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Shared biophysical mechanisms determine early biofilm architecture development across different bacterial species

Jeckel, Hannah and Díaz-Pascual, Francisco and Skinner, Dominic J. and Song, Boya and Jiménez-Siebert, Eva and Strenger, Kerstin and Jelli, Eric and Vaidya, Sanika and Dunkel, Jörn and Drescher, Knut. (2022) Shared biophysical mechanisms determine early biofilm architecture development across different bacterial species. PLoS Biology, 20 (10). e3001846.

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Official URL: https://edoc.unibas.ch/93721/

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Abstract

Bacterial biofilms are among the most abundant multicellular structures on Earth and play essential roles in a wide range of ecological, medical, and industrial processes. However, general principles that govern the emergence of biofilm architecture across different species remain unknown. Here, we combine experiments, simulations, and statistical analysis to identify shared biophysical mechanisms that determine early biofilm architecture development at the single-cell level, for the species Vibrio cholerae, Escherichia coli, Salmonella enterica, and Pseudomonas aeruginosa grown as microcolonies in flow chambers. Our data-driven analysis reveals that despite the many molecular differences between these species, the biofilm architecture differences can be described by only 2 control parameters: cellular aspect ratio and cell density. Further experiments using single-species mutants for which the cell aspect ratio and the cell density are systematically varied, and mechanistic simulations show that tuning these 2 control parameters reproduces biofilm architectures of different species. Altogether, our results show that biofilm microcolony architecture is determined by mechanical cell-cell interactions, which are conserved across different species.
Faculties and Departments:05 Faculty of Science > Departement Biozentrum > Infection Biology > Microbiology and Biophysics (Drescher)
UniBasel Contributors:Drescher, Knut
Item Type:Article, refereed
Article Subtype:Research Article
Publisher:Public Library of Science
ISSN:1544-9173
e-ISSN:1545-7885
Note:Publication type according to Uni Basel Research Database: Journal article
Language:English
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Last Modified:22 Feb 2023 14:53
Deposited On:22 Feb 2023 14:53

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