bioRxiv · 10.1101/2020.06.29.176883
Bursting out: linking changes in nano-topography and biomechanical properties of biofilm-forming Escherichia coli to T4 lytic cycle
Abstract
Bacteriophage infection cycle has been extensively studied, yet little is known on the structural and mechanical changes that lead to bacterial lysis. Here, bio-atomic force microscopy was used to study in real-time and in-situ the impact of the canonical phage T4 on the nano-topography and biomechanics of irreversibly attached, biofilm-forming E. coli cells. The results show that in contrast to the lytic cycle in planktonic cells, which ends explosively, anchored cells that are in the process of forming biofilms undergo gradual lysis, developing distinct sub-micron lesions ([~]300 nm in diameter) within the cell envelope. Furthermore, it is shown that the envelope rigidity and cell elasticity decrease (>50% and >40%, respectively) following T4 infection. These new insights show that the well-established lytic pathway of planktonic cells may be significantly different from that of biofilm-forming cells. Elucidating the lysis paradigm of these cells may advance biofilm removal and phage therapeutic. There is no conflict of interest and all co-authors have seen and approved the current version for submission.
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Abraham, S., Kaufman, Y., Perreault, F., Young, R., Bar-Zeev, E.. 2020-06-29. Bursting out: linking changes in nano-topography and biomechanical properties of biofilm-forming Escherichia coli to T4 lytic cycle. https://doi.org/10.1101/2020.06.29.176883
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