 |
401 | |
439 | |
465 | |
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Common terms and phrases
acetic activity aerobic aeruginosa alcohol dehydrogenase alkaliphile amino acid anaerobic Anthony antiporter bacteria Bacteriol bacterium bacteroids Biochem Biol Bradyrhizobium japonicum C-starvation C-starvation-inducible c-type cytochromes calcoaceticus catalyze cells cellular Cloning complex cytochrome bc1 complex cytochrome c oxidase cytoplasmic domain Duine electron transport energy enzyme Escherichia coli eukaryotic extorquens ferritin ferroxidase ferroxidase centre function gastric gene encoding genetic genome glucose glucose dehydrogenase Gram-negative growth haem Helicobacter pylori indicated induced involved iron core Krulwich leguminosarum ligands Matsushita mechanism membrane Mendz metabolism methanol methanol dehydrogenase Methylobacterium Microbiol molecular mutants nitrogen fixation operon organisms oxidation oxygen pathway peptide periplasmic permease phosphate protein proton Pseudomonas pyruvate quinohaemoprotein quinone quinoprotein regulation residues respiration respiratory chain Rhizobium role rpoS rubrerythrin Saier Salmonella shown similar soluble specific Spector SSR loci starvation strain stress structure substrate subtilis subunit suggested superfamily symporter synthesis terminal oxidase uptake urease vinelandii virulence