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All Outputs (7)

Integrating cryo-OrbiSIMS with computational modelling and metadynamics simulations enhances RNA structure prediction at atomic resolution (2024)
Journal Article

The 3D architecture of RNAs governs their molecular interactions, chemical reactions, and biological functions. However, a large number of RNAs and their protein complexes remain poorly understood due to the limitations of conventional structural bio... Read More about Integrating cryo-OrbiSIMS with computational modelling and metadynamics simulations enhances RNA structure prediction at atomic resolution.

A Trifecta of New Insights into Ovine Footrot for Infection Drivers, Immune Response, and Host-Pathogen Interactions (2021)
Journal Article

Footrot is a polymicrobial infectious disease in sheep causing severe lameness, leading to one of the industry’s largest welfare problems. The complex etiology of footrot makes in situ or in vitro investigations difficult. Computational methods offer... Read More about A Trifecta of New Insights into Ovine Footrot for Infection Drivers, Immune Response, and Host-Pathogen Interactions.

Genomic heterogeneity of Dichelobacter nodosus within and between UK sheep flocks and between age groups within a flock (2020)
Journal Article

Background Footrot and interdigital dermatitis are endemic infectious diseases in all sheep farming regions, impairing welfare and production. The development of efficacious vaccines against the primary causative pathogen has been hampered by the ex... Read More about Genomic heterogeneity of Dichelobacter nodosus within and between UK sheep flocks and between age groups within a flock.

The applied development of a tiered multilocus sequence typing (MLST) scheme for Dichelobacter nodosus (2018)
Journal Article

Dichelobacter nodosus (D. nodosus) is the causative pathogen of ovine footrot, a disease that has a significant welfare and financial impact on the global sheep industry. Previous studies into the phylogenetics of D. nodosus have focused on Australia... Read More about The applied development of a tiered multilocus sequence typing (MLST) scheme for Dichelobacter nodosus.