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Haendiges, J.

Publications and source records attributed to Haendiges, J..

2 recordsLinked to original sources

Genomic Evidence of Environmental and Resident Salmonella Senftenberg and Montevideo Contamination in the Pistachio Supply-chain

Pistachios have been implicated in two salmonellosis outbreaks and multiple recalls in the U.S. This study performed a retrospective data analysis of Salmonella associated with pistachios and a storage study to evaluate the survivability of Salmonella on inoculated inshell pistachios to further understand the genetics and microbiological dynamics of this commodity-pathogen pair. The retrospective data analysis on isolates associated with pistachios was performed from both short-read and long-read sequencing technologies. The sequence data were analyzed using the FDAs Center for Food Safety and Applied Nutrition Single Nucleotide Polymorphism (SNP) analysis and Whole Genome Multi-locus Sequence Typing (wgMLST) pipeline. The storage study evaluated the survival of five strains of Salmonella on pistachios, both in a cocktail as well as individually. Our results demonstrate: i) evidence of persistent Salmonella Senftenberg and Salmonella Montevideo strains in pistachio environments, some of which may be due to clonal resident strains and some of which may be due to preharvest contamination; ii) presence of the Copper Homeostasis and Silver Resistance Island (CHASRI) in Salmonella Senftenberg and Montevideo strains in the pistachio supply chain; and iii) different serovars of Salmonella enterica, including Salmonella Senftenberg and Salmonella Montevideo, are able to survive in pistachios over an extended period of time. ImportancePistachios have been linked to multistate outbreaks caused by Salmonella serovar Senftenberg (2013, 2016) and serovar Montevideo (2016). This comprehensive study of whole-genome-sequence (WGS) data from Senftenberg and Montevideo isolates associated with pistachio outbreaks, recalls, and investigations over a nine-year period (2009-2018) was conducted to provide insights into evolutionary relationships and persistence. Multiple analytical approaches were applied including MLST, wgMLST and phylogenetic SNP analysis. The CHASRI was identified in all isolates associated with the sequence type 14 (ST14) and ST316, suggesting an adaptation in response to extrinsic pressures, such as in the farm environment. There is evidence of persistent Salmonella Senftenberg and Montevideo strains in pistachio pre-harvest and post-harvest environments. Utilizing metagenomic sequencing during an inoculated storage study of pistachios allowed for determination of surviving serovars over an extended period of time. Defining the mechanisms of persistence of these strains is of high importance to public health.

microbiology

Choice of library preparation and its effects on sequence quality, genome assembly, and precise in silico prediction of virulence genes in shiga toxin producing Escherichia coli

Whole genome sequencing (WGS) provides essential public health information and is used worldwide for pathogen surveillance, epidemiology, and source tracking. The sequencing of foodborne pathogens is commonly performed with Illumina sequencing chemistry to obtain data with high accuracy. The choice of library preparation method for highly complex organisms is very critical and can affect the final data output. The majority of Illumina sequencing platforms use rapid library preparation such as Nextera XT (transposon-based technology) (Illumina San Diego, CA), but this preparation has the potential to miss randomly distributed segments of genomes that might be important for downstream analyses. The Illumina Nextera DNA Prep library preparation kit, the successor of Nextera XT, shows better overall coverage of the complete genome. This study compared the quality of sequence data generated using Nextera XT and Nextera DNA Prep kits for DNA library preparation on an Illumina MiSeq, using a set of 30 O121:H19 shiga-toxin positive Escherichia coli strains isolated from flour during a 2016 outbreak. The performance of the two kits were evaluated using several metrics including sequencing quality, assembly quality, uniformity of genome coverage, and virulence gene identification. Overall, the results showed that in all of the analysed metrics, the Nextera DNA Prep kit performed outstanding in comparison to Nextera XT. The Nextera DNA Prep kit allowed for comprehensive detection of all virulence genes, which is of extremely high importance for making an educated assessment of the virulence potential of Escherichia coli. This comprehensive side-by-side comparison will be of significance for those interested in improving their sequencing workflow for STECs and the determination of health risks using WGS data.

microbiology