Temperature adaptation and its impact on the shape of performance curves inDrosophilapopulations

Author:

Alruiz José M.1ORCID,Peralta-Maraver Ignacio23ORCID,Bozinovic Francisco1ORCID,Santos Mauro4ORCID,Rezende Enrico L.1ORCID

Affiliation:

1. Departamento de Ecología, Center of Applied Ecology and Sustainability (CAPES), Facultad de Ciencias Biológicas, Pontificia Universidad Católica de Chile, Santiago 6513677, Chile

2. Departamento de Ecología e Instituto del Agua, Universidad de Granada, Granada, Spain

3. Research Unit Modeling Nature (MNat), Universidad de Granada, Granada, Spain

4. Departament de Genètica i de Microbiologia, Grup de Genòmica, Bioinformàtica i Biología Evolutiva (GBBE), Universitat Autonòma de Barcelona, Bellaterra, Spain

Abstract

Understanding how species adapt to different temperatures is crucial to predict their response to global warming, and thermal performance curves (TPCs) have been employed recurrently to study this topic. Nevertheless, fundamental questions regarding how thermodynamic constraints and evolution interact to shape TPCs in lineages inhabiting different environments remain unanswered. Here, we studyDrosophila simulansalong a latitudinal gradient spanning 3000 km to test opposing hypotheses based on thermodynamic constrains (hotter-is-better) versus biochemical adaptation (jack-of-all-temperatures) as primary determinants of TPCs variation across populations. We compare thermal responses in metabolic rate and the egg-to-adult survival as descriptors of organismal performance and fitness, respectively, and show that different descriptors of TPCs vary in tandem with mean environmental temperatures, providing strong support tohotter-is-better. Thermodynamic constraints also resulted in a strong negative association between maximum performance and thermal breadth. Lastly, we show that descriptors of TPCs for metabolism and egg-to-adult survival are highly correlated, providing evidence of co-adaptation, and that curves for egg-to-adult survival are systematically narrower and displaced toward lower temperatures. Taken together, our results support the pervasive role of thermodynamics constraining thermal responses inDrosophilapopulations along a latitudinal gradient, that are only partly compensated by evolutionary adaptation.

Funder

FONDECYT

Plan Andaluz de Investigación, Desarrollo e Innovación

ANID PIA/BASAL

Generalitat de Catalunya

Ministerio de Ciencia e Innovación

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Environmental Science,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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