Area of research
Molecular Medicine · Endocrinology
Research interest
Research interests include Biology, Plasmid, Microbiology, Salmonella, Colistin, and Enterobacteriaceae.
Antimicrobial resistance and population genomics of emerging multidrug-resistant <i>Salmonella</i> 4,[5],12:i:- in Guangdong, China
Population genomics of emerging multidrug-resistant Salmonella derby from pork and human in Guangdong, China
Colistin-resistance gene <i>mcr</i> in clinical carbapenem-resistant <i>Enterobacteriaceae</i> strains in China, 2014–2019
High-Resolution Metagenomics of Human Gut Microbiota Generated by Nanopore and Illumina Hybrid Metagenome Assembly
Colistin-resistance gene <i>mcr</i> in clinical carbapenem-resistant <i>Enterobacteriaceae</i> strains in China, 2014–2019
A photoelectrochemical biosensor for rapid and ultrasensitive norovirus detection
Transmission of Chromosomal MDR DNA Fragment Encoding Ciprofloxacin Resistance by a Conjugative Helper Plasmid in Salmonella
Emergence of OXA-232 Carbapenemase-Producing <i>Klebsiella pneumoniae</i> That Carries a pLVPK-Like Virulence Plasmid among Elderly Patients in China
Nationwide Surveillance of Clinical Carbapenem-resistant Enterobacteriaceae (CRE) Strains in China
Development of a Novel Quantum Dots and Graphene Oxide Based FRET Assay for Rapid Detection of invA Gene of Salmonella
Recombination of plasmids in a carbapenem-resistant NDM-5-producing clinical Escherichia coli isolate
Characterization of an IncA/C Multidrug Resistance Plasmid in Vibrio alginolyticus
Molecular Characterization of Escherichia coli Strains Isolated from Retail Meat That Harbor <i>bla</i> <sub>CTX-M</sub> and <i>fosA3</i> Genes
Comparative Characterization of CTX-M-64 and CTX-M-14 Provides Insights into the Structure and Catalytic Activity of the CTX-M Class of Enzymes
Residues Distal to the Active Site Contribute to Enhanced Catalytic Activity of Variant and Hybrid β-Lactamases Derived from CTX-M-14 and CTX-M-15