Variable environments may result in the evolution of adaptive phenotypic plasticity when cues reliably indicate an appropriate phenotype-environment match. Although adaptive plasticity is well established for phenological traits expressed across environments, local differentiation in norms of reaction is less well studied. The switch from the production of regular fronds to overwintering "turions" in the greater duckweed Spirodela polyrhiza is vital to fitness and is expressed as a norm of reaction induced by falling temperatures associated with the onset of winter. However, the optimal norm of reaction to temperature is expected to differ across latitudes. Here, we test the hypothesis that a gradient in the length and predictability of gro...
To better understand the evolution of phenotypic plasticity and thermoregulation and their potential...
Phenotypic plasticity has been suggested as the main mechanism for species persistence under a globa...
Theoretical models on the evolution of phenotypic plasticity predict a zone of canalization where re...
Organismal persistence attests to adaptive response to environmental variation. Diversification bet...
Latitudinal variation in thermal reaction norms of key fitness traits may inform about the response ...
Theoretical models on the evolution of phenotypic plasticity predict a zone of canalization where re...
Adaptive phenotypic plasticity in thermally sensitive traits, that is, thermal acclimation, generall...
1. The adaptation of plants to future climatic conditions is crucial for their survival. Not surpris...
Under global warming, the survival of many populations of sedentary organisms in seasonal environmen...
Latitudinal variation in thermal reaction norms of key fitness traits may inform about the response ...
Predicting plastic responses is crucial to assess plant species potential to adapt to climate change...
Phenotypic plasticity has been suggested as the main mechanism for species persistence under a globa...
Phenotypic plasticity may allow species to cope with environmental variation. The study of thermal p...
1. Understanding species' abilities to cope with changing climate is a key prerequisite for pred...
Species are commonly distributed along latitudinal and elevational gradients of growing season lengt...
To better understand the evolution of phenotypic plasticity and thermoregulation and their potential...
Phenotypic plasticity has been suggested as the main mechanism for species persistence under a globa...
Theoretical models on the evolution of phenotypic plasticity predict a zone of canalization where re...
Organismal persistence attests to adaptive response to environmental variation. Diversification bet...
Latitudinal variation in thermal reaction norms of key fitness traits may inform about the response ...
Theoretical models on the evolution of phenotypic plasticity predict a zone of canalization where re...
Adaptive phenotypic plasticity in thermally sensitive traits, that is, thermal acclimation, generall...
1. The adaptation of plants to future climatic conditions is crucial for their survival. Not surpris...
Under global warming, the survival of many populations of sedentary organisms in seasonal environmen...
Latitudinal variation in thermal reaction norms of key fitness traits may inform about the response ...
Predicting plastic responses is crucial to assess plant species potential to adapt to climate change...
Phenotypic plasticity has been suggested as the main mechanism for species persistence under a globa...
Phenotypic plasticity may allow species to cope with environmental variation. The study of thermal p...
1. Understanding species' abilities to cope with changing climate is a key prerequisite for pred...
Species are commonly distributed along latitudinal and elevational gradients of growing season lengt...
To better understand the evolution of phenotypic plasticity and thermoregulation and their potential...
Phenotypic plasticity has been suggested as the main mechanism for species persistence under a globa...
Theoretical models on the evolution of phenotypic plasticity predict a zone of canalization where re...