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Frontiers in Veterinary Science|July 15, 2024
Seroprevalence of <i>Mycobacterium avium</i> subsp. <i>paratuberculosis</i> in Swiss dairy herds and risk factors for a positive herd status and within-herd prevalenceMartina Ottardi, Isabel Lechner, Jessica Wang, et al.Journal of Natural Products|January 15, 2025
Heterologous Expression and Characterization of Estercin A, a Class II Lanthipeptide Derived from <i>Clostridium estertheticum</i> CF016, with Antimicrobial Activity against Clinically Relevant PathogensChenhui Wang, Joseph Wambui, Maria Victoria Fernandez-Cantos, et al.International Journal of Antimicrobial Agents|July 3, 2017
Wastewater is a reservoir for clinically relevant carbapenemase- and 16s rRNA methylase-producing EnterobacteriaceaeKatrin Zurfluh, Claudia Bagutti, Peter Brodmann, et al.BMC Veterinary Research|June 16, 2014
Observed management practices in relation to the risk of infection with paratuberculosis and to the spread of Mycobacterium avium subsp. paratuberculosis in Swiss dairy and beef herdsRahel Künzler, Paul Torgerson, Selina Keller, et al.Scientific Reports|April 28, 2021
Environmental dissemination of pathogenic Listeria monocytogenes in flowing surface waters in SwitzerlandSusanne Raschle, Roger Stephan, Marc J A Stevens, et al.Emerging Infectious Diseases|December 22, 2020
Listeriosis Caused by Persistence of Listeria monocytogenes Serotype 4b Sequence Type 6 in Cheese Production EnvironmentMagdalena Nüesch-Inderbinen, Guido V Bloemberg, Andrea Müller, et al.Systematic and Applied Microbiology|March 28, 2006
Molecular characterization of the alpha-glucosidase activity in Enterobacter sakazakii reveals the presence of a putative gene cluster for palatinose metabolismAngelika Lehner, Kathrin Riedel, Thomas Rattei, et al.BMC Evolutionary Biology|April 19, 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 1Carol Iversen, Angelika Lehner, Niall Mullane, et al.Antimicrobial Resistance and Infection Control|March 21, 2017
Screening for fecal carriage of MCR-producing <i>Enterobacteriaceae</i> in healthy humans and primary care patientsKatrin Zurfluh, Roger Stephan, Andreas Widmer, et al.Microbial Pathogenesis|February 22, 2025
Uncovering the pathogenic mechanisms of Cronobacter turicensis: A dual transcriptomics study using a zebrafish larvae modelChiara Cianciolo Cosentino, Marc J A Stevens, Athmanya K Eshwar, et al.Pageof 39