Outbreak of Cronobacter turicensis in European brown hares (Lepus europaeus).

Cronobacter European brown hare antimicrobial resistance colistin resistance

Journal

Letters in applied microbiology
ISSN: 1472-765X
Titre abrégé: Lett Appl Microbiol
Pays: England
ID NLM: 8510094

Informations de publication

Date de publication:
Jun 2022
Historique:
revised: 21 02 2022
received: 13 01 2022
accepted: 24 02 2022
pubmed: 10 3 2022
medline: 21 5 2022
entrez: 9 3 2022
Statut: ppublish

Résumé

This is the first report of acute deaths in five European brown hares (Lepus europaeus) attributed to mucoid and necrotizing typhlocolitis caused by genetically different Cronobacter (C.) turicensis strains in northeastern Austria. As this opportunistic pathogen is mainly known for causing disease in immunocompromised humans and neonates, this previously unrecognized potential for a spill over from a wildlife reservoir to humans warrants further attention.

Identifiants

pubmed: 35263446
doi: 10.1111/lam.13685
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

1008-1015

Subventions

Organisme : One Health European joint programme
ID : 773830

Informations de copyright

© 2022 The Society for Applied Microbiology.

Références

Alcock, B.P., Raphena, A.R., Lau, T.T.Y., Tsang, K.K., Bouchard, M., Edalatmand, A., Huyn, W., Nguyen, A.-L.-V. et al. (2020) CARD 2020: antibiotic resistome surveillance with the comprehensive antibiotic resistance database. Nucleic Acids Res 48, D517-D525.
Bankevich, A., Nurk, S., Antipov, D., Gurevich, A.A., Dvorkin, M., Kulikov, A.S., Lesin, V.M., Nikolenko, S.I. et al. (2012) SPAdes: a new genome assembly algorithm and its applications to single-cell sequencing. J Comput Biol 19, 455-477.
Carattoli, A., Zankari, E., Garcìa-Fernandez, A., Larsen, M.L., Lund, O., Villa, L., Aarestrup, F.M. and Hasman, H. (2014) PlasmidFinder and PMLST: in silica detection and typing of plasmids. Antimicrob Agents Chemother 58, 3895-3903.
Chandrapala, D., Kim, K., Choi, Y., Senevirathne, A., Kang, D.H., Ryu, S. and Kim, K.P. (2014) Putative Inv is essential for basolateral invasion of Caco-2 cells and acts synergistically with OmpA to affect in vitro and in vivo virulence of Cronobacter sakazakii ATCC 29544. Infect Immun 82, 1755-1765.
Choi, Y., Kim, S., Hwang, H., Kim, K.P., Kang, D.H. and Ryu, S. (2015) Plasmid-encoded MCP is involved in virulence, motility, and biofilm formation of Cronobacter sakazakii ATCC 29544. Infect Immun 83, 197-204.
Clinical and Laboratory Standards Institute (CLSI). (2018) Performance Standards for Antimicrobial Susceptibility Testing. 28th ed. Informational Supplement M100-28. CLSI supplement VET08. Wayne, PA, USA.
Davis, J.J., Wattam, A.R., Aziz, R.K., Brettin, T., Butler, R., Butler, R.M., Chlenski, P., Conrad, N. et al. (2020) The PATRIC bioinformatics resource center: expanding data and analysis capabilities. Nucleic Acids Res 48, D606-D612.
FAO/WHO [Food and Agriculture Organization of the United Nations/World Health Organization]. (2008) Enterobacter sakazakii (Cronobacter spp.) in powdered follow-up formula: Meeting Report. Microbiological Risk Assessment Series No. 15. Rome. 84pp.
Farmer, J.J. (2015) My 40-year history with Cronobacter/Enterobacter sakazakii - lessons learned, myths debnked, and recommendations. Front Pediatr. https://doi.org/10.3389/fped.2015.00084.
Forsythe, S. (2018) Chapter two - Microbial source tracking of Cronobacter spp. Adv Appl Microbiol 103, 49-101.
Forsythe, S.J., Dickins, B. and Jolley, K.A. (2014) Cronobacter, the emergent bacterial pathogen Enterobacter sakazakii comes of age; MLST and whole genome sequence analysis. BMC Genom 15, 1121.
Gakuya, F.M., Kyule, M.N., Gathura, P.B. and Kariuki, S. (2001) Antimicrobial resistance of bacterial organisms isolated from rats. Est Afr Med J 78, 646-649.
Hochel, I., Růžičková, H., Krásný, L. and Demnerová, K. (2012) Occurrence of Cronobacter spp. in retail foods. J Appl Microbiol 112, 1257-1265.
Holý, O., Cruz-Córdova, A., Xicohtencatl-Cortes, J., Hochel, I., Parra-Flores, J., Petrželová, J., Fačevicová, K., Forsythe, S. et al. (2019) Occurrence of virulence factors in Cronobacter sakazakii and Cronobacter malonaticus originated from clinical samples. Microb Pathog 127, 250-256.
