Ecological and evolutionary consequences of changing seasonality.

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Auteurs principaux: Hernández-Carrasco, Daniel, Tylianakis, Jason M, Lytle, David A, Tonkin, Jonathan D
Format: Artículo científico
Langue:en
Publié: Science (New York, N.Y.) 2025
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author Hernández-Carrasco, Daniel
Tylianakis, Jason M
Lytle, David A
Tonkin, Jonathan D
author_facet Hernández-Carrasco, Daniel
Tylianakis, Jason M
Lytle, David A
Tonkin, Jonathan D
Hernández-Carrasco, Daniel
Tylianakis, Jason M
Lytle, David A
Tonkin, Jonathan D
collection PubMed - marine biology
contents Ecological and evolutionary consequences of changing seasonality. Hernández-Carrasco, Daniel Tylianakis, Jason M Lytle, David A Tonkin, Jonathan D Animals Adaptation, Physiological Biodiversity Biological Evolution Climate Change Ecosystem Population Dynamics Seasons Climate change and other anthropogenic drivers alter seasonal regimes across freshwater, terrestrial, and marine biomes. Seasonal patterns affect ecological and evolutionary processes at different ecological levels through changes to gene frequencies, species traits, population dynamics, species interactions, and different facets of biodiversity. We synthesize the mechanisms that determine biological responses to seasonality, to demonstrate how their interconnections can propagate impacts of altered seasonal patterns and complicate predictions. Given the potential for nonlinearities and the propagation of impacts across levels of ecological complexity, we advocate the use of mechanistic approaches that acknowledge species-specific responses to the environment and potential seasonal adaptations.
format Artículo científico
id pubmed_40440396
institution PubMed
language en
publishDate 2025
publisher Science (New York, N.Y.)
record_format pubmed
spellingShingle Ecological and evolutionary consequences of changing seasonality.
Hernández-Carrasco, Daniel
Tylianakis, Jason M
Lytle, David A
Tonkin, Jonathan D
Animals
Adaptation, Physiological
Biodiversity
Biological Evolution
Climate Change
Ecosystem
Population Dynamics
Seasons
Ecological and evolutionary consequences of changing seasonality. Hernández-Carrasco, Daniel Tylianakis, Jason M Lytle, David A Tonkin, Jonathan D Animals Adaptation, Physiological Biodiversity Biological Evolution Climate Change Ecosystem Population Dynamics Seasons Climate change and other anthropogenic drivers alter seasonal regimes across freshwater, terrestrial, and marine biomes. Seasonal patterns affect ecological and evolutionary processes at different ecological levels through changes to gene frequencies, species traits, population dynamics, species interactions, and different facets of biodiversity. We synthesize the mechanisms that determine biological responses to seasonality, to demonstrate how their interconnections can propagate impacts of altered seasonal patterns and complicate predictions. Given the potential for nonlinearities and the propagation of impacts across levels of ecological complexity, we advocate the use of mechanistic approaches that acknowledge species-specific responses to the environment and potential seasonal adaptations.
title Ecological and evolutionary consequences of changing seasonality.
topic Animals
Adaptation, Physiological
Biodiversity
Biological Evolution
Climate Change
Ecosystem
Population Dynamics
Seasons
url https://pubmed.ncbi.nlm.nih.gov/40440396/