Intergenerational continuity of cell shape dynamics in Caulobacter crescentus

0301 basic medicine 0303 health sciences 03 medical and health sciences FOS: Biological sciences Caulobacter crescentus Cell Behavior (q-bio.CB) Quantitative Biology - Cell Behavior Microscopy, Phase-Contrast Models, Theoretical Article Algorithms
DOI: 10.1038/srep09155 Publication Date: 2015-03-17T10:44:23Z
ABSTRACT
AbstractWe investigate the intergenerational shape dynamics of single Caulobacter crescentus cells using a novel combination of imaging techniques and theoretical modeling. We determine the dynamics of cell pole-to-pole lengths, cross-sectional widths and medial curvatures from high accuracy measurements of cell contours. Moreover, these shape parameters are determined for over 250 cells across approximately 10000 total generations, which affords high statistical precision. Our data and model show that constriction is initiated early in the cell cycle and that its dynamics are controlled by the time scale of exponential longitudinal growth. Based on our extensive and detailed growth and contour data, we develop a minimal mechanical model that quantitatively accounts for the cell shape dynamics and suggests that the asymmetric location of the division plane reflects the distinct mechanical properties of the stalked and swarmer poles. Furthermore, we find that the asymmetry in the division plane location is inherited from the previous generation. We interpret these results in terms of the current molecular understanding of shape, growth and division of C. crescentus.
SUPPLEMENTAL MATERIAL
Coming soon ....
REFERENCES (56)
CITATIONS (21)
EXTERNAL LINKS
PlumX Metrics
RECOMMENDATIONS
FAIR ASSESSMENT
Coming soon ....
JUPYTER LAB
Coming soon ....