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Evolvability in the context of antibiotic resistance
Timo J B van Eldijk
Weissing group - Theoretical Biology
Van Doorn group - Evolutionary Systems Biology
Molecular Genetics
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Thesis
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Thesis fully internal (DIV)
525
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Dive into the research topics of 'Evolvability in the context of antibiotic resistance'. Together they form a unique fingerprint.
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Keyphrases
Antibiotic Resistance
100%
Evolvability
100%
Bacterial Population
80%
Mutation Rate
80%
Gene Regulatory Network
40%
Clinical Significance
40%
Horizontal Gene Transfer
40%
Plasmid
40%
Environmental Temperature
20%
Local Conditions
20%
Experimental Evolution
20%
Adaptive Evolution
20%
Gene Regulation
20%
Network Architecture
20%
Random mutation
20%
Phenotypic Effects
20%
Rapid Adaptation
20%
Stressful Conditions
20%
Resistance Evolution
20%
Antibiotic Exposure
20%
Adaptive Outcomes
20%
Toxic Environment
20%
Immunology and Microbiology
Antimicrobial Resistance
100%
Bacterial Population
80%
Mutation Rate
80%
Plasmid
40%
Gene Regulatory Network
40%
Horizontal Gene Transfer
40%
Gene Control
20%
Environmental Temperature
20%
Evolutionary Adaptation
20%
Biochemistry, Genetics and Molecular Biology
Antibiotic Resistance
100%
Mutation Rate
80%
Gene Regulatory Network
40%
Plasmid
40%
Horizontal Gene Transfer
40%
Gene Control
20%
Environmental Temperature
20%
Evolutionary Adaptation
20%