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arxiv: 1606.09048 · v2 · pith:S66NJNDEnew · submitted 2016-06-29 · 🧬 q-bio.PE · cond-mat.stat-mech· math-ph· math.MP

Asymptotic analysis of noisy fitness maximization, applied to metabolism and growth

classification 🧬 q-bio.PE cond-mat.stat-mechmath-phmath.MP
keywords growthasymptoticdiffusionrateresponsestateairyanalysis
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We consider a population dynamics model coupling cell growth to a diffusion in the space of metabolic phenotypes as it can be obtained from realistic constraints-based modelling. In the asymptotic regime of slow diffusion, that coincides with the relevant experimental range, the resulting non-linear Fokker-Planck equation is solved for the steady state in the WKB approximation that maps it into the ground state of a quantum particle in an Airy potential plus a centrifugal term. We retrieve scaling laws for growth rate fluctuations and time response with respect to the distance from the maximum growth rate suggesting that suboptimal populations can have a faster response to perturbations.

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