Area of research
Genetics · Plant Science
Research interest
Research interests include Biology, Persistence (discontinuity), Multidrug tolerance, Antibiotics, Microbiology, and Antibiotic resistance.
Composition and liquid-to-solid maturation of protein aggregates contribute to bacterial dormancy development and recovery
<i>Bacillus subtilis</i> as a host for natural product discovery and engineering of biosynthetic gene clusters
The rise and future of CRISPR-based approaches for high-throughput genomics
Antibiotic dose and nutrient availability differentially drive the evolution of antibiotic resistance and persistence
Deep mutational scanning of essential bacterial proteins can guide antibiotic development
Environmental, mechanistic and evolutionary landscape of antibiotic persistence
Strigolactones repress nodule development and senescence in pea
Mutations in respiratory complex I promote antibiotic persistence through alterations in intracellular acidity and protein synthesis
Transcription-coupled DNA repair underlies variation in persister awakening and the emergence of resistance
The Dynamic Transition of Persistence toward the Viable but Nonculturable State during Stationary Phase Is Driven by Protein Aggregation
Protein Aggregation as a Bacterial Strategy to Survive Antibiotic Treatment
Ecology and evolution of antibiotic persistence
Bacteria under antibiotic attack: Different strategies for evolutionary adaptation
Ethanol exposure increases mutation rate through error-prone polymerases
Desiccation-induced cell damage in bacteria and the relevance for inoculant production
Definitions and guidelines for research on antibiotic persistence
Bacterial persistence promotes the evolution of antibiotic resistance by increasing survival and mutation rates
Bacterial Heterogeneity and Antibiotic Survival: Understanding and Combatting Persistence and Heteroresistance
General Mechanisms Leading to Persister Formation and Awakening
Publisher Correction: Definitions and guidelines for research on antibiotic persistence
Antibiotics: Combatting Tolerance To Stop Resistance
HokB Monomerization and Membrane Repolarization Control Persister Awakening
High-throughput time-resolved morphology screening in bacteria reveals phenotypic responses to antibiotics
Enrichment of persisters enabled by a ß-lactam-induced filamentation method reveals their stochastic single-cell awakening
GTP Binding Is Necessary for the Activation of a Toxic Mutant Isoform of the Essential GTPase ObgE
Fighting bacterial persistence: Current and emerging anti-persister strategies and therapeutics
Experimental Design, Population Dynamics, and Diversity in Microbial Experimental Evolution
The Persistence-Inducing Toxin HokB Forms Dynamic Pores That Cause ATP Leakage
An integrative view of cell cycle control in Escherichia coli
The Crabtree Effect Shapes the Saccharomyces cerevisiae Lag Phase during the Switch between Different Carbon Sources