Local adaptation seems to be common in natural systems, but the genetic causes of its evolution remain poorly understood. Here we characterize the genetic causes of trade-offs generating local adaptation in populations of Pseudomonas fluorescens that had previously been evolved for specialization on three different carbon resources. We measured the fitness effects of mutations that arose during selection in that environment and in alternative environments to quantify the degree of specialization. We find that all mutations are beneficial in the environment of selection and that those arising later during adaptation are associated with increasingly antagonistic effects in alternative environments compared with those arising earlier, consiste...
Local adaptation occurs in populations when multiple subsets of the same population are exposed to d...
Beneficial mutations fuel adaptation by altering phenotypes that enhance the fit of organisms to the...
The fitness effect of a mutation can depend on both its genetic background and the external environm...
Local adaptation seems to be common in natural systems, but the genetic causes of its evolution rema...
Local adaptation seems to be common in natural systems, but the genetic causes of its evolution rema...
The repeatability of adaptive evolution depends on the ruggedness of the underlying adaptive landsca...
The repeatability of adaptive evolution depends on the ruggedness of the underlying adaptive landsca...
The repeatability of adaptive evolution depends on the ruggedness of the underlying adaptive landsca...
Environmental heterogeneity is considered a general explanation for phenotypic diversification, part...
Environmental heterogeneity is considered a general explanation for phenotypic diversification, part...
Environmental heterogeneity is considered a general explanation for phenotypic diversification, part...
Abundant ecological opportunity is thought to drive adaptation and diversification. The presence of ...
Abundant ecological opportunity is thought to drive adaptation and diversification. The presence of ...
Environmental heterogeneity is considered a general explanation for phenotypic diversification, part...
Understanding adaptation by natural selection requires understanding the genetic factors that determ...
Local adaptation occurs in populations when multiple subsets of the same population are exposed to d...
Beneficial mutations fuel adaptation by altering phenotypes that enhance the fit of organisms to the...
The fitness effect of a mutation can depend on both its genetic background and the external environm...
Local adaptation seems to be common in natural systems, but the genetic causes of its evolution rema...
Local adaptation seems to be common in natural systems, but the genetic causes of its evolution rema...
The repeatability of adaptive evolution depends on the ruggedness of the underlying adaptive landsca...
The repeatability of adaptive evolution depends on the ruggedness of the underlying adaptive landsca...
The repeatability of adaptive evolution depends on the ruggedness of the underlying adaptive landsca...
Environmental heterogeneity is considered a general explanation for phenotypic diversification, part...
Environmental heterogeneity is considered a general explanation for phenotypic diversification, part...
Environmental heterogeneity is considered a general explanation for phenotypic diversification, part...
Abundant ecological opportunity is thought to drive adaptation and diversification. The presence of ...
Abundant ecological opportunity is thought to drive adaptation and diversification. The presence of ...
Environmental heterogeneity is considered a general explanation for phenotypic diversification, part...
Understanding adaptation by natural selection requires understanding the genetic factors that determ...
Local adaptation occurs in populations when multiple subsets of the same population are exposed to d...
Beneficial mutations fuel adaptation by altering phenotypes that enhance the fit of organisms to the...
The fitness effect of a mutation can depend on both its genetic background and the external environm...