Related Experiment Video
Updated: Mar 27, 2026

A Method for Quantifying Foliage-Dwelling Arthropods
Published on: October 20, 2019
Association of genetic and phenotypic variability with geography and climate in three southern California oaks
Erin C Riordan1, Paul F Gugger1, Joaquín Ortego2
1Department of Ecology and Evolutionary Biology, University of California Los Angeles, Box 957239, Los Angeles, California 90095-7239 USA.
Premise Of The Study:
Geography and climate shape the distribution of organisms, their genotypes, and their phenotypes. To understand historical and future evolutionary and ecological responses to climate, we compared the association of geography and climate of three oak species (Quercus engelmannii, Quercus berberidifolia, and Quercus cornelius-mulleri) in an environmentally heterogeneous region of southern California at three organizational levels: regional species distributions, genetic variation, and phenotypic variation.
Methods:
We identified climatic variables influencing regional distribution patterns using species distribution models (SDMs), and then tested whether those individual variables are important in shaping genetic (microsatellite) and phenotypic (leaf morphology) variation. We estimated the relative contributions of geography and climate using multivariate redundancy analyses (RDA) with variance partitioning.
Key Results:
The modeled distribution of each species was influenced by climate differently. Our analysis of genetic variation using RDA identified small but significant associations between genetic variation with climate and geography in Q. engelmannii and Q. cornelius-mulleri, but not in Q. berberidifolia, and climate explained more of the variation. Our analysis of phenotypic variation in Q. engelmannii indicated that climate had more impact than geography, but not in Q. berberidifolia. Throughout our analyses, we did not find a consistent pattern in effects of individual climatic variables.
Conclusions:
Our comparative analysis illustrates that climate influences tree response at all organizational levels, but the important climate factors vary depending on the level and on the species. Because of these species-specific and level-specific responses, today's sympatric species are unlikely to have similar distributions in the future.
More Related Videos
Related Concept Videos
Genetic Variation
Genes exist in different versions called alleles,...
Genetics of Speciation
Gene Flow
Variability: Analysis
The range is a simple measure of variability, indicating the difference between the highest and...
Multiple Allele Traits
Multiple Allele Traits

