Environments influence the expression of phenotypes of individuals, their progeny, and even their grandprogeny. The duration of environmental effects and how they are modified by subsequent environments are predicted to be targets of natural selection in variable environments. However, little is known about the genetic basis of the temporal persistence of environmental effects and their stability of expression across subsequent environments, or even the extent to which natural genotypes differ in these attributes of environmental effects. We factorially manipulated the thermal environment experienced in three successive generations, to quantify the temporal persistence and environmental stability of temperature effects in contrasting geno...
Predicting whether and how populations will adapt to rapid climate change is a critical goal for evo...
Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evo...
The evolutionary response of organisms to global climate change is expected to be strongly condition...
Transgenerational environmental effects can trigger strong phenotypic variation. However, it is uncl...
Transgenerational environmental effects can trigger strong phenotypic variation. However, it is uncl...
Understanding the genetics of lifetime fitness is crucial to understand a species' ecological prefer...
Understanding the genetics of lifetime fitness is crucial to understand a species' ecological prefer...
The timing of seed germination determines the environment experienced by a plant’s most vulnerable l...
Abstract Background Global increase in ambient temperatures constitute a significant challenge to wi...
1. The genetic basis of flowering time changes across environments, and pleiotropy may limit adaptiv...
1. Increasing temperatures during climate change are known to alter the phenology across diverse pla...
Understanding the strategies that plant populations implement to increase evolutionary responsivenes...
How genetic factors control plant performance under stressful environmental conditions is a central ...
<p>This dissertation examines the processes that generate phenotypic variation in life cycles in sea...
Selection on quantitative trait loci (QTL) may vary among natural environments due to differences in...
Predicting whether and how populations will adapt to rapid climate change is a critical goal for evo...
Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evo...
The evolutionary response of organisms to global climate change is expected to be strongly condition...
Transgenerational environmental effects can trigger strong phenotypic variation. However, it is uncl...
Transgenerational environmental effects can trigger strong phenotypic variation. However, it is uncl...
Understanding the genetics of lifetime fitness is crucial to understand a species' ecological prefer...
Understanding the genetics of lifetime fitness is crucial to understand a species' ecological prefer...
The timing of seed germination determines the environment experienced by a plant’s most vulnerable l...
Abstract Background Global increase in ambient temperatures constitute a significant challenge to wi...
1. The genetic basis of flowering time changes across environments, and pleiotropy may limit adaptiv...
1. Increasing temperatures during climate change are known to alter the phenology across diverse pla...
Understanding the strategies that plant populations implement to increase evolutionary responsivenes...
How genetic factors control plant performance under stressful environmental conditions is a central ...
<p>This dissertation examines the processes that generate phenotypic variation in life cycles in sea...
Selection on quantitative trait loci (QTL) may vary among natural environments due to differences in...
Predicting whether and how populations will adapt to rapid climate change is a critical goal for evo...
Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evo...
The evolutionary response of organisms to global climate change is expected to be strongly condition...