Hu, J., Li, X., Cui, Z. and Cui, J. (2019) Identification and characterization of Cronobacter strains isolated from environment samples. Curr Microbiol 79, 1467-1476.
Huang, X. and Miller, W. (1991) A time-efficient, linear-space local similarity algorithm. Adv Appl Math 12, 337-357.
Hunter, C.J. and Bean, J.F. (2013) Cronobacter: an emerging opportunistic pathogen associated with neonatal meningitis, sepsis and necrotizing enterocolitis. J Perinatol 33, 581-585.
Iversen, C., Mullane, N., McCardell, B., Tall, B.D., Lehner, A., Fanning, S., Stephan, R. and 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., Cronobacter malonaticus sp. nov., Cronobacter turicensis sp. nov., Cronobacter muytjensii sp. nov., Cronobacter dublinensis sp. nov., Cronobacter genomospecies 1, and of three subspecies, Cronobacter dublinensis subsp. dublinensis subsp. nov., Cronobacter dublinensis subsp. lausannensis subsp. nov. and Cronobacter dublinensis subsp. lactaridi subsp. nov. Int J Syst Evol Microbiol 58, 1442-1447.
Jolley, K.A., Bliss, C.M., Bennet, J.S., Bratcher, H.B., Brehony, C., Colles, F.M., Wimalarathna, H., Harrison, O.B. et al. (2012) Ribosomal mulitlocus sequence typing: universal characterization of bacteria from domain to strain. Microbiol 158, 1005-1015.
Joseph, S., Hariri, S., Masood, N. and Forsythe, S. (2013) Sialic acid utilization by Cronobacter sakazakii. Microb Inform Exp 3, 3.
Kim, S., Hwang, H., Kim, K.-P., Yoon, H., Kang, D.-H. and Ryu, S. (2015) hfq plays important roles in virulence and stress adaptation in Cronobacter sakazakii ATCC 29544. Infect Immun 83, 2089-2098.
Kuzina, L.V., Peloquin, J.J., Vacek, D.C. and Miller, T.A. (2001) Isolation and identification of bacteria associated with adult laboratory Mexican fruit flies, Anastrepha ludens (Diptera: Tephritidae). Curr Microbiol 42, 290-294.
Lepuschitz, S., Huhulescu, S., Hyden, P., Springer, B., Rattei, T., Allerberger, F., Mach, R.L. and Ruppitsch, W. (2018) Characterization of a community-acquired-MRSA USA300 isolate from a river sample in Austria and whole genome sequence based comparison to a diverse collection of USA300 isolates. Sci Rep 8, 9467.
Meshorer, A. (1976) Histological findings in rabbits which died with symptoms of mucoid enteritis. Lab Anim 10, 199-202.
Posautz, A., Loncaric, I., Lundin, M., Hoffmann, D., Lavazza, A., Kelemen, Z., Beiglböck, C., Walzer, C. et al. (2015) Health screening of free-ranging European brown hares (Lepus europaeus) on the German North-Sea island Pellworm. Acta Vet Scand 57, doi10.1186/s13028-015-0132-0.
PubMLST. https://pubmlst.org/species-id
Richter, M., Rosselló-Móra, R., Oliver Glöckner, F. and Peplies, J. (2016) SpeciesWS: a web server for prokaryotic species circumscription based on pairwise genome comparison. Bioinformatics 32, 929-931.
Ruppitsch, W., Pietzka, A., Prior, K., Bletz, S., Fernandez, H.L., Allerberger, F., Harmsen, D. and Mellmann, A. (2015) Defining and evaluating a core genome multilocus sequence typing scheme for whole-genome sequence-based typing of Listeria monocytogenes. J Clin Microbiol 53, 2869-2876.
Shi, C., Sun, Y., Liu, Z., Guo, D., Sun, H., Sun, Z., Chen, S., Zhang, W. et al. (2017) Inhibition of Cronobacter sakazakii virulence factors by citral. Sci Reports 7, 43243.
Singh, N., Goel, G. and Raghav, M. (2015) Insights into virulence factors determining the pathogenicity of Cronobacter sakazakii. Virulence 6, 433-440.
Stroh, G. (1931) Two safe age attributes in the hare. [Article in German]. Berl Munch Tierarztl Wochenschr 12, 180-181.
Tsai, H.Y., Liao, C.H., Huang, Y.T., Lee, P.I. and Hsueh, P.R. (2013) Cronobacter infections not from infant formula, Taiwan. Emerg Infect Dis 19, 167-169.
Wang, C., Feng, Y., Liu, L., Wei, L., Kang, M. and Zong, Z. (2020) Identification of novel mobile colistin resistance gene mcr-10. Emerg Microbes Infect 9, 508-516.
Yan, Q. and Fanning, S. (2015) Strategies for the identification and tracking of Cronobacter species: an opportunistic pathogen of concern to neonatal health. Front Pediatr 3, 38.
Zankari, E., Hasman, H., Cosentino, S., Vetsergaard, M., Rasmussen, S., Lund, O., Aarestrup, F.M. and Larsen, M.V. (2016) Identification of acquired antimicrobial resistance genes. J Antimicrob Chemother 67, 2640-2644.

