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Updated: Apr 16, 2026

Daily Transfers, Archiving Populations, and Measuring Fitness in the Long-Term Evolution Experiment with Escherichia coli
Published on: August 18, 2023
Modularity enhances the rate of evolution in a rugged fitness landscape
Jeong-Man Park1, Man Chen, Dong Wang
1Department of Physics & Astronomy Rice University, Houston, TX 77005-1892, USA. Department of Physics, The Catholic University of Korea, Bucheon 420-743, Korea.
Abstract:
Biological systems are modular, and this modularity affects the evolution of biological systems over time and in different environments. We here develop a theory for the dynamics of evolution in a rugged, modular fitness landscape. We show analytically how horizontal gene transfer couples to the modularity in the system and leads to more rapid rates of evolution at short times. The model, in general, analytically demonstrates a selective pressure for the prevalence of modularity in biology. We use this model to show how the evolution of the influenza virus is affected by the modularity of the proteins that are recognized by the human immune system. Approximately 25% of the observed rate of fitness increase of the virus could be ascribed to a modular viral landscape.
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