In rapidly changing environments, selection history may impact the dynamics of adaptation. Mutations selected in one environment may result in pleiotropic fitness trade-offs in subsequent novel environments, slowing the rates of adaptation. Epistatic interactions between mutations selected in sequential stressful environments may slow or accelerate subsequent rates of adaptation, depending on the nature of that interaction. We explored the dynamics of adaptation during sequential exposure to herbicides with different modes of action in Chlamydomonas reinhardtii. Evolution of resistance to two of the herbicides was largely independent of selection history. For carbetamide, previous adaptation to other herbicide modes of action positively imp...
Adaptation to ecologically complex environments can provide insights into the evolutionary dynamics ...
Nature repurposes proteins via evolutionary processes. During evolution, the fitness landscapes of p...
The repeatability of adaptive evolution depends on the ruggedness of the underlying adaptive landsca...
In rapidly changing environments, selection history may impact the dynamics of adaptation. Mutations...
In rapidly changing environments, selection history may impact the dynamics of adaptation. Mutations...
Pleiotropic fitness trade-offs will be key determinants of the evolutionary dynamics of selection fo...
Pleiotropic fitness trade-offs will be key determinants of the evolutionary dynamics of selection fo...
The contribution to an organism's phenotype from one genetic locus may depend upon the status of oth...
Local adaptation seems to be common in natural systems, but the genetic causes of its evolution rema...
The genetic recovery of resistant populations released from pesticide exposure is accelerated by the...
Selection in novel environments can lead to a coordinated evolutionary response across a suite of ch...
Epistatic interactions between resistance mutations in antibiotic-free environments potentially play...
Evolutionary rescue following environmental change requires mutations permitting population growth i...
Despite the growing number of studies showing that genotype × environment and epistatic interactions...
Adaptation to ecologically complex environments can provide insights into the evolutionary dynamics ...
Nature repurposes proteins via evolutionary processes. During evolution, the fitness landscapes of p...
The repeatability of adaptive evolution depends on the ruggedness of the underlying adaptive landsca...
In rapidly changing environments, selection history may impact the dynamics of adaptation. Mutations...
In rapidly changing environments, selection history may impact the dynamics of adaptation. Mutations...
Pleiotropic fitness trade-offs will be key determinants of the evolutionary dynamics of selection fo...
Pleiotropic fitness trade-offs will be key determinants of the evolutionary dynamics of selection fo...
The contribution to an organism's phenotype from one genetic locus may depend upon the status of oth...
Local adaptation seems to be common in natural systems, but the genetic causes of its evolution rema...
The genetic recovery of resistant populations released from pesticide exposure is accelerated by the...
Selection in novel environments can lead to a coordinated evolutionary response across a suite of ch...
Epistatic interactions between resistance mutations in antibiotic-free environments potentially play...
Evolutionary rescue following environmental change requires mutations permitting population growth i...
Despite the growing number of studies showing that genotype × environment and epistatic interactions...
Adaptation to ecologically complex environments can provide insights into the evolutionary dynamics ...
Nature repurposes proteins via evolutionary processes. During evolution, the fitness landscapes of p...
The repeatability of adaptive evolution depends on the ruggedness of the underlying adaptive landsca...