Non-equilibrium dynamics of bacterial colonies—growth, active fluctuations, segregation, adhesion, and invasion

1Citations
Citations of this article
10Readers
Mendeley users who have this article in their library.

This article is free to access.

Abstract

Colonies of bacteria endowed with a pili-based self-propulsion machinery are ideal models for investigating the structure and dynamics of active many-particle systems. We study Neisseria gonorrhoeae colonies with a molecular-dynamics-based approach. A generic, adaptable simulation method for particle systems with fluctuating bond-like interactions is devised. The simulations are employed to investigate growth of bacterial colonies and the dependence of the colony structure on cell-cell interactions. In colonies, pilus retraction enhances local ordering. For colonies consisting of different types of cells, the simulations show a segregation depending on the pili-mediated interactions among different cells. These results agree with experimental observations. Next, we quantify the power-spectral density of colony-shape fluctuations in silico. Simulations predict a strong violation of the equilibrium fluctuation-response relation. Furthermore, we show that active force generation enables colonies to spread on surfaces and to invade narrow channels. The methodology can serve as a foundation for future studies of active many-particle systems at boundaries with complex shape.

References Powered by Scopus

Fast parallel algorithms for short-range molecular dynamics

38113Citations
N/AReaders
Get full text

Visualization and analysis of atomistic simulation data with OVITO-the Open Visualization Tool

12423Citations
N/AReaders
Get full text

The dynamics of capillary flow

6229Citations
N/AReaders
Get full text

Cited by Powered by Scopus

The narrow escape problem of a chiral active particle (CAP): an optimal scheme

1Citations
N/AReaders
Get full text

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Cite

CITATION STYLE

APA

Zhou, K., Hennes, M., Maier, B., Gompper, G., & Sabass, B. (2022). Non-equilibrium dynamics of bacterial colonies—growth, active fluctuations, segregation, adhesion, and invasion. Communications Physics, 5(1). https://doi.org/10.1038/s42005-022-01018-7

Readers over time

‘21‘22‘23‘2402468

Readers' Seniority

Tooltip

PhD / Post grad / Masters / Doc 3

50%

Researcher 2

33%

Professor / Associate Prof. 1

17%

Readers' Discipline

Tooltip

Physics and Astronomy 3

60%

Chemical Engineering 1

20%

Biochemistry, Genetics and Molecular Bi... 1

20%

Save time finding and organizing research with Mendeley

Sign up for free
0