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We found that E. coli can be a key driver of selection for a high-fitness antibiotic resistant K. pneumoniae strain in complex communities. Higher-order interactions with other community members could enhance or decrease the selective advantage of the resistant mutant.

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Mechanistically, glyR mutations upregulate the glycoporin GlyP, improving growth in glycerol-rich niches but carrying costs elsewhere. These mutations are under conditional positive selection in clinical isolates, showing how microbiota context can shape the evolution of resistance.

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Overall, we demonstrate that specific microbiota compositions affect the fitness of resistant strains through carbohydrate competition, offering a path towards microbiota‑based interventions that actively counter‑select antibiotic-resistant strains without disrupting susceptible community members.

Ответ для Typas Lab

Great collaboration inside and outside @embl.org @EMBLHeidelberg with @savitski-lab.bsky.social @zimmermannlab.bsky.social @sarsarela.bsky.social y.social @linairmi.bsky.social Gad Frankel @imperialcollegeldn.bsky.social and others #Microbiome #AntibioticResistance #AMR