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- W2586808014 abstract "Cell size and individual growth rates vary substantially across genetically identical cell populations. This variation cannot entirely be explained by asynchronous cell division cycles, but also needs to take into account the differences in the histories that cells experience during their lifespan. We describe a stochastic framework to characterise cell size histories in an exponentially growing population. We show that these histories differ from cells observed in isolation, such as observed in mother machines. Quantifying these historical fluctuations allows us to predict the population growth rate. We highlight that the maximum attainable population growth cannot exceed the rate at which an average cell grows, but the population doubles faster than an average cell doubles its size. We validate this prediction using recent single-cell data. The theory thus provides fundamental limits on population fitness in terms of individual cell properties." @default.
- W2586808014 created "2017-02-17" @default.
- W2586808014 creator A5064292789 @default.
- W2586808014 date "2017-01-15" @default.
- W2586808014 modified "2023-10-13" @default.
- W2586808014 title "Single-cell histories in growing populations: relating physiological variability to population growth" @default.
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- W2586808014 doi "https://doi.org/10.1101/100495" @default.
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