Area of research
Endocrinology · Immunology
Research interest
Research focused on Vibrio cholerae and Microbiology, with related work in Virulence, Rhizobia, Carbaryl. Notable publications include 'Bile salt–induced intermolecular disulfide bond formation activates Vibrio cholerae virulence', 'Plant nodulation inducers enhance horizontal gene transfer of Azorhizobium caulinodans symbiosis island', and 'Cloning and expression of the carbaryl hydrolase gene mcbA and the identification of a key amino acid necessary for carbaryl hydrolysis'.
A Vibrio-specific T6SS effector reshapes microbial competition by disrupting Vibrio bioenergetics
AcrAB Efflux Pump Plays a Crucial Role in Bile Salts Resistance and Pathogenesis of Klebsiella pneumoniae
The phospholipase effector Tle1 <sup>Vc</sup> promotes <i>Vibrio cholerae</i> virulence by killing competitors and impacting gene expression
Improving the biodegradation of chicken feathers by a Bacillus licheniformis ZSZ6 mutant and application of hydrolysate
Predicting the Postmortem Interval Based on Gravesoil Microbiome Data and a Random Forest Model
mcr-1-Mediated In Vitro Inhibition of Plasmid Transfer Is Reversed by the Intestinal Environment
PAS Domain-Containing Chemoreceptors Influence the Signal Sensing and Intestinal Colonization of Vibrio cholerae
Bacteriophage SRD2021 Recognizing Capsular Polysaccharide Shows Therapeutic Potential in Serotype K47 Klebsiella pneumoniae Infections
Characterization and genome analysis of a broad lytic spectrum bacteriophage P479 against multidrug-resistant Escherichia coli
Phosphatidic acid-mediated binding and mammalian cell internalization of the Vibrio cholerae cytotoxin MakA
O-antigen serves as a two-faced host factor for bacteriophage NJS1 infecting nonmucoid Klebsiella pneumoniae
Comparative genomic analysis of iprodione‐degrading <i>Paenarthrobacter</i> strains reveals the iprodione catabolic molecular mechanism in <i>Paenarthrobacter</i> sp. strain <scp>YJN</scp> ‐5
Substrate preference of carbamate hydrolase CehA reveals its environmental behavior
Favorable alleles mining for gelatinization temperature, gel consistency and amylose content in Oryza sativa by association mapping
Knockout of three aminopeptidase N genes does not affect susceptibility of <i>Helicoverpa armigera</i> larvae to <i>Bacillus thuringiensis</i> Cry1A and Cry2A toxins
Hypermutation-induced in vivo oxidative stress resistance enhances Vibrio cholerae host adaptation
CitAB Two-Component System-Regulated Citrate Utilization Contributes to <i>Vibrio cholerae</i> Competitiveness with the Gut Microbiota
Terrimonas soli sp. nov., isolated from farmland soil
Gluconeogenic growth of Vibrio cholerae is important for competing with host gut microbiota
Cloning and expression of the carbaryl hydrolase gene mcbA and the identification of a key amino acid necessary for carbaryl hydrolysis
Identification of the key amino acid sites of the carbendazim hydrolase (MheI) from a novel carbendazim-degrading strain Mycobacterium sp. SD-4
OxyR-activated expression of Dps is important for Vibrio cholerae oxidative stress resistance and pathogenesis
OxyR2 Modulates OxyR1 Activity and Vibrio cholerae Oxidative Stress Response
Structural and Functional Characterization of the FadR Regulatory Protein from Vibrio alginolyticus
Plant nodulation inducers enhance horizontal gene transfer of <i>Azorhizobium caulinodans</i> symbiosis island
Identification and functional characterization of the sulfate transporter gene GmSULTR1;2b in soybean
Thiol‐based switch mechanism of virulence regulator AphB modulates oxidative stress response in <i>Vibrio cholerae</i>
Functional RelBE-Family Toxin-Antitoxin Pairs Affect Biofilm Maturation and Intestine Colonization in Vibrio cholerae
Dual Zinc Transporter Systems in Vibrio cholerae Promote Competitive Advantages over Gut Microbiome
Differential Thiol-Based Switches Jump-Start Vibrio cholerae Pathogenesis