It has recently become feasible to study the basis and nature of evolutionary changes in bacteria in an experimental setting using defined media. However, assessment of adaptive changes in complex environments has been scarce. In an effort to describe the responses in such environments, we unravel, in a comparative approach, the transcriptional and genetic profiles of 19 Escherichia coli strains that evolved in Luria Bertani medium under three different oxygen regimes over 1000 generations. A positive relationship between upregulation of gene expression and the number of mutations was observed, suggesting that a number of metabolic pathways were activated. Phenotypic polymorphisms were observed in parallel cultures, of which some were relat...
We investigated the relationship between genomic and phenotypic evolution among replicate population...
Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their gen...
Twelve populations of Escherichia coli evolved in and adapted to a glucose-limited environment from ...
It has recently become feasible to study the basis and nature of evolutionary changes in bacteria in...
In a study aiming to assess bacterial evolution in complex growth media, we evaluated the long-term ...
Genotype-fitness maps of evolution have been well characterized for biological components, such as R...
International audienceWe investigated the relationship between genomic and phenotypic evolution amon...
Despite its centrality to Darwin’s theory of evolution by natural selection, the process of adaptati...
We investigated the relationship between genomic and phenotypic evolution among replicate population...
Experimental evolution of bacterial populations in the laboratory has led to identification of sever...
Vijayendran C. Proteome, transcriptome and metabolome plasticity in closely related strains of Esche...
Adaptive laboratory evolution (ALE) has emerged as a valuable method by which to investigate microbi...
Adaptive laboratory evolution (ALE) has emerged as a valuable method by which to investigate microbi...
International audienceThe evolutionary success of bacteria depends greatly on their capacity to cont...
We investigated the relationship between genomic and phenotypic evolution among replicate population...
Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their gen...
Twelve populations of Escherichia coli evolved in and adapted to a glucose-limited environment from ...
It has recently become feasible to study the basis and nature of evolutionary changes in bacteria in...
In a study aiming to assess bacterial evolution in complex growth media, we evaluated the long-term ...
Genotype-fitness maps of evolution have been well characterized for biological components, such as R...
International audienceWe investigated the relationship between genomic and phenotypic evolution amon...
Despite its centrality to Darwin’s theory of evolution by natural selection, the process of adaptati...
We investigated the relationship between genomic and phenotypic evolution among replicate population...
Experimental evolution of bacterial populations in the laboratory has led to identification of sever...
Vijayendran C. Proteome, transcriptome and metabolome plasticity in closely related strains of Esche...
Adaptive laboratory evolution (ALE) has emerged as a valuable method by which to investigate microbi...
Adaptive laboratory evolution (ALE) has emerged as a valuable method by which to investigate microbi...
International audienceThe evolutionary success of bacteria depends greatly on their capacity to cont...
We investigated the relationship between genomic and phenotypic evolution among replicate population...
Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their gen...
Twelve populations of Escherichia coli evolved in and adapted to a glucose-limited environment from ...