Related Experiment Video
Updated: May 7, 2025

Maintenance of a Drosophila melanogaster Population Cage
Published on: March 15, 2016
Density dependence maintains long-term stability despite increased isolation and inbreeding in the Florida Scrub-Jay
Jeremy Summers1, Elissa J Cosgrove2, Reed Bowman3
1Department of Biology, University of Rochester, Rochester, New York, USA.
None:
Isolation caused by anthropogenic habitat fragmentation can destabilize populations. Populations relying on the inflow of immigrants can face reduced fitness due to inbreeding depression as fewer new individuals arrive. Empirical studies of the demographic consequences of isolation are critical to understand how populations persist through changing conditions. We used a 34-year demographic and environmental dataset from a population of cooperatively breeding Florida Scrub-Jays (Aphelocoma coerulescens) to create mechanistic models linking environmental and demographic factors to population growth rates. We found that the population has not declined despite both declining immigration and increasing inbreeding, owing to a coinciding response in breeder survival. We find evidence of density-dependent immigration, breeder survival and fecundity, indicating that interactions between vital rates and local density play a role in buffering the population against change. Our study elucidates the impacts of isolation on demography and how long-term stability is maintained via demographic responses.
Related Concept Videos
Frequency-dependent Selection
Conservation of Small Populations
Conservation of Declining Populations
Hybrid Zones
Types of Selection
Speciation Rates

