Proceedings of the National Academy of Sciences · 2006 · 120 citations · 33 references
Dynamic EquilibriumEngineeringArtificial Immune SystemViral DynamicExact SolutionDegradation RatesNetwork AnalysisGeometric Singular Perturbation TheoryExact SolutionsMatrix MethodEvolutionary DynamicSystems BiologyMatrix AnalysisDisease DynamicsEvolutionary BiologyComputational BiologyGeneral Degradation RateEigen ModelHost ResistanceMedicineDegradation Rate
We present an exact solution of Eigen’s quasispecies model with a general degradation rate and fitness functions, including a square root decrease of fitness with increasing Hamming distance from the wild type. The found behavior of the model with a degradation rate is analogous to a viral quasispecies under attack by the immune system of the host. Our exact solutions also revise the known results of neutral networks in quasispecies theory. To explain the existence of mutants with large Hamming distances from the wild type, we propose three different modifications of the Eigen model: mutation landscape, multiple adjacent mutations, and frequency-dependent fitness in which the steady-state solution shows a multicenter behavior.
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An Introduction to Population Genetics Theory
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