Plasmids play an important role in bacterial evolution by transferring niche-adaptive functional genes between lineages, thus driving genomic diversification. Bacterial genomes commonly contain multiple, coexisting plasmid replicons, which could fuel adaptation by increasing the range of gene functions available to selection and allowing their recombination. However, plasmid coexistence is difficult to explain because the acquisition of plasmids typically incurs high fitness costs for the host cell. Here, we show that plasmid coexistence was stably maintained without positive selection for plasmid-borne gene functions and was associated with compensatory evolution to reduce fitness costs. In contrast, with positive selection, plasmid coexis...
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...
Plasmids drive genomic diversity in bacteria via horizontal gene transfer [1 and 2]; nevertheless, e...
From PubMed via Jisc Publications RouterPublication status: epublishPlasmids play an important role ...
Plasmids play an important role in bacterial evolution by transferring niche-adaptive functional gen...
Bacterial genomes often contain multiple coexisting plasmids that provide important functions like a...
Conjugative plasmids play a vital role in bacterial adaptation through horizontal gene transfer. Exp...
Conjugative plasmids are widespread and play an important role in bacterial evolution by acceleratin...
Plasmids drive genomic diversity in bacteria via horizontal gene transfer [1, 2]; nevertheless, expl...
Plasmids play an important role in bacterial genome evolution by transferring genes between lineages...
Plasmids drive genomic diversity in bacteria via horizontal gene transfer [1, 2]; nevertheless, expl...
Bacteria-plasmid associations can be mutualistic or antagonistic depending on the strength of positi...
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...
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...
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...
From PubMed via Jisc Publications RouterPublication status: epublishPlasmids play an important role ...
Plasmids play an important role in bacterial evolution by transferring niche-adaptive functional gen...
Bacterial genomes often contain multiple coexisting plasmids that provide important functions like a...
Conjugative plasmids play a vital role in bacterial adaptation through horizontal gene transfer. Exp...
Conjugative plasmids are widespread and play an important role in bacterial evolution by acceleratin...
Plasmids drive genomic diversity in bacteria via horizontal gene transfer [1, 2]; nevertheless, expl...
Plasmids play an important role in bacterial genome evolution by transferring genes between lineages...
Plasmids drive genomic diversity in bacteria via horizontal gene transfer [1, 2]; nevertheless, expl...
Bacteria-plasmid associations can be mutualistic or antagonistic depending on the strength of positi...
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...
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...
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...