Anticipating the effect of climate change on plants requires understanding its evolutionary consequence on traits and genes in complex realistic environments. How seasonal variation has an impact on the dynamics of adaptation in natural populations remains unclear. We simulated adaptation to different climate change scenarios, grounding our analysis in experimental data and explicitly exploring seasonal variation. Seasonal variation dramatically affected the dynamics of adaptation: Marked seasonality led to genetic differentiation within the population to different seasonal periods, whereas low seasonality led to a single population with fast-evolving fitness. Our results suggest the prevalence of phenotypic plasticity across environmental ...
1. The adaptation of plants to future climatic conditions is crucial for their survival. Not surpris...
Spatially varying selection can lead to population-specific adaptation, which is often recognized at...
Climate change has altered life history events in many plant species; however, little is known about...
Anticipating the effect of climate change on plants requires understanding its evolutionary conseque...
Predicting whether and how populations will adapt to rapid climate change is a critical goal for evo...
Species' responses to climate change depend on the interplay of migration and adaptation, yet we kno...
The evolutionary response of organisms to global climate change is expected to be strongly condition...
1. Increasing temperatures during climate change are known to alter the phenology across diverse pla...
Global climate change is already impacting Earth’s biodiversity, but we are still struggling to unde...
Rapid evolution in annual plants can be quantified by comparing phenotypic and genetic changes betwe...
Seasonality is a critically important aspect of environmental variability, and strongly shapes all a...
Arabidopsis thaliana inhabits diverse climates and exhibits varied phenology across its range. Altho...
Heritable genetic variation is necessary for populations to evolve in response to anthropogenic clim...
Through the lens of evolution, climate change is an agent of natural selection that forces populatio...
Anthropogenic climate change has already altered the timing of major life history transitions, such ...
1. The adaptation of plants to future climatic conditions is crucial for their survival. Not surpris...
Spatially varying selection can lead to population-specific adaptation, which is often recognized at...
Climate change has altered life history events in many plant species; however, little is known about...
Anticipating the effect of climate change on plants requires understanding its evolutionary conseque...
Predicting whether and how populations will adapt to rapid climate change is a critical goal for evo...
Species' responses to climate change depend on the interplay of migration and adaptation, yet we kno...
The evolutionary response of organisms to global climate change is expected to be strongly condition...
1. Increasing temperatures during climate change are known to alter the phenology across diverse pla...
Global climate change is already impacting Earth’s biodiversity, but we are still struggling to unde...
Rapid evolution in annual plants can be quantified by comparing phenotypic and genetic changes betwe...
Seasonality is a critically important aspect of environmental variability, and strongly shapes all a...
Arabidopsis thaliana inhabits diverse climates and exhibits varied phenology across its range. Altho...
Heritable genetic variation is necessary for populations to evolve in response to anthropogenic clim...
Through the lens of evolution, climate change is an agent of natural selection that forces populatio...
Anthropogenic climate change has already altered the timing of major life history transitions, such ...
1. The adaptation of plants to future climatic conditions is crucial for their survival. Not surpris...
Spatially varying selection can lead to population-specific adaptation, which is often recognized at...
Climate change has altered life history events in many plant species; however, little is known about...