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Achromobacter spp. genetic adaptation in cystic fibrosis
Migle Gabrielaite, Finn C Nielsen,
Helle K Johansen
,
Rasmus L Marvig
Department of Genomic Medicine
Department of Clinical Microbiology
15
Citations (Scopus)
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Dive into the research topics of 'Achromobacter spp. genetic adaptation in cystic fibrosis'. Together they form a unique fingerprint.
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Keyphrases
Cystic Fibrosis
100%
Genetic Adaptation
100%
Achromobacter
100%
Antibiotic Resistance
42%
Ion Transport
28%
Gene Set Enrichment Analysis
28%
Emerging Pathogen
28%
Inorganic Ions
28%
Severe Disease
14%
Genetic Variation
14%
Genome-wide Association Study
14%
Health Problems
14%
Airway
14%
Disease Outcome
14%
Disease Progression
14%
Associated Genes
14%
Genetic Determinants
14%
Energy Production
14%
Lactams
14%
Trimethoprim
14%
Transporter Genes
14%
Resistance Phenotypes
14%
Clone Types
14%
Host Adaptation
14%
Mutational Signatures
14%
Sulfonamide Antibiotics
14%
Antibiotic Resistance Evolution
14%
Intrinsic Antibiotic Resistance
14%
Mutational Changes
14%
Resistance Adaptation
14%
Pathogenomics
14%
Medicine and Dentistry
Cystic Fibrosis
100%
Achromobacter
100%
Evolutionary Adaptation
100%
Antibiotic Resistance
71%
Infection
57%
Patient with Cystic Fibrosis
57%
Pathogen
42%
Ion Transport
28%
Inorganic Ion
28%
Disease
14%
Genetic Transcription
14%
Genetic Variation
14%
Disease Exacerbation
14%
Genome Wide Association Study
14%
RNA Translation
14%
Trimethoprim
14%
Sulfonamide
14%
Lactam
14%
Host Adaptation
14%
Biochemistry, Genetics and Molecular Biology
Cystic Fibrosis
100%
Evolutionary Adaptation
100%
Achromobacter
100%
Antibiotic Resistance
71%
Infectious Agent
42%
Ion Transport
28%
Inorganic Ion
28%
Genetic Variation
14%
Genetics
14%
Genetic Transcription
14%
Genome-Wide Association Study
14%
Energy Yield
14%
Trimethoprim
14%
RNA Translation
14%
Sulfonamide
14%