Range‐wide intraspecific variation reflects past adaptation to climate in a gypsophile Mediterranean shrub

Author:

Blanco‐Sánchez Mario1ORCID,Ramírez‐Valiente José Alberto2ORCID,Ramos‐Muñoz Marina1ORCID,Pías Beatriz3ORCID,Franks Steven J.4ORCID,Escudero Adrián1ORCID,Matesanz Silvia1ORCID

Affiliation:

1. Área de Biodiversidad y Conservación Universidad Rey Juan Carlos Madrid Spain

2. Centre de Recerca Ecològica i Aplicacions Forestals (CREAF) Barcelona Spain

3. Departamento de Biodiversidad, Ecología y Evolución Universidad Complutense de Madrid Madrid Spain

4. Department of Biological Sciences Fordham University Bronx New York USA

Abstract

Abstract Phenotypic differences among populations stem from the interaction between neutral and adaptive processes, and phenotypic plasticity. Although clinal trait variation along climatic gradients often evolves in widely distributed species, it is unknown whether substrate specialization, such as that of Mediterranean gypsum plants, has constrained adaptation to climate. Using a common garden experiment with two contrasting watering treatments, we quantified phenotypic plasticity, assessed evidence for footprints of selection using FST – QST comparisons, and evaluated the ecological factors driving genetically based phenotypic differentiation of 11 populations encompassing the full environmental range of the gypsum shrub Lepidium subulatum. We found evidence for genetic differentiation among populations related to climatic differences, with populations from warmer and drier sites showing lower specific leaf area and leaf N, earlier phenology, greater water use efficiency and greater fitness. Multiple lines of evidence suggest that this differentiation was driven by past divergent selection rather than neutral processes. All populations showed high phenotypic plasticity, indicating that plasticity has not been selected against, even in populations from sites with harsher climatic conditions. Synthesis. Our results indicate that despite strong substrate specialization, adaptive differentiation related to climatic gradients occurs in this species. However, we also found that populations from mesic sites may be particularly vulnerable to future climate change given their relatively lower fitness under both wet and dry conditions.

Funder

Comunidad de Madrid

Ministerio de Economía y Competitividad

Publisher

Wiley

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