Area of research
Ecology, Evolution, Behavior and Systematics · Parasitology
Research interest
Research interests include Biology, Mycoplasma hyopneumoniae, Bacterial adhesin, Cleavage (geology), Outbreak, and Mollicutes.
Comparative genomic analysis of ESBL-selected and non-selected Escherichia coli in Australian wastewater: Elucidating differences in diversity, antimicrobial resistance, and virulence profiles
Genomic analysis of Citrobacter from Australian wastewater and silver gulls reveals novel sequence types carrying critically important antibiotic resistance genes
Mechanical transfer of Theileria orientalis: possible roles of biting arthropods, colostrum and husbandry practices in disease transmission
Post-translational processing targets functionally diverse proteins in <i>Mycoplasma hyopneumoniae</i>
Detection of Theileria orientalis genotypes in Haemaphysalis longicornis ticks from southern Australia
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
Identification and characterisation of an ostreid herpesvirus-1 microvariant (OsHV-1 µ-var) in Crassostrea gigas (Pacific oysters) in Australia
Perspectives on Treatment of Metastatic Castration-Resistant Prostate Cancer
Characterization of Cleavage Events in the Multifunctional Cilium Adhesin Mhp684 (P146) Reveals a Mechanism by Which Mycoplasma hyopneumoniae Regulates Surface Topography
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