Genome mining identifies cepacin as a plant-protective metabolite of the biopesticidal bacterium Burkholderia ambifaria AJ Mullins, JAH Murray, MJ Bull, M Jenner, C Jones, G Webster, ... Nature Microbiology 4 (6), 996-1005, 2019 | 124 | 2019 |
Not all Pseudomonas aeruginosa are equal: strains from industrial sources possess uniquely large multireplicon genomes R Weiser, AE Green, MJ Bull, E Cunningham-Oakes, KA Jolley, ... Microbial genomics 5 (7), e000276, 2019 | 37 | 2019 |
The effect of the flavonol morin on adhesion and aggregation of Streptococcus pyogenes AE Green, RS Rowlands, RA Cooper, SE Maddocks FEMS microbiology letters 333 (1), 54-58, 2012 | 29 | 2012 |
Genome mining identifies cepacin as a plant-protective metabolite of the biopesticidal bacterium Burkholderia ambifaria. Nat Microbiol 4: 996–1005 AJ Mullins, JAH Murray, MJ Bull, M Jenner, C Jones, G Webster, ... | 27 | 2019 |
Structural insights into loss of function of a pore forming toxin and its role in pneumococcal adaptation to an intracellular lifestyle DC Badgujar, A Anil, AE Green, MV Surve, S Madhavan, A Beckett, ... PLoS pathogens 16 (11), e1009016, 2020 | 18 | 2020 |
The consistent differential expression of genetic pathways following exposure of an industrial Pseudomonas aeruginosa strain to preservatives and a laundry … AE Green, A Amezquita, Y Le Marc, MJ Bull, TR Connor, ... FEMS microbiology letters 365 (9), fny062, 2018 | 15 | 2018 |
Pneumococcal colonization and virulence factors identified via experimental evolution in infection models AE Green, D Howarth, C Chaguza, H Echlin, RF Langendonk, C Munro, ... Molecular Biology and Evolution 38 (6), 2209-2226, 2021 | 14 | 2021 |
Pseudomonas aeruginosa utilizes the host-derived polyamine spermidine to facilitate antimicrobial tolerance CM Hasan, S Pottenger, AE Green, AA Cox, JS White, T Jones, ... JCI insight 7 (22), 2022 | 7 | 2022 |
Airway metabolic profiling during Streptococcus pneumoniae infection identifies branched chain amino acids as signatures of upper airway colonisation AE Green, S Pottenger, MS Monshi, TE Barton, M Phelan, DR Neill PLoS Pathogens 19 (9), e1011630, 2023 | 6 | 2023 |
Influence of Streptococcus pneumoniae within-strain population diversity on virulence and pathogenesis LC Jacques, AE Green, TE Barton, M Baltazar, J Aleksandrowicz, R Xu, ... Microbiology Spectrum 11 (1), e03103-22, 2023 | 4 | 2023 |
Influence of Streptococcus pneumoniae within-strain population diversity on virulence and pathogenesis. Microbiol. Spectr., e0310322 LC Jacques, AE Green, TE Barton, M Baltazar, J Aleksandrowicz, R Xu, ... | 4 | 2022 |
Identification of two distinct phylogenomic lineages and model strains for the understudied cystic fibrosis lung pathogen Burkholderia multivorans KM Parfitt, AE Green, TR Connor, DR Neill, E Mahenthiralingam Microbiology 169 (8), 001366, 2023 | 3 | 2023 |
Pseudomonas aeruginosa utilises host-derived polyamines to facilitate antimicrobial tolerance CM Hasan, AE Green, AA Cox, J White, T Jones, C Winstanley, ... bioRxiv, 2021.12. 15.472801, 2021 | 2 | 2021 |
Investigating the genetic basis of preservative resistance in an industrial Pseudomonas aeruginosa strain A Green Cardiff University, 2017 | 1 | 2017 |
Transcriptional profiles of Streptococcus pneumoniae associated with adaptation to the nasopharynx environment TE Barton, AE Green, DR Neill Access Microbiology 4 (5), po0485, 2022 | | 2022 |
Identification of colonisation and virulence determinants of Streptococcus pneumoniae via experimental evolution in mouse infection models AE Green, D Howarth, C Chaguza, H Echlin, RF Langendonk, C Munro, ... bioRxiv, 2020.09. 08.287698, 2020 | | 2020 |
Identification of niche-specific virulence factors via experimental evolution of Streptococcus pneumoniae A Green, D Neill, J Hinton Access Microbiology 1 (1A), 802, 2019 | | 2019 |
ORCA–Online Research@ Cardiff KM Parfitt, AE Green, TR Connor, DR Neill | | |
Identifying genetic mutations which aid Streptococcus pneumoniae in intra-host transmission from the lung to the blood I Maclean, D Neill, A Green | | |