Area of research
Endocrinology · Food Science
Research interest
Research focused on Escherichia coli and Microbiology, with related work in Virulence, DNA methylation, Gene. Notable publications include 'Escherichia coli Isolates That Carry vat , fyuA , chuA , and yfcV Efficiently Colonize the Urinary Tract', 'Correction: Corrigendum: DNA methylome in spleen of avian pathogenic escherichia coli-challenged broilers and integration with mRNA expression', and 'ArcA Controls Metabolism, Chemotaxis, and Motility Contributing to the Pathogenicity of Avian Pathogenic Escherichia coli'.
Identification of Host Adaptation Genes in Extraintestinal Pathogenic Escherichia coli during Infection in Different Hosts
Extraintestinal pathogenic <i>Escherichia coli</i> increase extracytoplasmic polysaccharide biosynthesis for serum resistance in response to bloodstream signals
O-specific polysaccharide confers lysozyme resistance to extraintestinal pathogenic <i>Escherichia coli</i>
Novel MicroRNA Involved in Host Response to Avian Pathogenic Escherichia coli Identified by Deep Sequencing and Integration Analysis
Genetic Characterization of ExPEC-Like Virulence Plasmids among a Subset of NMEC
Correction: Corrigendum: DNA methylome in spleen of avian pathogenic escherichia coli-challenged broilers and integration with mRNA expression
ArcA Controls Metabolism, Chemotaxis, and Motility Contributing to the Pathogenicity of Avian Pathogenic Escherichia coli
DNA methylome in spleen of avian pathogenic escherichia coli-challenged broilers and integration with mRNA expression
Species-specific and pathotype-specific binding of bacteria to zymogen granule membrane glycoprotein 2 (GP2)
Escherichia coli Isolates That Carry <i>vat</i> , <i>fyuA</i> , <i>chuA</i> , and <i>yfcV</i> Efficiently Colonize the Urinary Tract
Deep Sequencing-Based Transcriptome Analysis of Chicken Spleen in Response to Avian Pathogenic Escherichia coli (APEC) Infection