Related Experiment Video
Updated: May 29, 2026

Field Experiments of Pollination Ecology: The Case of Lycoris sanguinea var. sanguinea
Published on: November 25, 2016
Congruence between geographic range distribution and local competitive ability of two Lupinus species
Rubén Milla1, Adrián Escudero, José M Iriondo
1Área de Biodiversidad y Conservación, Universidad Rey Juan Carlos, c/ Tulipán s/n., E-28933 Móstoles, Madrid, Spain. ruben.milla@gmail.com
Premise Of The Study:
In spite of its relevance, we lack rigorous evidence on whether widespread species are superior local competitors compared with coexisting narrowly distributed congeners. We ran a competition experiment between two lupins that coexist at their shared geographic range: Lupinus angustifolius L. (widespread) and L. gredensis Gandoger (narrow endemic). •
Methods:
We set up mixed and monospecific populations of the two species, monitored survival and fecundity until the death of the whole cohorts, and measured variables of putative relevance to the competition process. We used aster modeling to address lifetime individual fitness and generalized linear models to assess the effect of species, type of competition, and competition environment on a suite of competition indices. •
Key Results:
Lupinus angustifolius showed higher fitness and exerted a stronger competitive effect on its heterospecific neighbors. This occurred through higher fecundity late in the season rather than through differential survival at earlier stages. •
Conclusions:
This is the first evidence of lifetime superior competitive potential of a widespread species over a narrow endemic congener. This competitive response might scale up to the geographic distribution range and may partially explain the limited distribution of the narrow endemic. Extension to other carefully selected study cases and more in-depth field experiments may help to assess the generality of this pattern and understand how local processes translate into geographic patterns.
Related Concept Videos
Competition
Distribution and Dispersion
Hybrid Zones
Frequency-dependent Selection
Ecological Niches
Conservation of Small Populations
