arXiv · 2607.18434
Gravity-Driven Eco-Epidemiological Dynamics in Tri-Trophic Food Chains
Abstract
Ecological communities are shaped by the interplay between trophic interactions and infectious disease, yet how spatially mediated interactions influence disease-driven ecosystem dynamics remains poorly understood. Here, we develop a gravity-based eco-epidemiological framework for a tri-trophic food chain in which trophic interaction depends on species abundances and effective interaction distance. The disease-free food chain system supports a stable coexistence equilibrium, providing a baseline for investigating disease-induced ecological transitions. Introducing infection at the intermediate trophic level destabilizes this equilibrium through a Hopf bifurcation, leading to sustained oscillations, whereas infection at the top predator level results in a qualitatively different transition from persistence to extinction. By systematically varying the gravity coupling strength, we show that gravity-mediated trophic interactions regulate the thresholds separating these ecological regimes, while the trophic position of infection determines the nature of the transition. Together, these findings establish a unified framework for understanding how spatially mediated trophic interactions and infectious disease jointly govern ecosystem stability, providing new insights into disease-driven dynamics in ecological communities.
Explore related subjects
Keep this discovery
Yuvrajsingh Pravinsingh Patil, Eckehard Schöll, Fakhteh Ghanbarnejad, Chandrakala Meena. 2026-07-20. Gravity-Driven Eco-Epidemiological Dynamics in Tri-Trophic Food Chains. https://arxiv.org/abs/2607.18434
Cite the original work for its findings. Save a collection to share your selection of sources.