Identifying the genes underlying rapid evolutionary changes, describing their function and ascertaining the environmental pressures that determine fitness are the central elements needed for understanding of evolutionary processes and phenotypic changes that improve the fitness of populations. It has been hypothesized that rapid adaptive changes in new environments may contribute to the rapid spread and success of invasive plants and animals. As yet, studies of adaptation during invasion are scarce, as is knowledge of the genes underlying adaptation, especially in multiple replicated invasions. Here, we quantified how genotype frequencies change during invasions, resulting in rapid evolution of naturalized populations. We used six fully rep...
The margins of an expanding range are predicted to be challenging environments for adaptation. Margi...
The margins of an expanding range are predicted to be challenging environments for adaptation. Margi...
The potential for rapid evolution in invasive species makes them useful for studying adaptive respon...
Identifying the genes underlying rapid evolutionary changes, describing their function and ascertain...
Biological invasions are 'natural' experiments that can improve our understanding of contemporary ev...
Gene flow between populations may either support local adaptation by supplying genetic variation on ...
Biological invasions are ‘natural’ experiments that can improve our understanding of contemporary ev...
Biological invasions are ‘natural’ experiments that can improve our understanding of contemporary ev...
Biological invasions are ‘natural’ experiments that can improve our understanding of contemporary ev...
Gene flow between populations may either support local adaptation by supplying genetic variation on ...
Gene flow between populations may either support local adaptation by supplying genetic variation on ...
Gene flow between populations may either support local adaptation by supplying genetic variation on ...
The margins of an expanding range are predicted to be challenging environments for adaptation. Margi...
The potential for rapid evolution in invasive species makes them useful for studying adaptive respon...
The potential for rapid evolution in invasive species makes them useful for studying adaptive respon...
The margins of an expanding range are predicted to be challenging environments for adaptation. Margi...
The margins of an expanding range are predicted to be challenging environments for adaptation. Margi...
The potential for rapid evolution in invasive species makes them useful for studying adaptive respon...
Identifying the genes underlying rapid evolutionary changes, describing their function and ascertain...
Biological invasions are 'natural' experiments that can improve our understanding of contemporary ev...
Gene flow between populations may either support local adaptation by supplying genetic variation on ...
Biological invasions are ‘natural’ experiments that can improve our understanding of contemporary ev...
Biological invasions are ‘natural’ experiments that can improve our understanding of contemporary ev...
Biological invasions are ‘natural’ experiments that can improve our understanding of contemporary ev...
Gene flow between populations may either support local adaptation by supplying genetic variation on ...
Gene flow between populations may either support local adaptation by supplying genetic variation on ...
Gene flow between populations may either support local adaptation by supplying genetic variation on ...
The margins of an expanding range are predicted to be challenging environments for adaptation. Margi...
The potential for rapid evolution in invasive species makes them useful for studying adaptive respon...
The potential for rapid evolution in invasive species makes them useful for studying adaptive respon...
The margins of an expanding range are predicted to be challenging environments for adaptation. Margi...
The margins of an expanding range are predicted to be challenging environments for adaptation. Margi...
The potential for rapid evolution in invasive species makes them useful for studying adaptive respon...