SummaryPlasmids drive genomic diversity in bacteria via horizontal gene transfer [1, 2]; nevertheless, explaining their survival in bacterial populations is challenging [3]. Theory predicts that irrespective of their net fitness effects, plasmids should be lost: when parasitic (costs outweigh benefits), plasmids should decline due to purifying selection [4–6], yet under mutualism (benefits outweigh costs), selection favors the capture of beneficial accessory genes by the chromosome and loss of the costly plasmid backbone [4]. While compensatory evolution can enhance plasmid stability within populations [7–15], the propensity for this to occur across the parasitism-mutualism continuum is unknown. We experimentally evolved Pseudomonas fluores...
The persistence of plasmids in bacterial populations represents a puzzling evolutionary problem with...
The acquisition of plasmids is often accompanied by high fitness costs such that compensatory evolut...
Plasmids are important drivers of bacterial evolution, but it is challenging to understand how plasm...
Plasmids drive genomic diversity in bacteria via horizontal gene transfer [1 and 2]; nevertheless, e...
Plasmids drive genomic diversity in bacteria via horizontal gene transfer [1 and 2]; nevertheless, e...
SummaryPlasmids drive genomic diversity in bacteria via horizontal gene transfer [1, 2]; nevertheles...
Conjugative plasmids play a vital role in bacterial adaptation through horizontal gene transfer. Exp...
The acquisition of plasmids is often accompanied by fitness costs such that compensatory evolution i...
Conjugative plasmids are widespread and play an important role in bacterial evolution by acceleratin...
The global dissemination of plasmids encoding antibiotic resistance represents an urgent issue for h...
Horizontal gene transfer (HGT) is a central evolutionary process enhancing genome diversification a...
Bacteria-plasmid associations can be mutualistic or antagonistic depending on the strength of positi...
Plasmids play an important role in bacterial evolution by transferring niche-adaptive functional gen...
BACKGROUND: Conjugative plasmids play an important role in bacterial evolution by transferring ecolo...
Horizontal gene transfer is a fundamental process in bacterial evolution that can accelerate adaptat...
The persistence of plasmids in bacterial populations represents a puzzling evolutionary problem with...
The acquisition of plasmids is often accompanied by high fitness costs such that compensatory evolut...
Plasmids are important drivers of bacterial evolution, but it is challenging to understand how plasm...
Plasmids drive genomic diversity in bacteria via horizontal gene transfer [1 and 2]; nevertheless, e...
Plasmids drive genomic diversity in bacteria via horizontal gene transfer [1 and 2]; nevertheless, e...
SummaryPlasmids drive genomic diversity in bacteria via horizontal gene transfer [1, 2]; nevertheles...
Conjugative plasmids play a vital role in bacterial adaptation through horizontal gene transfer. Exp...
The acquisition of plasmids is often accompanied by fitness costs such that compensatory evolution i...
Conjugative plasmids are widespread and play an important role in bacterial evolution by acceleratin...
The global dissemination of plasmids encoding antibiotic resistance represents an urgent issue for h...
Horizontal gene transfer (HGT) is a central evolutionary process enhancing genome diversification a...
Bacteria-plasmid associations can be mutualistic or antagonistic depending on the strength of positi...
Plasmids play an important role in bacterial evolution by transferring niche-adaptive functional gen...
BACKGROUND: Conjugative plasmids play an important role in bacterial evolution by transferring ecolo...
Horizontal gene transfer is a fundamental process in bacterial evolution that can accelerate adaptat...
The persistence of plasmids in bacterial populations represents a puzzling evolutionary problem with...
The acquisition of plasmids is often accompanied by high fitness costs such that compensatory evolut...
Plasmids are important drivers of bacterial evolution, but it is challenging to understand how plasm...