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Wang, J; Gibbons, J; McGrath, K; Bai, L; Li, F; Leonard, N; Stephan, Roger; Fanning, S (2016). Molecular characterization of blaESBL-producing Escherichia coli cultured from pig farms in Ireland. Journal of Antimicrobial Chemotherapy, 71(11):3062-3065.

Wang, J; Hurley, D; McGrath, K; Bai, L; Hächler, Herbert; Stephan, Roger; Fanning, S (2016). Draft genome sequence of Escherichia coli 26R 793, a plasmid-free recipientstrain commonly used in conjugation assays. Genome Announcements, 4(5):e00707-e00716.

Tall, B; et al; Stephan, Roger; Lehner, Anglika; Fanning, S; Grimm, C (2015). Development of a custom-designed, pan genomic DNA microarray to characterize strain-level diversity among Cronobacter spp. Frontiers in Pediatrics:3:36.

Wang, J; Stephan, Roger; Power, K; Yang, Q; Hächler, Herbert; Fanning, S (2014). Nucleotide sequences of 16 transmissible plasmids identified in nine multi-drug resistant Escherichia coli isolates expressing an ESBL phenotype isolated from food-producing animals and healthy humans. Journal of Antimicrobial Chemotherapy, 69:2658-2668.

Stephan, Roger; Grim, Ch; Gopinath, G; Mammel, M; Sathyamoorthy, V; Trach, L; Chase, H; Fanning, S; Tall, B (2014). Re-examination of the taxonomic status of Enterobacter helveticus, Enterobacter pulveris and Enterobacter turicensis as members of the genus Cronobacter and their reclassification in the genera Franconibacter gen. nov. and Siccibacter gen. nov. as Franconibacter helveticus comb. nov., Franconibacter pulveris comb. nov. and Siccibacter turicensis comb. nov., respectively. International Journal of Systematic and Evolutionary Microbiology, 64:3402-3410.

Drummond, N; Stephan, R; Haughton, P; Murphy, B; Fanning, S (2013). Further characterization of three Yersinia enterocolitica strains with a nalidixic acid-resistant phenotype isolated from humans with diarrhea. Foodborne Pathogens and Disease, 10(8):744-746.

Stephan, R; Grim, C J; Gopinath, G R; Mammel, M K; Sathyamoorthy, V; Trach, L H; Chase, H R; Fanning, S; Tall, B D (2013). Genome sequence of Enterobacter turicensis strain 610/05 (= LMG 23731), isolated from fruit powder. Genome Announcements:e00996-13 .

Grim, C J; Gopinath, G R; Mammel, M K; Sathyamoorthy, V; Trach, L H; Chase, H R; Tall, B D; Fanning, S; Stephan, R (2013). Genome sequence of an Enterobacter helveticus strain, 1159/04 (= LMG 23733), isolated from fruit powder. Genome Announcements, 1(6):e01038-13.

Gopinath, G R; Grimm, C J; Tall, B D; Mammel, M K; Sathyamoorthy, V; Trach, L H; Chase, H R; Fanning, S; Stephan, R (2013). Genome sequences of two Enterobacter pulveris strains 601/05T (= LMG 24057T = DSM 19144T), and 1160/04 (= LMG 24058 = DSM 19146), isolated from fruit powder. Genome Announcements, 1(6):e00991-13.

Wang, J; Stephan, R; Karczmarczyk, M; Yan, Q; Hächler, H; Fanning, S (2013). Molecular characterisation of blaESBL-harbouring conjugative plasmids identified in multi-drug resistant Escherichia coli isolated from food-producing animals and healthy humans. Frontiers in Microbiology:4:188.

