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  1. Complex Iron Uptake by the Putrebactin-Mediated and Feo Systems in Shewanella oneidensis
  2. Distinct Nitrite and Nitric Oxide Physiologies inEscherichia coliandShewanella oneidensis
  3. Dissociation between Iron and Heme Biosyntheses Is Largely Accountable for Respiration Defects of Shewanella oneidensis fur Mutants
  4. Partially Reciprocal Replacement of FlrA and FlrC in Regulation of Shewanella oneidensis Flagellar Biosynthesis
  5. Investigation of a spontaneous mutant reveals novel features of iron uptake in Shewanella oneidensis
  6. Thioesterase YbgC affects motility by modulating c-di-GMP levels in Shewanella oneidensis
  7. Loss of OxyR reduces efficacy of oxygen respiration in Shewanella oneidensis
  8. NapB in excess inhibits growth of Shewanella oneidensis by dissipating electrons of the quinol pool
  9. Suppression offabBMutation byfabF1Is Mediated by Transcription Read-through in Shewanella oneidensis
  10. Investigation Into Oxidative Stress Response ofShewanella OneidensisReveals a Distinct Mechanism
  11. Molecular Underpinnings of Nitrite Effect on CymA-Dependent Respiration in Shewanella oneidensis
  12. Shewanella oneidensis FabB: A β-ketoacyl-ACP Synthase That Works with C16:1-ACP
  13. Positive regulation of the Shewanella oneidensis OmpS38, a major porin facilitating anaerobic respiration, by Crp and Fur
  14. A Matter of Timing: Contrasting Effects of Hydrogen Sulfide on Oxidative Stress Response in Shewanella oneidensis
  15. Investigation into FlhFG reveals distinct features of FlhF in regulating flagellum polarity inShewanella oneidensis
  16. Regulation of biofilm formation by BpfA, BpfD, and BpfG in Shewanella oneidensis
  17. Unraveling the Mechanism for the Viability Deficiency of Shewanella oneidensis oxyR Null Mutant
  18. PBP1a/LpoA but Not PBP1b/LpoB Are Involved in Regulation of the Major β-Lactamase GeneblaAin Shewanella oneidensis
  19. A new regulatory mechanism for bacterial lipoic acid synthesis
  20. Transcription factors FabR and FadR regulate both aerobic and anaerobic pathways for unsaturated fatty acid biosynthesis in Shewanella oneidensis
  21. Shewanella oneidensiscytochromecmaturation component CcmI is essential for heme attachment at the non-canonical motif of nitrite reductase NrfA
  22. Regulation of nitrite resistance of the cytochrome cbb 3 oxidase by cytochrome c ScyA in Shewanella oneidensis
  23. Distinct Roles of Major Peptidoglycan Recycling Enzymes in β-Lactamase Production in Shewanella oneidensis
  24. Effects of FlrBC on flagellar biosynthesis ofShewanella oneidensis
  25. Evidence for function overlapping of CymA and the cytochromebc1complex in theShewanella oneidensisnitrate and nitrite respiration
  26. Managing oxidative stresses inShewanella oneidensis: intertwined roles of the OxyR and OhrR regulons
  27. Protection from Oxidative Stress Relies Mainly on Derepression of OxyR-Dependent KatB and Dps in Shewanella oneidensis
  28. Impacts of Nitrate and Nitrite on Physiology of Shewanella oneidensis
  29. Posttranslational Modification of Flagellin FlaB in Shewanella oneidensis
  30. Expression of blaA Underlies Unexpected Ampicillin-Induced Cell Lysis of Shewanella oneidensis
  31. Exoprotein Production Correlates with Morphotype Changes of Nonmotile Shewanella oneidensis Mutants
  32. A Crp-Dependent Two-Component System Regulates Nitrate and Nitrite Respiration in Shewanella oneidensis
  33. Impact of ArcA loss in Shewanella oneidensis revealed by comparative proteomics under aerobic and anaerobic conditions
  34. Cloning and Characterization of Genes Involved in Nostoxanthin Biosynthesis of Sphingomonas elodea ATCC 31461
  35. Transcriptome analysis of pellicle formation of Shewanella oneidensis
  36. Functional Assessment of EnvZ/OmpR Two-Component System in Shewanella oneidensis
  37. Genetic and Molecular Characterization of Flagellar Assembly in Shewanella oneidensis
  38. Stress Responses ofShewanella
  39. Coping with the Environment: How Microbes Survive Environmental Challenges
  40. Pellicle formation in Shewanella oneidensis
  41. Co-metabolic degradation of dimethoate by Raoultella sp. X1
  42. The Delta Subunit of RNA Polymerase Functions in Sporulation