Multiple holins contribute to extracellular DNA release in Pseudomonas aeruginosa biofilms
File(s)micro000990.pdf (4.11 MB)
Published version
Author(s)
Type
Journal Article
Abstract
Bacterial biofilms are composed of aggregates of cells encased within a matrix of extracellular polymeric substances (EPS). One key EPS component is extracellular DNA (eDNA), which acts as a ‘glue’, facilitating cell–cell and cell–substratum interactions. We have previously demonstrated that eDNA is produced in Pseudomonas aeruginosa biofilms via explosive cell lysis. This phenomenon involves a subset of the bacterial population explosively lysing, due to peptidoglycan degradation by the endolysin Lys. Here we demonstrate that in P. aeruginosa three holins, AlpB, CidA and Hol, are involved in Lys-mediated eDNA release within both submerged (hydrated) and interstitial (actively expanding) biofilms, albeit to different extents, depending upon the type of biofilm and the stage of biofilm development. We also demonstrate that eDNA release events determine the sites at which cells begin to cluster to initiate microcolony formation during the early stages of submerged biofilm development. Furthermore, our results show that sustained release of eDNA is required for cell cluster consolidation and subsequent microcolony development in submerged biofilms. Overall, this study adds to our understanding of how eDNA release is controlled temporally and spatially within P. aeruginosa biofilms.
Date Issued
2021-01-05
Date Acceptance
2020-12-08
Citation
Microbiology, 2021, 167 (2), pp.1-12
ISSN
1350-0872
Publisher
Microbiology Society
Start Page
1
End Page
12
Journal / Book Title
Microbiology
Volume
167
Issue
2
Copyright Statement
© 2021 The Authors
This is an open-access article distributed under the terms of the Creative Commons Attribution License. This article was made open access via a Publish and Read agreement between
the Microbiology Society and the corresponding author’s institution.
This is an open-access article distributed under the terms of the Creative Commons Attribution License. This article was made open access via a Publish and Read agreement between
the Microbiology Society and the corresponding author’s institution.
License URL
Sponsor
Cystic Fibrosis Trust
Imperial College London
Identifier
https://www.microbiologyresearch.org/content/journal/micro/10.1099/mic.0.000990
Grant Number
VIA 070
Subjects
Microbiology
Publication Status
Published
Date Publish Online
2021-01-05