Related Experiment Video
Updated: Nov 23, 2025

Visually Sexing Loggerhead Shrike Lanius Ludovicianus Using Plumage Coloration and Pattern
Published on: March 8, 2020
Demographic consequences of foraging ecology explain genetic diversification in Neotropical bird species
Matthew J Miller1,2, Eldredge Bermingham2,3, Benjamin L Turner2
1Department of Biology & Wildlife, University of Alaska Museum, 907 Yukon Drive, Fairbanks, AK, 99775, USA.
Abstract:
Despite evidence that species' traits affect rates of bird diversification, biogeographic studies tend to prioritise earth history in Neotropical bird speciation. Here we compare mitochondrial genetic differentiation among 56 co-distributed Neotropical bird species with varying ecologies. The trait 'diet' best predicted divergence, with plant-dependent species (mostly frugivores and nectivores) showing lower levels of genetic divergence than insectivores or mixed-diet species. We propose that the greater vagility and demographic instability of birds whose diets rely on fruit, seeds, or nectar known to vary in abundance seasonally and between years relative to birds that eat primarily insects, drives episodic re-unification of otherwise isolated populations, resetting the divergence 'clock'. Testing this prediction using coalescent simulations, we find that plant-dependent species show stronger signals of recent demographic expansion compared to insectivores or mixed-diet species, consistent with this hypothesis. Our study provides evidence that localised ecological phenomena scale up to generate larger macroevolutionary patterns.
Related Concept Videos
Genetics of Speciation
Gene Flow
The Evidence for Evolution
Genetic Drift
Speciation Rates
Conservation of Declining Populations