Auteurs

Annika Posautz (A)

University of Veterinary Medicine, Vienna, Austria.

Michael P Szostak (MP)

University of Veterinary Medicine, Vienna, Austria.

Adriana Cabal Rosel (A)

Austrian Agency for Health and Food Safety, Vienna, Austria.

Franz Allerberger (F)

Austrian Agency for Health and Food Safety, Vienna, Austria.

Anna Stöger (A)

Austrian Agency for Health and Food Safety, Vienna, Austria.

Gerhard Rab (G)

Institute of Hydraulic Engineering and Water Resources Management, University of Technology Vienna, Austria.
Institute for Land and Water Management Research, Federal Agency for Water Management, Petzenkirchen, Austria.

Andrea T Feßler (AT)

Freie Universität Berlin, Berlin, Germany.
Department of Veterinary Medicine, Veterinary Centre for Resistance Research (TZR), Freie Universität Berlin, Berlin, Germany.

Joachim Spergser (J)

University of Veterinary Medicine, Vienna, Austria.

Anna Kübber-Heiss (A)

University of Veterinary Medicine, Vienna, Austria.

Stefan Schwarz (S)

Freie Universität Berlin, Berlin, Germany.
Department of Veterinary Medicine, Veterinary Centre for Resistance Research (TZR), Freie Universität Berlin, Berlin, Germany.

Stephen J Forsythe (SJ)

Foodmicrobe.com, Keyworth, Nottingham, UK.

Werner Ruppitsch (W)

Austrian Agency for Health and Food Safety, Vienna, Austria.

Igor Loncaric (I)

University of Veterinary Medicine, Vienna, Austria.

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