Identification of the bacterium responsible for an outbreak can aid in disease management. However, traditional culture-based diagnosis can be difficult, particularly if no specific diagnostic test is available for an outbreak strain. To explore the potential of metagenomics, which is the direct sequencing of DNA extracted from microbiologically complex samples, as an open-ended clinical discovery platform capable of identifying and characterizing bacterial strains from an outbreak without laboratory culture. In a retrospective investigation, 45 samples were selected from fecal specimens obtained from patients with diarrhea during the 2011 outbreak of Shiga-toxigenic Escherichia coli (STEC) O104:H4 in Germany. Samples were subjected...
ABSTRACT The large outbreak of diarrhea and hemolytic uremic syndrome (HUS) caused by Shiga toxin-pr...
To test the ability of high-throughput DNA sequencing to detect bacterial pathogens, we used it on D...
Viruses represent the most abundant biological components on earth.They can be found in every enviro...
The current routine laboratory practices to investigate food samples in case of foodborne outbreaks ...
The management of a foodborne outbreak depends on the rapid and accurate identification of the respo...
The current routine laboratory practices to investigate food samples in case of foodborne outbreaks ...
Whole genome sequencing (WGS) plays an increasing role in communicable disease control through high-...
Culture-independent diagnostics, such as metagenomic shotgun sequencing of food samples, could not o...
ABSTRACT Culture-independent methods that target genome fragments have shown promise in identifying ...
Food-borne outbreak investigation currently relies on the time-consuming and challenging bacterial i...
The term ‘shotgun metagenomics ’ is applied to the direct sequencing of DNA extracted from a sample ...
In 2009, an outbreak of enterohemorrhagic Escherichia coli (EHEC) on an open farm infected 93 person...
A large outbreak of gastrointestinal disease occurred in 2011 in Germany which resulted in almost 40...
Diagnostic metagenomics is a rapidly evolving laboratory tool for culture-independent tracing of foo...
<div><p>A large outbreak of gastrointestinal disease occurred in 2011 in Germany which resulted in a...
ABSTRACT The large outbreak of diarrhea and hemolytic uremic syndrome (HUS) caused by Shiga toxin-pr...
To test the ability of high-throughput DNA sequencing to detect bacterial pathogens, we used it on D...
Viruses represent the most abundant biological components on earth.They can be found in every enviro...
The current routine laboratory practices to investigate food samples in case of foodborne outbreaks ...
The management of a foodborne outbreak depends on the rapid and accurate identification of the respo...
The current routine laboratory practices to investigate food samples in case of foodborne outbreaks ...
Whole genome sequencing (WGS) plays an increasing role in communicable disease control through high-...
Culture-independent diagnostics, such as metagenomic shotgun sequencing of food samples, could not o...
ABSTRACT Culture-independent methods that target genome fragments have shown promise in identifying ...
Food-borne outbreak investigation currently relies on the time-consuming and challenging bacterial i...
The term ‘shotgun metagenomics ’ is applied to the direct sequencing of DNA extracted from a sample ...
In 2009, an outbreak of enterohemorrhagic Escherichia coli (EHEC) on an open farm infected 93 person...
A large outbreak of gastrointestinal disease occurred in 2011 in Germany which resulted in almost 40...
Diagnostic metagenomics is a rapidly evolving laboratory tool for culture-independent tracing of foo...
<div><p>A large outbreak of gastrointestinal disease occurred in 2011 in Germany which resulted in a...
ABSTRACT The large outbreak of diarrhea and hemolytic uremic syndrome (HUS) caused by Shiga toxin-pr...
To test the ability of high-throughput DNA sequencing to detect bacterial pathogens, we used it on D...
Viruses represent the most abundant biological components on earth.They can be found in every enviro...