One of the most exciting developments in the field of electromicrobiology has been the discovery of electrically conductive pili (e-pili) in Geobacter species that transport electrons with a metallic-like mechanism. The e-pili are essential for extracellular electron transport to Fe(III) oxides and longrange electron transport through the conductive biofilms that form on the anodes of microbial fuel cells. The e-pili also facilitate direct interspecies electron transfer between Geobacter and Methanosaeta or Methanosarcina species. Metatranscriptomic studies have demonstrated that Geobacter/Methanosaeta DIET is an important process in anaerobic digesters converting brewery wastes to methane. Increasing e-pili expression through genetic modif...
ABSTRACT The discovery of bacterial conductive structures, termed nanowires, has intrigued scientist...
Electroactive microorganisms possess the unique ability to transfer electrons to or from solid phase...
Conductivity of an individual proteinaceous filaments, called pili or microbial nanowires, produced ...
The electrically conductive pili (e-pili) of Geobacter sulfurreducens serve as a model for a novel s...
ABSTRACT The electrically conductive pili (e-pili) of Geobacter sulfurreducens serve as a model for ...
Geobacter sulfurreducens is a model microbe for elucidating the mechanisms for extracellular electro...
The electrogenic bacterium Geobacter synthesizes conductive extracellular nanowires to facilitate el...
ABSTRACT Geobacter sulfurreducens is a model microbe for elucidating the mechanisms for extracellula...
Microorganisms that can form direct electrical connections with insoluble minerals, electrodes, or o...
Microorganisms that can form direct electrical connections with insoluble minerals, electrodes, or o...
ABSTRACT It has been proposed that Geobacter sulfurreducens requires conductive pili for long-range ...
ABSTRACT It has been proposed that Geobacter sulfurreducens requires conductive pili for long-range ...
Geobacter sulfurreducens developed highly structured, multilayer biofilms on the anode surface of a ...
Electron transfer is central to cellular life, from photosynthesis to respiration. In the case of an...
Geobacter sulfurreducens developed highly structured, multilayer biofilms on the anode surface of a ...
ABSTRACT The discovery of bacterial conductive structures, termed nanowires, has intrigued scientist...
Electroactive microorganisms possess the unique ability to transfer electrons to or from solid phase...
Conductivity of an individual proteinaceous filaments, called pili or microbial nanowires, produced ...
The electrically conductive pili (e-pili) of Geobacter sulfurreducens serve as a model for a novel s...
ABSTRACT The electrically conductive pili (e-pili) of Geobacter sulfurreducens serve as a model for ...
Geobacter sulfurreducens is a model microbe for elucidating the mechanisms for extracellular electro...
The electrogenic bacterium Geobacter synthesizes conductive extracellular nanowires to facilitate el...
ABSTRACT Geobacter sulfurreducens is a model microbe for elucidating the mechanisms for extracellula...
Microorganisms that can form direct electrical connections with insoluble minerals, electrodes, or o...
Microorganisms that can form direct electrical connections with insoluble minerals, electrodes, or o...
ABSTRACT It has been proposed that Geobacter sulfurreducens requires conductive pili for long-range ...
ABSTRACT It has been proposed that Geobacter sulfurreducens requires conductive pili for long-range ...
Geobacter sulfurreducens developed highly structured, multilayer biofilms on the anode surface of a ...
Electron transfer is central to cellular life, from photosynthesis to respiration. In the case of an...
Geobacter sulfurreducens developed highly structured, multilayer biofilms on the anode surface of a ...
ABSTRACT The discovery of bacterial conductive structures, termed nanowires, has intrigued scientist...
Electroactive microorganisms possess the unique ability to transfer electrons to or from solid phase...
Conductivity of an individual proteinaceous filaments, called pili or microbial nanowires, produced ...