Population size modulates the transition from gene amplification-mediated heteroresistance to stable resistance

Abstract Heteroresistance is characterized by antibiotic-resistant subpopulations which can be underpinned by reversible gene duplication-amplification (GDA) of antibiotic resistance genes. It is often considered a precursor of stable resistance mutations. We investigated the evolutionary dynamics between GDA-mediated heteroresistance and stable resistance mutations in a clinical Enterobacter cloacae complex isolate. Exposure to ceftazidime resulted in enrichment of ampC β-lactamase GDAs in a concentration-dependent manner. Long-term exposure and high concentrations of ceftazidime selected for stable resistance mutations in dacB and ampD , a decrease of GDAs and a loss of population heterogeneity. Evolution experiments and mathematical modelling suggest that, in large populations, competition with GDA-carrying subpopulations can prolong fixation of stable resistance mutations in the population. By contrast, heteroresistance rescues small populations upon sudden antibiotic challenge, thereby acting as a precursor of stable resistance. This study highlights a previously underappreciated dual, population-size dependent role for GDAs in the transition from heteroresistance to stable resistance.

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Publication Details

Journal
npj Antimicrobials and Resistance
Published
2026-10-09
DOI
https://doi.org/10.1038/s44259-026-00280-x
Primary Topic
Antibiotic Resistance in Bacteria
Type
article
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article

Population size modulates the transition from gene amplification-mediated heteroresistance to stable resistance

Dennis Hanke, Niclas Nordholt, Frank Schreiber, Fereshteh Ghazisaeedi et al.
npj Antimicrobials and Resistance
Antibiotic Resistance in Bacteria
article

Population size modulates the transition from gene amplification-mediated heteroresistance to stable resistance

Dennis Hanke, Niclas Nordholt, Frank Schreiber, Fereshteh Ghazisaeedi, Johannes Kupke, Yuwen Fang, Marcus Fulde, Karsten Tedin
article en

Abstract

Abstract Heteroresistance is characterized by antibiotic-resistant subpopulations which can be underpinned by reversible gene duplication-amplification (GDA) of antibiotic resistance genes. It is often considered a precursor of stable resistance mutations. We investigated the evolutionary dynamics between GDA-mediated heteroresistance and stable resistance mutations in a clinical Enterobacter cloacae complex isolate. Exposure to ceftazidime resulted in enrichment of ampC β-lactamase GDAs in a concentration-dependent manner. Long-term exposure and high concentrations of ceftazidime selected for stable resistance mutations in dacB and ampD , a decrease of GDAs and a loss of population heterogeneity. Evolution experiments and mathematical modelling suggest that, in large populations, competition with GDA-carrying subpopulations can prolong fixation of stable resistance mutations in the population. By contrast, heteroresistance rescues small populations upon sudden antibiotic challenge, thereby acting as a precursor of stable resistance. This study highlights a previously underappreciated dual, population-size dependent role for GDAs in the transition from heteroresistance to stable resistance.

npj Antimicrobials and ResistanceVol. 4(1)
Federal Institute For Materials Research and Testing (DE), University of Veterinary Medicine Hannover, Foundation (DE), Freie Universität Berlin (DE)
Openalex Percentile: Top 22%
Antibiotic Resistance in Bacteria
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Population size modulates the transition from gene amplification-mediated heteroresistance to stable resistance — Dennis Hanke, Niclas Nordholt, et al. · npj Antimicrobials and Resistance (2026) | TGRS Research Map | TGRS