To cross or not to cross: Collective swimming of Escherichia coli under two-dimensional confinement

Bacteria suspended in fluids swim collectively and display fascinating emergent dynamics. Although bacterial collective swimming in bulk suspensions has been well studied, its counterpart in confined two-dimensional (2D) geometries relevant to many natural habitats of bacteria is still poorly unders...

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Main Authors: Dipanjan Ghosh, Xiang Cheng
Format: Article
Language:English
Published: American Physical Society 2022-05-01
Series:Physical Review Research
Online Access:http://doi.org/10.1103/PhysRevResearch.4.023105
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author Dipanjan Ghosh
Xiang Cheng
author_facet Dipanjan Ghosh
Xiang Cheng
author_sort Dipanjan Ghosh
collection DOAJ
description Bacteria suspended in fluids swim collectively and display fascinating emergent dynamics. Although bacterial collective swimming in bulk suspensions has been well studied, its counterpart in confined two-dimensional (2D) geometries relevant to many natural habitats of bacteria is still poorly understood. Here, through carefully designed experiments on Escherichia coli in a Hele-Shaw geometry, we show that a small change in the degree of confinement leads to a drastic change in bacterial collective swimming. While a long-range nematic order emerges for bacteria that can cross over each other during encounters, a slight decrease of the confining height that prevents the crossing leads to the formation of bacterial clusters with a short-range polar order. By tracking the swimming kinetics of individual bacteria, we reveal the microscopic origins of the two emergent collective phases and illustrate the effect of the collective dynamics on the swimming behaviors of single bacteria. Our study provides insights into bacterial collective swimming under confinement and demonstrates a simple way to control the emergent symmetry of collective phases.
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spelling doaj.art-7a3e760582bd44a28c4282c3f8fb0ba82024-04-12T17:20:40ZengAmerican Physical SocietyPhysical Review Research2643-15642022-05-014202310510.1103/PhysRevResearch.4.023105To cross or not to cross: Collective swimming of Escherichia coli under two-dimensional confinementDipanjan GhoshXiang ChengBacteria suspended in fluids swim collectively and display fascinating emergent dynamics. Although bacterial collective swimming in bulk suspensions has been well studied, its counterpart in confined two-dimensional (2D) geometries relevant to many natural habitats of bacteria is still poorly understood. Here, through carefully designed experiments on Escherichia coli in a Hele-Shaw geometry, we show that a small change in the degree of confinement leads to a drastic change in bacterial collective swimming. While a long-range nematic order emerges for bacteria that can cross over each other during encounters, a slight decrease of the confining height that prevents the crossing leads to the formation of bacterial clusters with a short-range polar order. By tracking the swimming kinetics of individual bacteria, we reveal the microscopic origins of the two emergent collective phases and illustrate the effect of the collective dynamics on the swimming behaviors of single bacteria. Our study provides insights into bacterial collective swimming under confinement and demonstrates a simple way to control the emergent symmetry of collective phases.http://doi.org/10.1103/PhysRevResearch.4.023105
spellingShingle Dipanjan Ghosh
Xiang Cheng
To cross or not to cross: Collective swimming of Escherichia coli under two-dimensional confinement
Physical Review Research
title To cross or not to cross: Collective swimming of Escherichia coli under two-dimensional confinement
title_full To cross or not to cross: Collective swimming of Escherichia coli under two-dimensional confinement
title_fullStr To cross or not to cross: Collective swimming of Escherichia coli under two-dimensional confinement
title_full_unstemmed To cross or not to cross: Collective swimming of Escherichia coli under two-dimensional confinement
title_short To cross or not to cross: Collective swimming of Escherichia coli under two-dimensional confinement
title_sort to cross or not to cross collective swimming of escherichia coli under two dimensional confinement
url http://doi.org/10.1103/PhysRevResearch.4.023105
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