Natural populations persist in complex environments, where biotic stressors, such as pathogen and insect communities, fluctuate temporally and spatially. These shifting biotic pressures generate heterogeneous selective forces that can maintain standing natural variation within a species. To directly test if genes containing causal variation for the Arabidopsis thaliana defensive compounds, glucosinolates (GSL) control field fitness and are therefore subject to natural selection, we conducted a multi-year field trial using lines that vary in only specific causal genes. Interestingly, we found that variation in these naturally polymorphic GSL genes affected fitness in each of our environments but the pattern fluctuated such that highly fit ge...
Local adaptation is critical for species persistence in the face of rapid environmental change, but ...
Mutations create novel genetic variants, but their contribution to variation in fitness and other ph...
International audiencePathogens are often the main selective agents acting in plant communities, the...
Natural populations persist in complex environments, where biotic stressors, such as pathogen and in...
Natural populations persist in complex environments, where biotic stressors, such as pathogen and in...
Natural populations persist in complex environments, where biotic stressors, such as pathogen and in...
Despite the growing number of studies showing that genotype × environment and epistatic interactions...
BackgroundGenome-wide association (GWA) is gaining popularity as a means to study the architecture o...
The molecular mechanisms underlying organismal fitness in complex environments is just beginning to ...
Arabidopsis thaliana is the most prominent model system in plant molecular biology and genetics. Alt...
In the context of global change, predicting the responses of plant communities in an ever-changing b...
Plants produce diverse metabolites to cope with the challenges presented by complex and ever-changin...
Plants have developed sophisticated defense networks to defend against their enemies and increase th...
Despite the fundamental importance of mutation to the evolutionary process, we have little knowledge...
Despite the fundamental importance of mutation to the evolutionary process, we have little knowledge...
Local adaptation is critical for species persistence in the face of rapid environmental change, but ...
Mutations create novel genetic variants, but their contribution to variation in fitness and other ph...
International audiencePathogens are often the main selective agents acting in plant communities, the...
Natural populations persist in complex environments, where biotic stressors, such as pathogen and in...
Natural populations persist in complex environments, where biotic stressors, such as pathogen and in...
Natural populations persist in complex environments, where biotic stressors, such as pathogen and in...
Despite the growing number of studies showing that genotype × environment and epistatic interactions...
BackgroundGenome-wide association (GWA) is gaining popularity as a means to study the architecture o...
The molecular mechanisms underlying organismal fitness in complex environments is just beginning to ...
Arabidopsis thaliana is the most prominent model system in plant molecular biology and genetics. Alt...
In the context of global change, predicting the responses of plant communities in an ever-changing b...
Plants produce diverse metabolites to cope with the challenges presented by complex and ever-changin...
Plants have developed sophisticated defense networks to defend against their enemies and increase th...
Despite the fundamental importance of mutation to the evolutionary process, we have little knowledge...
Despite the fundamental importance of mutation to the evolutionary process, we have little knowledge...
Local adaptation is critical for species persistence in the face of rapid environmental change, but ...
Mutations create novel genetic variants, but their contribution to variation in fitness and other ph...
International audiencePathogens are often the main selective agents acting in plant communities, the...