Transitions to Intermittent Chaos in Quorum Sensing Dynamics

Fuente: arXiv
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Main Authors: Flores--Pérez, A., González--Olvera, M. A., Breña--Medina, V. F.
Format: Preprint
Published: 2025
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_version_ 1866912398661648384
author Flores--Pérez, A.
González--Olvera, M. A.
Breña--Medina, V. F.
author_facet Flores--Pérez, A.
González--Olvera, M. A.
Breña--Medina, V. F.
contents This study analyses the dynamical consequences of heterogeneous temporal delays within a quorum sensing-inspired (QS-inspired) system, specifically addressing the differential response kinetics of two sub-populations to signalling molecules. A nonlinear delay differential equation (DDE) model, predicated upon an activator-inhibitor framework, is formulated to represent the interspecies interactions. Key analytical techniques, including the derivation of the pseudo-characteristic polynomial and the determination of Hopf bifurcation criteria, are employed to investigate the stability properties of steady-state solutions. The analysis reveals the critical role of multiple, dissimilar delays in modulating system dynamics and inducing bifurcations. Numerical simulations, conducted in conjunction with analytical results, reveal the emergence of periodic self-sustained oscillations and intermittent chaotic behaviour. These observations emphasise the intricate relationship between temporal heterogeneity and the stability landscape of systems exhibiting QS-inspired dynamics. This interplay highlights the capacity for temporal variations to induce complex dynamical transitions within such systems. These findings assist to the comprehension of temporal dynamics within these and related systems, and may contribute to the development of strategies aimed at modulating intercellular communication and engineering synthetic biological systems with temporal control.
format Preprint
id arxiv_https___arxiv_org_abs_2503_14363
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Transitions to Intermittent Chaos in Quorum Sensing Dynamics
Flores--Pérez, A.
González--Olvera, M. A.
Breña--Medina, V. F.
Chaotic Dynamics
Dynamical Systems
34C28, 34C23, 34H10, 37N25, 37D45
This study analyses the dynamical consequences of heterogeneous temporal delays within a quorum sensing-inspired (QS-inspired) system, specifically addressing the differential response kinetics of two sub-populations to signalling molecules. A nonlinear delay differential equation (DDE) model, predicated upon an activator-inhibitor framework, is formulated to represent the interspecies interactions. Key analytical techniques, including the derivation of the pseudo-characteristic polynomial and the determination of Hopf bifurcation criteria, are employed to investigate the stability properties of steady-state solutions. The analysis reveals the critical role of multiple, dissimilar delays in modulating system dynamics and inducing bifurcations. Numerical simulations, conducted in conjunction with analytical results, reveal the emergence of periodic self-sustained oscillations and intermittent chaotic behaviour. These observations emphasise the intricate relationship between temporal heterogeneity and the stability landscape of systems exhibiting QS-inspired dynamics. This interplay highlights the capacity for temporal variations to induce complex dynamical transitions within such systems. These findings assist to the comprehension of temporal dynamics within these and related systems, and may contribute to the development of strategies aimed at modulating intercellular communication and engineering synthetic biological systems with temporal control.
title Transitions to Intermittent Chaos in Quorum Sensing Dynamics
topic Chaotic Dynamics
Dynamical Systems
34C28, 34C23, 34H10, 37N25, 37D45
url https://arxiv.org/abs/2503.14363