TY - JOUR A1 - Mrochen, Daniel M. A1 - Schulz, Daniel A1 - Fischer, Stefan A1 - Jeske, Kathrin A1 - El Gohary, Heba A1 - Reil, Daniela A1 - Imholt, Christian A1 - Truebe, Patricia A1 - Suchomel, Josef A1 - Tricaud, Emilie A1 - Jacob, Jens A1 - Heroldova, Marta A1 - Bröker, Barbara M. A1 - Strommenger, Birgit A1 - Walther, Birgit A1 - Ulrich, Rainer G. A1 - Holtfreter, Silva T1 - Wild rodents and shrews are natural hosts of Staphylococcus aureus JF - International Journal of Medical Microbiology N2 - Laboratory mice are the most commonly used animal model for Staphylococcus aureus infection studies. We have previously shown that laboratory mice from global vendors are frequently colonized with S. aureus. Laboratory mice originate from wild house mice. Hence, we investigated whether wild rodents, including house mice, as well as shrews are naturally colonized with S. aureus and whether S. aureus adapts to the wild animal host. 295 animals of ten different species were caught in different locations over four years (2012-2015) in Germany, France and the Czech Republic. 45 animals were positive for S. aureus (15.3%). Three animals were co-colonized with two different isolates, resulting in 48 S. aureus isolates in total. Positive animals were found in Germany and the Czech Republic in each studied year. The S. aureus isolates belonged to ten different spa types, which grouped into six lineages (clonal complex (CC) 49, CC88, CC130, CC1956, sequence type (ST) 890, ST3033). CC49 isolates were most abundant (17/48, 35.4%), followed by CC1956 (14/48, 29.2%) and ST890 (9/48, 18.8%). The wild animal isolates lacked certain properties that are common among human isolates, e.g., a phage-encoded immune evasion cluster, superantigen genes on mobile genetic elements and antibiotic resistance genes, which suggests long-term adaptation to the wild animal host. One CC130 isolate contained the mecC gene, implying wild rodents might be both reservoir and vector for methicillin-resistant. In conclusion, we demonstrated that wild rodents and shrews are naturally colonized with S. aureus, and that those S. aureus isolates show signs of host adaptation. KW - Staphylococcus aureus KW - Colonization KW - Wild mice KW - Host adaptation KW - Immune evasion cluster KW - mecC Y1 - 2018 U6 - https://doi.org/10.1016/j.ijmm.2017.09.014 SN - 1438-4221 SN - 1618-0607 VL - 308 IS - 6 SP - 590 EP - 597 PB - Elsevier CY - Jena ER - TY - GEN A1 - Raafat, Dina A1 - Mrochen, Daniel M. A1 - Al’Sholui, Fawaz A1 - Heuser, Elisa A1 - Ryll, René A1 - Pritchett-Corning, Kathleen R. A1 - Jacob, Jens A1 - Walther, Bernd A1 - Matuschka, Franz-Rainer A1 - Richter, Dania T1 - Molecular epidemiology of methicillin-susceptible and methicillin-resistant Staphylococcus aureus in wild, captive and laboratory rats BT - Effect of habitat on the nasal S. aureus population T2 - Zweitveröffentlichungen der Universität Potsdam : Humanwissenschaftliche Reihe N2 - Rats are a reservoir of human- and livestock-associated methicillin-resistant Staphylococcus aureus (MRSA). However, the composition of the natural S. aureus population in wild and laboratory rats is largely unknown. Here, 144 nasal S. aureus isolates from free-living wild rats, captive wild rats and laboratory rats were genotyped and profiled for antibiotic resistances and human-specific virulence genes. The nasal S. aureus carriage rate was higher among wild rats (23.4%) than laboratory rats (12.3%). Free-living wild rats were primarily colonized with isolates of clonal complex (CC) 49 and CC130 and maintained these strains even in husbandry. Moreover, upon livestock contact, CC398 isolates were acquired. In contrast, laboratory rats were colonized with many different S. aureus lineages—many of which are commonly found in humans. Five captive wild rats were colonized with CC398-MRSA. Moreover, a single CC30-MRSA and two CC130-MRSA were detected in free-living or captive wild rats. Rat-derived S. aureus isolates rarely harbored the phage-carried immune evasion gene cluster or superantigen genes, suggesting long-term adaptation to their host. Taken together, our study revealed a natural S. aureus population in wild rats, as well as a colonization pressure on wild and laboratory rats by exposure to livestock- and human-associated S. aureus, respectively. T3 - Zweitveröffentlichungen der Universität Potsdam : Humanwissenschaftliche Reihe - 873 KW - Staphylococcus aureus KW - rat KW - clonal complex KW - host adaptation KW - livestock KW - laboratory KW - coagulation KW - immune evasion cluster KW - habitat KW - epidemiology Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-512379 SN - 1866-8364 IS - 2 ER - TY - JOUR A1 - Raafat, Dina A1 - Mrochen, Daniel M. A1 - Al’Sholui, Fawaz A1 - Heuser, Elisa A1 - Ryll, René A1 - Pritchett-Corning, Kathleen R. A1 - Jacob, Jens A1 - Walther, Bernd A1 - Matuschka, Franz-Rainer A1 - Richter, Dania T1 - Molecular epidemiology of methicillin-susceptible and methicillin-resistant Staphylococcus aureus in wild, captive and laboratory rats BT - Effect of habitat on the nasal S. aureus population JF - Toxins N2 - Rats are a reservoir of human- and livestock-associated methicillin-resistant Staphylococcus aureus (MRSA). However, the composition of the natural S. aureus population in wild and laboratory rats is largely unknown. Here, 144 nasal S. aureus isolates from free-living wild rats, captive wild rats and laboratory rats were genotyped and profiled for antibiotic resistances and human-specific virulence genes. The nasal S. aureus carriage rate was higher among wild rats (23.4%) than laboratory rats (12.3%). Free-living wild rats were primarily colonized with isolates of clonal complex (CC) 49 and CC130 and maintained these strains even in husbandry. Moreover, upon livestock contact, CC398 isolates were acquired. In contrast, laboratory rats were colonized with many different S. aureus lineages—many of which are commonly found in humans. Five captive wild rats were colonized with CC398-MRSA. Moreover, a single CC30-MRSA and two CC130-MRSA were detected in free-living or captive wild rats. Rat-derived S. aureus isolates rarely harbored the phage-carried immune evasion gene cluster or superantigen genes, suggesting long-term adaptation to their host. Taken together, our study revealed a natural S. aureus population in wild rats, as well as a colonization pressure on wild and laboratory rats by exposure to livestock- and human-associated S. aureus, respectively. KW - Staphylococcus aureus KW - rat KW - clonal complex KW - host adaptation KW - livestock KW - laboratory KW - coagulation KW - immune evasion cluster KW - habitat KW - epidemiology Y1 - 2020 U6 - https://doi.org/10.3390/toxins12020080 SN - 2072-6651 VL - 12 IS - 2 SP - 1 EP - 22 PB - MDPI CY - Basel ER -