Supplementary material from "Spatio-temporal environmental variation mediates geographical differences in phenotypic responses to ocean acidification"

Phenotypic plasticity is expected to play a major adaptive role in the response of species to ocean acidification (OA), by providing broader tolerances to changes in p CO 2 conditions. However, tolerances and sensitivities to future OA may differ among populations within a species because their part...

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Bibliographic Details
Main Authors: Gaitán-Espitia, Juan Diego, Villanueva, Paola A., Lopez, Jorge, Torres, Rodrigo, Navarro, Jorge M., Bacigalupe, Leonardo
Format: Article in Journal/Newspaper
Language:unknown
Published: Figshare 2017
Subjects:
Online Access:https://dx.doi.org/10.6084/m9.figshare.c.3671989.v1
https://figshare.com/collections/Supplementary_material_from_Spatio-temporal_environmental_variation_mediates_geographical_differences_in_phenotypic_responses_to_ocean_acidification_/3671989/1
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Summary:Phenotypic plasticity is expected to play a major adaptive role in the response of species to ocean acidification (OA), by providing broader tolerances to changes in p CO 2 conditions. However, tolerances and sensitivities to future OA may differ among populations within a species because their particular environmental context and genetic backgrounds. Here, using the climatic variability hypothesis (CVH), we explored this conceptual framework in populations of the sea urchin Loxechinus albus across natural fluctuating p CO 2 /pH environments. Although elevated p CO 2 affected the morphology, physiology, development and survival of sea urchin larvae, the magnitude of these effects differed among populations. These differences were consistent with the predictions of the CVH showing greater tolerance to OA in populations experiencing greater local variation in seawater p CO 2 /pH. Considering geographical differences in plasticity, tolerances and sensitivities to increased p CO 2 will provide more accurate predictions for species responses to future OA.