4.4 Article

The Difficulty of Predicting Evolutionary Change in Response to Novel Ecological Interactions: A Field Experiment with Anolis Lizards

Journal

AMERICAN NATURALIST
Volume -, Issue -, Pages -

Publisher

UNIV CHICAGO PRESS
DOI: 10.1086/723209

Keywords

experimental evolution; parallel evolution; species interactions; adaptation

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This experiment used a multigeneration field experiment with brown anole lizards to investigate the predictability of evolution. The study found that both phenotypic and genomic changes in the brown anole lizards were difficult to forecast and were not measurably correlated with experimental treatments or other environmental factors. This highlights the challenge of predicting evolutionary responses to multispecies interactions in natural conditions.
Determining whether and how evolution is predictable is an important goal, particularly as anthropogenic disturbances lead to novel species interactions that could modify selective pressures. Here, we use a multigeneration field experiment with brown anole lizards (Anolis sagrei) to test hypotheses about the predictability of evolution. We manipulated the presence/absence of predators and competitors of A. sagrei across 16 islands in the Bahamas that had preexisting brown anole populations. Before the experiment and again after roughly five generations, we measured traits related to locomotor performance and habitat use by brown anoles and used double-digest restriction enzyme-associated DNA sequencing to estimate genome-wide changes in allele frequencies. Although previous work showed that predators and competitors had characteristic effects on brown anole behavior, diet, and population sizes, we found that evolutionary change at both phenotypic and genomic levels was difficult to forecast. Phenotypic changes were contingent on sex and habitat use, whereas genetic change was unpredictable and not measurably correlated with phenotypic changes, experimental treatments, or other environmental factors. Our work shows how differences in ecological context can alter evolutionary outcomes over short timescales and underscores the difficulty of forecasting evolutionary responses to multispecies interactions in natural conditions, even in a well-studied system with ample supporting ecological information.

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