Skip to main content

Research Repository

Advanced Search

All Outputs (3)

The long and short of it: benchmarking viromics using Illumina, Nanopore and PacBio sequencing technologies (2024)
Journal Article
Cook, R., Brown, N., Rihtman, B., Michniewski, S., Redgwell, T., Clokie, M., …Millard, A. (2024). The long and short of it: benchmarking viromics using Illumina, Nanopore and PacBio sequencing technologies. Microbial Genomics, 10(2), Article 0.001198. https://doi.org/10.1099/mgen.0.001198

Viral metagenomics has fuelled a rapid change in our understanding of global viral diversity and ecology. Long-read sequencing and hybrid assembly approaches that combine long- and short-read technologies are now being widely implemented in bacterial... Read More about The long and short of it: benchmarking viromics using Illumina, Nanopore and PacBio sequencing technologies.

Predicting bioactivity of antibiotic metabolites by molecular docking and dynamics (2023)
Journal Article
Chio, H., Guest, E. E., Hobman, J. L., Dottorini, T., Hirst, J. D., & Stekel, D. J. (2023). Predicting bioactivity of antibiotic metabolites by molecular docking and dynamics. Journal of Molecular Graphics and Modelling, 123, Article 108508. https://doi.org/10.1016/j.jmgm.2023.108508

Antibiotics enter the environment through waste streams, where they can exert selective pressure for antimicrobial resistance in bacteria. However, many antibiotics are excreted as partly metabolized forms, or can be subject to partial breakdown in w... Read More about Predicting bioactivity of antibiotic metabolites by molecular docking and dynamics.

Hybrid assembly of an agricultural slurry virome reveals a diverse and stable community with the potential to alter the metabolism and virulence of veterinary pathogens (2021)
Journal Article
Cook, R., Hooton, S., Trivedi, U., King, L., Dodd, C. E., Hobman, J. L., …Millard, A. D. (2021). Hybrid assembly of an agricultural slurry virome reveals a diverse and stable community with the potential to alter the metabolism and virulence of veterinary pathogens. Microbiome, 9, Article 65. https://doi.org/10.1186/s40168-021-01010-3

Viruses are the most abundant biological entities on Earth, known to be crucial components of microbial ecosystems. However, there is little information on the viral community within agricultural waste. There are currently ~ 2.7 million dairy cattle... Read More about Hybrid assembly of an agricultural slurry virome reveals a diverse and stable community with the potential to alter the metabolism and virulence of veterinary pathogens.