Sorption of Fe (Hydr)Oxides to the Surface of Shewanella putrefaciens : Cell-Bound Fine-Grained Minerals Are Not Always Formed De Novo
Open Access
- 1 December 2001
- journal article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 67 (12) , 5544-5550
- https://doi.org/10.1128/aem.67.12.5544-5550.2001
Abstract
Shewanella putrefaciens , a gram-negative, facultative anaerobe, is active in the cycling of iron through its interaction with Fe (hydr)oxides in natural environments. Fine-grained Fe precipitates that are attached to the outer membranes of many gram-negative bacteria have most often been attributed to precipitation and growth of the mineral at the cell surface. Our study of the sorption of nonbiogenic Fe (hydr)oxides revealed, however, that large quantities of nanometer-scale ferrihydrite (hydrous ferric oxide), goethite (α-FeOOH), and hematite (α-Fe 2 O 3 ) adhered to the cell surface. Attempts to separate suspensions of cells and minerals with an 80% glycerin cushion proved that the sorbed minerals were tightly attached to the bacteria. The interaction between minerals and cells resulted in the formation of mineral-cell aggregates, which increased biomass density and provided better sedimentation of mineral Fe compared to suspensions of minerals alone. Transmission electron microscopy observations of cells prepared by whole-mount, conventional embedding, and freeze-substitution methods confirmed the close association between cells and minerals and suggested that in some instances, the mineral crystals had even penetrated the outer membrane and peptidoglycan layers. Given the abundance of these mineral types in natural environments, the data suggest that not all naturally occurring cell surface-associated minerals are necessarily formed de novo on the cell wall.Keywords
This publication has 68 references indexed in Scilit:
- Attachment of apseudomonassp. to Fe(III)‐(hydr)oxide surfacesGeomicrobiology Journal, 1998
- Microbial sulfate reduction within sulfidic mine tailings: Formation of diagenetic Fe sulfidesGeomicrobiology Journal, 1997
- IRON AND MANGANESE IN ANAEROBIC RESPIRATION: Environmental Significance, Physiology, and RegulationAnnual Review of Microbiology, 1994
- Hydrophobic and electrostatic parameters in bacterial adhesionAquatic Sciences, 1990
- Metal uptake and Fe-, Ti-oxide biomineralization by acidophilic microorganisms in mine-waste environments, Elliot Lake, CanadaCanadian Journal of Earth Sciences, 1989
- ROLE OF CELLULAR DESIGN IN BACTERIAL METAL ACCUMULATION AND MINERALIZATIONAnnual Review of Microbiology, 1989
- The bacterial surface: general considerations towards design and functionCanadian Journal of Microbiology, 1988
- Iron-silica crystallite nucleation by bacteria in a geothermal sedimentNature, 1986
- Site specificity of metallic ion binding in Escherichia coli K-12 lipopolysaccharideCanadian Journal of Microbiology, 1986
- Kinetics of isotopic exchange of phosphate at the α-FeOOH-aqueous solution interfaceJournal of Inorganic and Nuclear Chemistry, 1972