In nature, bacterial collectives typically consist of multiple species, which are interacting both biochemically and physically. Nonetheless, past studies on the physical properties of swarming bacteria were focused on axenic (single species) populations. In bacterial swarming, intricate interactions between the individuals lead to clusters, rapid jets and vortices that depend on cell characteristics such as speed and length. In this work, we show the first results of rapidly swarming mixed-species populations of {\sl Bacillus subtilis} and {\sl Serratia marcescens}, two model swarm species that are known to swarm well in axenic situations. In mixed liquid cultures, both species have higher reproduction rates. We show that the mixed populat...
A large variety of motile bacterial species exhibit collective motions while inhabiting liquids or c...
International audienceBacteria adopt social behavior to expand into new territory, led by specialize...
Background: Swarming motility allows microorganisms to move rapidly over surfaces. The Grampositive ...
Abstract Bacterial swarming is a collective mode of motion in which cells migrate rapidly over surfa...
Heterogeneous systems of active matter exhibit a range of complex emergent dynamical patterns. In pa...
AbstractWhen vegetative bacteria that can swim are grown in a rich medium on an agar surface, they b...
We determine and relate the characteristic velocity, length, and time scales for bacterial motion in...
A major challenge in microbial evolutionary ecology is to understand how fitness-related traits vary...
When vegetative bacteria that can swim are grown in a rich medium on an agar surface, they become mu...
Many bacteria simultaneously grow and spread rapidly over a surface that supplies them with nutrient...
In the present work we simulate the basic two-dimensional dynamics of swarming E. coli bacteria on t...
<div><p>A large variety of motile bacterial species exhibit collective motions while inhabiting liqu...
Simultaneous acquisition of phase-contrast light microscopy and fluorescently labeled bacteria, movi...
A large variety of motile bacterial species exhibit collective motions while inhabiting liquids or c...
The rate of expansion of bacterial colonies of S. liquefaciens is investigated in terms of a mathema...
A large variety of motile bacterial species exhibit collective motions while inhabiting liquids or c...
International audienceBacteria adopt social behavior to expand into new territory, led by specialize...
Background: Swarming motility allows microorganisms to move rapidly over surfaces. The Grampositive ...
Abstract Bacterial swarming is a collective mode of motion in which cells migrate rapidly over surfa...
Heterogeneous systems of active matter exhibit a range of complex emergent dynamical patterns. In pa...
AbstractWhen vegetative bacteria that can swim are grown in a rich medium on an agar surface, they b...
We determine and relate the characteristic velocity, length, and time scales for bacterial motion in...
A major challenge in microbial evolutionary ecology is to understand how fitness-related traits vary...
When vegetative bacteria that can swim are grown in a rich medium on an agar surface, they become mu...
Many bacteria simultaneously grow and spread rapidly over a surface that supplies them with nutrient...
In the present work we simulate the basic two-dimensional dynamics of swarming E. coli bacteria on t...
<div><p>A large variety of motile bacterial species exhibit collective motions while inhabiting liqu...
Simultaneous acquisition of phase-contrast light microscopy and fluorescently labeled bacteria, movi...
A large variety of motile bacterial species exhibit collective motions while inhabiting liquids or c...
The rate of expansion of bacterial colonies of S. liquefaciens is investigated in terms of a mathema...
A large variety of motile bacterial species exhibit collective motions while inhabiting liquids or c...
International audienceBacteria adopt social behavior to expand into new territory, led by specialize...
Background: Swarming motility allows microorganisms to move rapidly over surfaces. The Grampositive ...