Bacterial nanowires have garnered recent interest as a proposed extracellular electron transfer (EET) pathway that links the bacterial electron transport chain to solid-phase electron acceptors away from the cell. Recent studies showed that Shewanella oneidensis MR-1 produces outer membrane (OM) and periplasmic extensions that contain EET components and hinted at their possible role as bacterial nanowires. However, their fine structure and distribution of cytochrome electron carriers under native conditions remained unclear, making it difficult to evaluate the potential electron transport (ET) mechanism along OM extensions. Here, we report high-resolution images of S. oneidensis OM extensions, using electron cryotomography (ECT). We develop...
ABSTRACT The discovery of bacterial conductive structures, termed nanowires, has intrigued scientist...
Long-range (>10 μm) transport of electrons along networks of Geobacter sulfurreducens protei...
Many species of bacteria can couple anaerobic growth to the respiratory reduction of insoluble miner...
Bacterial nanowires have garnered recent interest as a proposed extracellular electron transfer (EET...
Dissimilatory metal-reducing bacteria can extract free energy from their environment by performing e...
The dissimilatory metal-reducing bacterium Shewanella oneidensis MR-1 is known to make ‘nanowires,’ ...
In this thesis, we discuss three topics concerning extracellular electron transfer in the Dissimilat...
Extracellular electron transfer (EET) from microorganisms to inorganic electrodes is a unique abilit...
AbstractThe recent discovery of electrically conductive bacterial appendages has significant physiol...
Bacterial nanowires are extracellular appendages that have been suggested as pathways for electron t...
The electrogenic bacterium Geobacter synthesizes conductive extracellular nanowires to facilitate el...
A growing number of bacteria are recognized to conduct electrons across their cell envelope, and yet...
Microbial fuel cells (MFCs) represent a promising approach for sustainable energy production as they...
Microbial fuel cells (MFCs) represent a promising approach for sustainable energy production as they...
Some bacterial species are able to utilize extracellular mineral forms of iron and manganese as resp...
ABSTRACT The discovery of bacterial conductive structures, termed nanowires, has intrigued scientist...
Long-range (>10 μm) transport of electrons along networks of Geobacter sulfurreducens protei...
Many species of bacteria can couple anaerobic growth to the respiratory reduction of insoluble miner...
Bacterial nanowires have garnered recent interest as a proposed extracellular electron transfer (EET...
Dissimilatory metal-reducing bacteria can extract free energy from their environment by performing e...
The dissimilatory metal-reducing bacterium Shewanella oneidensis MR-1 is known to make ‘nanowires,’ ...
In this thesis, we discuss three topics concerning extracellular electron transfer in the Dissimilat...
Extracellular electron transfer (EET) from microorganisms to inorganic electrodes is a unique abilit...
AbstractThe recent discovery of electrically conductive bacterial appendages has significant physiol...
Bacterial nanowires are extracellular appendages that have been suggested as pathways for electron t...
The electrogenic bacterium Geobacter synthesizes conductive extracellular nanowires to facilitate el...
A growing number of bacteria are recognized to conduct electrons across their cell envelope, and yet...
Microbial fuel cells (MFCs) represent a promising approach for sustainable energy production as they...
Microbial fuel cells (MFCs) represent a promising approach for sustainable energy production as they...
Some bacterial species are able to utilize extracellular mineral forms of iron and manganese as resp...
ABSTRACT The discovery of bacterial conductive structures, termed nanowires, has intrigued scientist...
Long-range (>10 μm) transport of electrons along networks of Geobacter sulfurreducens protei...
Many species of bacteria can couple anaerobic growth to the respiratory reduction of insoluble miner...