Multiple Local and Global Bifurcations and Their Role in Quorum Sensing Dynamics
Dynamical Systems
2025-01-15 v3 Chaotic Dynamics
Populations and Evolution
Abstract
Quorum sensing governs bacterial communication, playing a crucial role in regulating population behaviour. We propose a mathematical model that uncovers chaotic dynamics within quorum sensing networks, highlighting challenges to predictability. The model explores interactions between autoinducers and two bacterial subtypes, revealing oscillatory dynamics in both a constant autoinducer sub-model and the full three-component model. In the latter case, we find that the complicated dynamics can be explained by the presence of homoclinic Shilnikov bifurcations. We employed a combination of normal form analysis and numerical continuation methods to analyse the system.
Cite
@article{arxiv.2409.02764,
title = {Multiple Local and Global Bifurcations and Their Role in Quorum Sensing Dynamics},
author = {Mariana Harris and Viviana Rivera-Estay and Pablo Aguirre and Víctor F. Breña-Medina},
journal= {arXiv preprint arXiv:2409.02764},
year = {2025}
}
Comments
23 pages, 10 figures