Grim, C J; Kotewicz, M L; Power, K A; Gopinath, G; Franco, A A; Jarvis, K G; Yan, Q Q; Jackson, S A; Sathyamoorthy, V; Hu, L; Pagotto, F; Iversen, C; Lehner, A; Stephan, R; Fanning, S; Tall, B D (2013). Pan-genome analysis of the emerging foodborne pathogen Cronobacter spp. suggests a species-level bidirectional divergence driven by niche adaptation. BMC Genomics, 14:366.

Karczmarczyk, M; Stephan, R; Hächler, H; Fanning, S (2012). Complete nucleotide sequence of pVQS1 containing a quinolone resistance determinant from Salmonella enterica serovar Virchow associated with foreign travel. Journal of Antimicrobial Chemotherapy, 67(8):1861-1864.

Brengi, S; O’Brien, S B; Pichel, M; Iversen, C; Arduino, M; Binsztein, N; Jensen, B; Pagotto, F; Ribot, E; Stephan, R; Cernela, N; Cooper, K; Fanning, S (2012). Development and validation of a PulseNet standardized protocol for sub-typing isolates of Cronobacter species. Foodborne Pathogens and Disease , 9(9):861-867.

Lehner, A; Stephan, R; Fanning, S; Iversen, C (2011). Enterobacter. In: Liu, Y. Molecular Detection of Human Bacterial Pathogens. Boca Raton: CRC Press, 170-185.

Stoop, B; Lehner, A; Iversen, C; Fanning, S; Stephan, R (2009). Development and evaluation of rpoB based PCR systems to differentiate the six proposed species within the genus Cronobacter. International Journal of Food Microbiology, 136(2):165-168.

Lehner, A; Iversen, C; Fanning, S; Stephan, R (2009). Enterobacter. In: Dongyou, L. Molecular Detection of Foodborne Pathogens. Boca Raton: Taylor & Francis Group, 355-361.

Healy, B; Huynh, S; Mullane, N; O’Brien, S; Iversen, C; Lehner, A; Stephan, R; Parker, C T; Fanning, S (2009). Microarray-based comparative genomic indexing of the Cronobacter genus (Enterobacter sakazakii). International Journal of Food Microbiology, 136(2):159-164.

Healy, B; Mullane, N; Collin, V; Mailler, S; Iversen, C; Chatellier, S; Storrs-Mabilat, M; Fanning, S (2008). Evaluation of an Automated Repetitive Sequence-based PCR System for Subtyping Enterobacter Sakazakii. Journal of Food Protection, 71(7):1372-1378.

Iversen, C; Mullane, N; McCardell, B; Tall, B D; Lehner, A; Fanning, S; Stephan, R; Joosten, H (2008). Cronobacter gen. nov., a new genus to accommodate the biogroups of Enterobacter sakazakii, and proposal of Cronobacter sakazakii gen. nov. comb. nov., C. malonaticus sp. nov., C. turicensis sp. nov., C. muytjensii sp. nov., C. dublinensis sp. nov., Cronobacter genomospecies 1, and of three subspecies, C. dublinensis sp. nov. subsp. dublinensis subsp. nov., C. dublinensis sp. nov. subsp. lausannensis subsp. nov., and C. dublinensis sp. nov. subsp. lactaridi subsp. nov. International Journal of Systematic and Evolutionary Microbiology, 58(6):1442-1447.

Iversen, C; Lehner, A D; Mullane, N; Bidlas, E; Cleenwerck, I; Marugg, J; Fanning, S; Stephan, R; Joosten, H (2007). The taxonomy of Enterobacter sakazakii: proposal of a new genus Cronobacter gen. nov. and descriptions of Cronobacter sakazakii comb. nov. Cronobacter sakazakii subsp. sakazakii, comb. nov., Cronobacter sakazakii subsp. malonaticus subsp. nov., Cronobacter turicensis sp. nov., Cronobacter muytjensii sp. nov., Cronobacter dublinensis sp. nov. and Cronobacter genomospecies 1. BMC Evolutionary Biology, 7:64.

This list was generated on Wed Sep 20 00:48:43 2017 CEST.