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Angelika Lehner

Showing results (41-50 of 68) with videos related to

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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.
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.
Applied and Environmental Microbiology|November 7, 2003
The isotope array, a new tool that employs substrate-mediated labeling of rRNA for determination of microbial community structure and functionJustyna Adamczyk, Martin Hesselsoe, Niels Iversen, et al.
Research in Microbiology|September 15, 2009
Evidence for a plant-associated natural habitat for Cronobacter sppMichael Schmid, Carol Iversen, Iti Gontia, et al.
Journal of Food Protection|February 2, 2008
Cellulose as an extracellular matrix component present in Enterobacter sakazakii biofilmsMaya Grimm, Roger Stephan, Carol Iversen, et al.
Gut Pathogens|June 6, 2022
Complete genome sequences and genomic characterization of five plasmids harbored by environmentally persistent Cronobacter sakazakii strains ST83 H322 and ST64 GK1025B obtained from powdered infant formula manufacturing facilitiesFlavia J Negrete, Katie Ko, Hyein Jang, et al.
Microbial Genomics|July 24, 2020
Comparative genomic insights into <i>Yersinia hibernica</i> - a commonly misidentified <i>Yersinia enterocolitica</i>-like organismScott Van Nguyen, Dechamma Mundanda Muthappa, Athmanya K Eshwar, et al.
Proteomics|July 18, 2009
Proteomic profiling of Cronobacter turicensis 3032, a food-borne opportunistic pathogenPaula Carranza, Isabel Hartmann, Angelika Lehner, et al.
Plos One|June 30, 2016
Linking Genomo- and Pathotype: Exploiting the Zebrafish Embryo Model to Investigate the Divergent Virulence Potential among Cronobacter sppAthmanya K Eshwar, Ben D Tall, Jayanthi Gangiredla, et al.
International Journal of Food Microbiology|January 25, 2016
The response of foodborne pathogens to osmotic and desiccation stresses in the food chainCatherine M Burgess, Andrea Gianotti, Nadia Gruzdev, et al.
Pageof 7

Showing results (41-50 of 68) with videos related to

Sort By:
Pageof 7
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.
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.
Applied and Environmental Microbiology|November 7, 2003
The isotope array, a new tool that employs substrate-mediated labeling of rRNA for determination of microbial community structure and functionJustyna Adamczyk, Martin Hesselsoe, Niels Iversen, et al.
Research in Microbiology|September 15, 2009
Evidence for a plant-associated natural habitat for Cronobacter sppMichael Schmid, Carol Iversen, Iti Gontia, et al.
Journal of Food Protection|February 2, 2008
Cellulose as an extracellular matrix component present in Enterobacter sakazakii biofilmsMaya Grimm, Roger Stephan, Carol Iversen, et al.
Gut Pathogens|June 6, 2022
Complete genome sequences and genomic characterization of five plasmids harbored by environmentally persistent Cronobacter sakazakii strains ST83 H322 and ST64 GK1025B obtained from powdered infant formula manufacturing facilitiesFlavia J Negrete, Katie Ko, Hyein Jang, et al.
Microbial Genomics|July 24, 2020
Comparative genomic insights into <i>Yersinia hibernica</i> - a commonly misidentified <i>Yersinia enterocolitica</i>-like organismScott Van Nguyen, Dechamma Mundanda Muthappa, Athmanya K Eshwar, et al.
Proteomics|July 18, 2009
Proteomic profiling of Cronobacter turicensis 3032, a food-borne opportunistic pathogenPaula Carranza, Isabel Hartmann, Angelika Lehner, et al.
Plos One|June 30, 2016
Linking Genomo- and Pathotype: Exploiting the Zebrafish Embryo Model to Investigate the Divergent Virulence Potential among Cronobacter sppAthmanya K Eshwar, Ben D Tall, Jayanthi Gangiredla, et al.
International Journal of Food Microbiology|January 25, 2016
The response of foodborne pathogens to osmotic and desiccation stresses in the food chainCatherine M Burgess, Andrea Gianotti, Nadia Gruzdev, et al.
Pageof 7