Related Experiment Video
Updated: Jul 1, 2026

Palatable Western-style Cafeteria Diet as a Reliable Method for Modeling Diet-induced Obesity in Rodents
Published on: November 1, 2019
Slow Evolution Towards Generalism in a Model of Variable Dietary Range
Elliot M Butterworth1, Tim Rogers2
1Department of Mathematical Sciences, University of Bath, Claverton Down, BA2 7AY, Bath, United Kingdom. emb209@bath.ac.uk.
Abstract:
Species sharing a habitat will co-evolve to make use of the available resources, as consumption is modulated by competition and negative feedback loops between consumers and resources. The dietary range of a given species determines the resources it has access to and thus the other species with which it competes. A narrow dietary range avoids competition at the cost of over-reliance on a small selection of resources; conversely a wide dietary range provides more alternatives but also more chance of competition with other species. Here, we investigate the evolution of dietary range within a mathematical model of niche formation. We find highly path dependent co-evolution dynamics characterised by long-lived quasi-stable states. Ultimately, stochastic effects drive the evolution of generalist diets, as we uncover in our analysis and simulations.
Related Concept Videos
Speciation Rates
Optimal Foraging
Evolution of New Traits in Microbes
Limits to Natural Selection
Types of Selection
Generalization, Discrimination, and Extinction
Generalization occurs when a behavior reinforced in one context is performed in similar situations. For instance, a student who studies diligently for calculus and receives excellent grades might apply the same study habits to psychology and history, expecting similar results. Generalization shows how learning in one setting can influence behavior in...

