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Published on: April 27, 2021
Evidence for a bimodal distribution of Escherichia coli doubling times below a threshold initial cell concentration
Peter L Irwin1, Ly-Huong T Nguyen, George C Paoli
1Molecular Characterization of Foodborne Pathogens Research Unit, Agricultural Research Service, US Department of Agriculture, Eastern Regional Research Center, Wyndmoor, PA 19038, USA. peter.irwin@ars.usda.gov
Background:
In the process of developing a microplate-based growth assay, we discovered that our test organism, a native E. coli isolate, displayed very uniform doubling times (tau) only up to a certain threshold cell density. Below this cell concentration (
Results:
Working with a food-borne E. coli isolate we found that tau values derived from two different microtiter platereader-based techniques (i.e., optical density with growth time {=OD[t]} fit to the sigmoidal Boltzmann equation or time to calculated 1/2-maximal OD {=tm} as a function of initial cell density {=tm[CI]}) were in excellent agreement with the same parameter acquired from total aerobic plate counting. Thus, using either Luria-Bertani (LB) or defined (MM) media at 37 degrees C, tau ranged between 17-18 (LB) or 51-54 (MM) min. Making use of such OD[t] data we collected many observations of tau as a function of manifold initial or starting cell concentrations (CI). We noticed that tau appeared to be distributed in two populations (bimodal) at low CI. When CI
Conclusion:
These data argue that there is a dependence of growth rate on starting cell density.
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