Genome rearrangements in Escherichia coli during de novo acquisition of resistance to a single antibiotic or two antibiotics successively
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Summary
The observed correlation between genome rearrangements and specific antibiotic pressure, as well as their presence in independent replicates indicates that these events do not occur randomly.
- Type
- article
- Published
- 2018-12-01
- Cited by
- 17
- References
- 78
- Access
- Open access
- OpenAlex
- https://openalex.org/W2906066200
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:57012569
Keywords
Prophage, Biology, Genome, Genetics, Gene
References
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- Prophages and bacterial genomics: what have we learned so far?
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- Escherichia coli K-12 Mutants Hyperproducing Chromosomal Beta-Lactamase by Gene Repetitions
- Phylogenetic background and virulence profiles of fluoroquinolone-resistant clinical Escherichia coli isolates from the Netherlands.
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- Role for Tandem Duplication and Lon Protease in AcrAB-TolC- Dependent Multiple Antibiotic Resistance (Mar) in an Escherichia coli Mutant without Mutations in marRAB or acrRAB
- Interaction of aminoglycosides with the outer membranes and purified lipopolysaccharide and OmpF porin of Escherichia coli
- SOS Response Induction by ß-Lactams and Bacterial Defense Against Antibiotic Lethality
- Bacterial insertion sequences: their genomic impact and diversity
- Lipid A acylation and bacterial resistance against vertebrate antimicrobial peptides.
Cited by
- Fast median computation for symmetric, orthogonal matrices under the rank distance
- A novel decoy strategy for polymyxin resistance in Acinetobacter baumannii
- Epidemiologic and molecular characterization of β-lactamase-producing multidrug-resistant uropathogenic Escherichia coli isolated from asymptomatic hospitalized patients
- Multiplication of ampC upon Exposure to a Beta-Lactam Antibiotic Results in a Transferable Transposon in Escherichia coli
- Genome Recombination-Mediated tRNA Up-Regulation Conducts General Antibiotic Resistance of Bacteria at Early Stage
- Antimicrobial resistance-associated mutations in chromosomal genes of ESKAPE pathogens
- The influence of oxygen and oxidative stress on de novo acquisition of antibiotic resistance in E. coli and Lactobacillus lactis
- Reactive oxygen species accelerate de novo acquisition of antibiotic resistance in E. coli
- Antimicrobial Resistance Genes and associated Mobile Genetic Elements in Escherichia coli from human, animal and environment.
- De novo acquisition of antibiotic resistance in six species of bacteria
- Collateral sensitivity and cross-resistance in six species of bacteria exposed to six classes of antibiotics
- Driving factors for beta-lactam resistance gene amplification during de novo resistance evolution in E. coli
- Hitchhiking genes and boundaries of AmpC amplicons during amoxicillin resistance development in E. coli
- Driving factors for beta-lactam resistance gene amplification during de novo resistance evolution in E. coli
- Role of RelA-synthesized (p)ppGpp in de novo acquisition of antibiotic resistance in E. coli
- Reactive oxygen species accelerate de novo acquisition of antibiotic resistance in E. coli
- The influence of oxygen and oxidative stress on de novo acquisition of antibiotic resistance in E. coli and Lactobacillus lactis
- De novo acquisition of antibiotic resistance in six species of bacteria
- Genome recombination-mediated tRNA up-regulation conducts general antibiotic resistance of bacteria at early stage
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