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Bacterial growth, detachment and cell size control on polyethylene terephthalate surfaces.


Type

Article

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Authors

Wang, Liyun 
Fan, Daming 
Chen, Wei 
Terentjev, Eugene M 

Abstract

In medicine and food industry, bacterial colonisation on surfaces is a common cause of infections and severe illnesses. However, the detailed quantitative information about the dynamics and the mechanisms involved in bacterial proliferation on solid substrates is still lacking. In this study we investigated the adhesion and detachment, the individual growth and colonisation, and the cell size control of Escherichia coli (E. coli) MG1655 on polyethylene terephthalate (PET) surfaces. The results show that the bacterial growth curve on PET exhibits the distinct lag and log phases, but the generation time is more than twice longer than in bulk medium. Single cells in the lag phase are more likely to detach than clustered ones in the log phase; clustered bacteria in micro-colonies have stronger adhesive bonds with surfaces and their neighbours with the progressing colonisation. We show that the cell size is under the density-dependent pathway control: when the adherent cells are at low density, the culture medium is responsible for coordinating cell division and cell size; when the clustered cells are at high population density, we demonstrate that the effect of quorum sensing causes the cell size decrease as the cell density on surfaces increases.

Description

Keywords

Bacterial Adhesion, Biofilms, Cell Enlargement, Cell Proliferation, Escherichia coli, Materials Testing, Polyethylene Terephthalates, Surface Properties

Journal Title

Sci Rep

Conference Name

Journal ISSN

2045-2322
2045-2322

Volume Title

5

Publisher

Springer Science and Business Media LLC