Related Experiment Video
Updated: Feb 20, 2026

Design and Use of an Apparatus for Quantifying Bivalve Suspension Feeding at Sea
Published on: September 5, 2018
Supply and demand drive a critical transition to dysfunctional fisheries
John M Fryxell1, Ray Hilborn2, Carling Bieg3
1Department of Integrative Biology, University of Guelph, Guelph, ON, Canada, N1G 2W1; jfryxell@uoguelph.ca.
Abstract:
There is growing awareness of the need for fishery management policies that are robust to changing environmental, social, and economic pressures. Here we use conventional bioeconomic theory to demonstrate that inherent biological constraints combined with nonlinear supply-demand relationships can generate threshold effects due to harvesting. As a result, increases in overall demand due to human population growth or improvement in real income would be expected to induce critical transitions from high-yield/low-price fisheries to low-yield/high-price fisheries, generating severe strains on social and economic systems as well as compromising resource conservation goals. As a proof of concept, we show that key predictions of the critical transition hypothesis are borne out in oceanic fisheries (cod and pollock) that have experienced substantial increase in fishing pressure over the past 60 y. A hump-shaped relationship between price and historical harvest returns, well demonstrated in these empirical examples, is particularly diagnostic of fishery degradation. Fortunately, the same heuristic can also be used to identify reliable targets for fishery restoration yielding optimal bioeconomic returns while safely conserving resource abundance.
Related Concept Videos
Population Growth
Sustainable Development
Social Traps
Habitat Fragmentation
Types of Selection
Derivatives: Problem Solving

