Related Experiment Video
Updated: Feb 24, 2026

A Video Surveillance System to Monitor Breeding Colonies of Common Terns Sterna Hirundo
Published on: July 22, 2018
Decadal-scale variation in diet forecasts persistently poor breeding under ocean warming in a tropical seabird
Emily M Tompkins1, Howard M Townsend1,2, David J Anderson1
1Department of Biology, Wake Forest University, Winston-Salem, North Carolina, United States of America.
Abstract:
Climate change effects on population dynamics of natural populations are well documented at higher latitudes, where relatively rapid warming illuminates cause-effect relationships, but not in the tropics and especially the marine tropics, where warming has been slow. Here we forecast the indirect effect of ocean warming on a top predator, Nazca boobies in the equatorial Galápagos Islands, where rising water temperature is expected to exceed the upper thermal tolerance of a key prey item in the future, severely reducing its availability within the boobies' foraging envelope. From 1983 to 1997 boobies ate mostly sardines, a densely aggregated, highly nutritious food. From 1997 until the present, flying fish, a lower quality food, replaced sardines. Breeding success under the poor diet fell dramatically, causing the population growth rate to fall below 1, indicating a shrinking population. Population growth may not recover: rapid future warming is predicted around Galápagos, usually exceeding the upper lethal temperature and maximum spawning temperature of sardines within 100 years, displacing them permanently from the boobies' island-constrained foraging range. This provides rare evidence of the effect of ocean warming on a tropical marine vertebrate.
More Related Videos
Related Concept Videos
Conservation of Declining Populations
Speciation Rates
Energy Budgets
Threats to Biodiversity
Global Climate Change
Optimal Foraging

