6533b81ffe1ef96bd1277251

RESEARCH PRODUCT

Natural selection mediated by seasonal time constraints increases the alignment between evolvability and developmental plasticity

David BergerFrank JohanssonSzymon SniegulaPhillip C. Watts

subject

Male0106 biological sciences0301 basic medicinelife historyOdonata01 natural sciencesG‐matrixphenotypic plasticityDivergenceEvolutionsbiologiG&#8208time constraintsdevelopmental biassopeutuminenNatural selectionluonnonvalintalatitudeAdaptation PhysiologicalBiological EvolutionOriginal ArticleFemaleSeasonsGeneral Agricultural and Biological Sciencesympäristönmuutoksetgenetic constraintsPhotoperiodevoluutioLestesBiology010603 evolutionary biology03 medical and health sciencesGeneticsAnimalsSelection GeneticAdaptationEcology Evolution Behavior and SystematicsSelection (genetic algorithm)Phenotypic plasticityEvolutionary BiologyhentosudenkorennotGenetic VariationOriginal Articlesbiology.organism_classificationmatrixEvolvability030104 developmental biologyEvolutionary biologyDevelopmental plasticityfenotyyppiAdaptation

description

Abstract Phenotypic plasticity can either hinder or promote adaptation to novel environments. Recent studies that have quantified alignments between plasticity, genetic variation, and divergence propose that such alignments may reflect constraints that bias future evolutionary trajectories. Here, we emphasize that such alignments may themselves be a result of natural selection and do not necessarily indicate constraints on adaptation. We estimated developmental plasticity and broad sense genetic covariance matrices (G) among damselfly populations situated along a latitudinal gradient in Europe. Damselflies were reared at photoperiod treatments that simulated the seasonal time constraints experienced at northern (strong constraints) and southern (relaxed constraints) latitudes. This allowed us to partition the effects of (1) latitude, (2) photoperiod, and (3) environmental novelty on G and its putative alignment with adaptive plasticity and divergence. Environmental novelty and latitude did not affect G, but photoperiod did. Photoperiod increased evolvability in the direction of observed adaptive divergence and developmental plasticity when G was assessed under strong seasonal time constraints at northern (relative to southern) photoperiod. Because selection and adaptation under time constraints is well understood in Lestes damselflies, our results suggest that natural selection can shape the alignment between divergence, plasticity, and evolvability.

10.1111/evo.14147http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-450314