Eco‐evolution from deep time to contemporary dynamics: The role of timescales and rate modulators

Author:

Fronhofer Emanuel A.1ORCID,Corenblit Dov23,Deshpande Jhelam N.1,Govaert Lynn4ORCID,Huneman Philippe5ORCID,Viard Frédérique1,Jarne Philippe6,Puijalon Sara7

Affiliation:

1. ISEM, Université de Montpellier, CNRS, IRD, EPHE Montpellier France

2. GEOLAB Université Clermont Auvergne, CNRS Clermont‐Ferrand France

3. Laboratoire écologie fonctionnelle et environnement Université Paul Sabatier, CNRS, INPT, UPS Toulouse France

4. Leibniz Institute of Freshwater Ecology and Inland Fisheries Berlin Germany

5. Institut d'Histoire et de Philosophie des Sciences et des Techniques (CNRS/Université Paris I Sorbonne) Paris France

6. CEFE, UMR 5175, CNRS ‐ Université de Montpellier ‐ Université Paul‐Valéry Montpellier ‐ IRD – EPHE Montpellier Cedex 5 France

7. Univ Lyon, Université Claude Bernard Lyon 1, CNRS, ENTPE, UMR 5023 LEHNA Villeurbanne France

Abstract

AbstractEco‐evolutionary dynamics, or eco‐evolution for short, are often thought to involve rapid demography (ecology) and equally rapid heritable phenotypic changes (evolution) leading to novel, emergent system behaviours. We argue that this focus on contemporary dynamics is too narrow: Eco‐evolution should be extended, first, beyond pure demography to include all environmental dimensions and, second, to include slow eco‐evolution which unfolds over thousands or millions of years. This extension allows us to conceptualise biological systems as occupying a two‐dimensional time space along axes that capture the speed of ecology and evolution. Using Hutchinson's analogy: Time is the ‘theatre’ in which ecology and evolution are two interacting ‘players’. Eco‐evolutionary systems are therefore dynamic: We identify modulators of ecological and evolutionary rates, like temperature or sensitivity to mutation, which can change the speed of ecology and evolution, and hence impact eco‐evolution. Environmental change may synchronise the speed of ecology and evolution via these rate modulators, increasing the occurrence of eco‐evolution and emergent system behaviours. This represents substantial challenges for prediction, especially in the context of global change. Our perspective attempts to integrate ecology and evolution across disciplines, from gene‐regulatory networks to geomorphology and across timescales, from today to deep time.

Funder

Agence Nationale de la Recherche

Centre National de la Recherche Scientifique

Publisher

Wiley

Subject

Ecology, Evolution, Behavior and Systematics

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1. Dispersal evolution and eco-evolutionary dynamics in antagonistic species interactions;Trends in Ecology & Evolution;2024-07

2. The macro-eco-evolutionary interplay between dispersal, competition and landscape structure in generating biodiversity;Philosophical Transactions of the Royal Society B: Biological Sciences;2024-06-24

3. Species interactions and eco-evolutionary dynamics of dispersal: the diversity dependence of dispersal;Philosophical Transactions of the Royal Society B: Biological Sciences;2024-06-24

4. Evolutionary ecology of dispersal in biodiverse spatially structured systems: what is old and what is new?;Philosophical Transactions of the Royal Society B: Biological Sciences;2024-06-24

5. Eco-evolutionary dynamics in changing environments: integrating theory with data;Journal of Evolutionary Biology;2024-06

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