Cable bacteria are long, multicellular micro-organisms that are capable of transporting electrons from cell to cell along the longitudinal axis of their centimeter-long filaments. The conductive structures that mediate this long-distance electron transport are thought to be located in the cell envelope. Therefore, this study examines in detail the architecture of the cell envelope of cable bacterium filaments by combining different sample preparation methods (chemical fixation, resin-embedding, and cryo-fixation) with a portfolio of imaging techniques (scanning electron microscopy, transmission electron microscopy and tomography, focused ion beam scanning electron microscopy, and atomic force microscopy). We systematically imaged intact fil...
Filamentous cable bacteria exhibit long-range electron transport over centimetre-scale distances, wh...
Cable bacteria are multicellular, filamentous microorganisms that are capable of transporting electr...
Millimeter-length cables of bacteria were discovered growing along a graphite-rod electrode serving ...
Cable bacteria are long, multicellular micro-organisms that are capable of transporting electrons fr...
Cable bacteria are long, multicellular micro-organisms that are capable of transporting electrons fr...
Cable bacteria are an emerging class of electroactive organisms that sustain unprecedented long-rang...
Cable bacteria are electroactive bacteria that form a long, linear chain of ridged cylindrical cells...
Cable bacteria form centimeter-long, multicellular filaments than can consist of ten thousands of ce...
Filamentous cable bacteria display long-range electron transport, generating electrical currents ove...
Multicellular, filamentous, sulfur-oxidizing bacteria, known as cable bacteria, were discovered atta...
Biological electron transport is classically thought to occur over nanometre distances, yet recent s...
Cable bacteria are multicellular, Gram-negative filamentous bacteria that display a unique division ...
Electron transport within living cells is essential for energy conservation in all respiring and pho...
Filamentous cable bacteria exhibit long-range electron transport over centimetre-scale distances, wh...
Cable bacteria are multicellular, filamentous microorganisms that are capable of transporting electr...
Millimeter-length cables of bacteria were discovered growing along a graphite-rod electrode serving ...
Cable bacteria are long, multicellular micro-organisms that are capable of transporting electrons fr...
Cable bacteria are long, multicellular micro-organisms that are capable of transporting electrons fr...
Cable bacteria are an emerging class of electroactive organisms that sustain unprecedented long-rang...
Cable bacteria are electroactive bacteria that form a long, linear chain of ridged cylindrical cells...
Cable bacteria form centimeter-long, multicellular filaments than can consist of ten thousands of ce...
Filamentous cable bacteria display long-range electron transport, generating electrical currents ove...
Multicellular, filamentous, sulfur-oxidizing bacteria, known as cable bacteria, were discovered atta...
Biological electron transport is classically thought to occur over nanometre distances, yet recent s...
Cable bacteria are multicellular, Gram-negative filamentous bacteria that display a unique division ...
Electron transport within living cells is essential for energy conservation in all respiring and pho...
Filamentous cable bacteria exhibit long-range electron transport over centimetre-scale distances, wh...
Cable bacteria are multicellular, filamentous microorganisms that are capable of transporting electr...
Millimeter-length cables of bacteria were discovered growing along a graphite-rod electrode serving ...