Area of research
Molecular Medicine · Endocrinology
Research interest
Research interests include Biology, Escherichia coli, Mycoplasma hyopneumoniae, Antibiotic resistance, Plasmid, and Virulence.
Parameters for one health genomic surveillance of Escherichia coli from Australia
Occurrence of “under-the-radar” antibiotic resistance in anthropogenically affected produce
The faecal microbiome of the Australian silver gull contains phylogenetically diverse ExPEC, aEPEC and Escherichia coli carrying the transmissible locus of stress tolerance
Comparative genomic analysis of ESBL-selected and non-selected Escherichia coli in Australian wastewater: Elucidating differences in diversity, antimicrobial resistance, and virulence profiles
Integrative omics identifies conserved and pathogen-specific responses of sepsis-causing bacteria
Expanding the range of the respiratory infectome in Australian feedlot cattle with and without respiratory disease using metatranscriptomics
One Health Determinants of Escherichia coli Antimicrobial Resistance in Humans in the Community: An Umbrella Review
Impacts of coprophagic foraging behaviour on the avian gut microbiome
Genomic analysis of Citrobacter from Australian wastewater and silver gulls reveals novel sequence types carrying critically important antibiotic resistance genes
A role for ColV plasmids in the evolution of pathogenic Escherichia coli ST58
Whole-Genome Sequence Analysis of an Extensively Drug-Resistant Salmonella enterica Serovar Agona Isolate from an Australian Silver Gull (<i>Chroicocephalus novaehollandiae</i>) Reveals the Acquisition of Multidrug Resistance Plasmids
Diversity of P1 phage-like elements in multidrug resistant Escherichia coli
Vibrio cholerae residing in food vacuoles expelled by protozoa are more infectious in vivo
Z/I1 Hybrid Virulence Plasmids Carrying Antimicrobial Resistance genes in S. Typhimurium from Australian Food Animal Production
A Comprehensive Guide for Performing Sample Preparation and Top-Down Protein Analysis
Post-translational processing targets functionally diverse proteins in <i>Mycoplasma hyopneumoniae</i>
Proteolytic processing of the cilium adhesin MHJ_0194 (P123<sub>J</sub>) in<i>M</i><i>ycoplasma hyopneumoniae</i>generates a functionally diverse array of cleavage fragments that bind multiple host molecules
Evaluation of recombinant Mycoplasma hyopneumoniae P97/P102 paralogs formulated with selected adjuvants as vaccines against mycoplasmal pneumonia in pigs
Characterization of Cleavage Events in the Multifunctional Cilium Adhesin Mhp684 (P146) Reveals a Mechanism by Which Mycoplasma hyopneumoniae Regulates Surface Topography
Modification of the Campylobacter jejuni N-Linked Glycan by EptC Protein-mediated Addition of Phosphoethanolamine
Conserved anchorless surface proteins as group A streptococcal vaccine candidates
Evaluation of clinical, histological and immunological changes and qPCR detection of Mycoplasma hyopneumoniae in tissues during the early stages of mycoplasmal pneumonia in pigs after experimental challenge with two field isolates
<i>Mycoplasma hyopneumoniae</i> Surface Proteins Mhp385 and Mhp384 Bind Host Cilia and Glycosaminoglycans and Are Endoproteolytically Processed by Proteases That Recognize Different Cleavage Motifs