Cell-free synthesis of the Salmonella specific broad host range bacteriophage, felixO1

Phage-based biocontrol of foodborne Salmonella is limited by the requisite use of Salmonella to propagate the phages. This limitation can be circumvented by producing Salmonella phages using a cell-free gene expression system (CFE) with a non-pathogenic chassis. Here, we produce the Salmonella phage...

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Veröffentlicht in:Journal of microbiological methods 2024-05, Vol.220, p.106920, Article 106920
Hauptverfasser: McFarlane, John A., Garenne, David, Noireaux, Vincent, Bowden, Steven D.
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container_title Journal of microbiological methods
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creator McFarlane, John A.
Garenne, David
Noireaux, Vincent
Bowden, Steven D.
description Phage-based biocontrol of foodborne Salmonella is limited by the requisite use of Salmonella to propagate the phages. This limitation can be circumvented by producing Salmonella phages using a cell-free gene expression system (CFE) with a non-pathogenic chassis. Here, we produce the Salmonella phage felixO1 using an E. coli-based CFE system. •Simple method for obtaining high-concentration phage genomic DNA•Cell free expression of Felixounavirus bacteriophages•Escherichia coli based cell free expression of Salmonella specific phage
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subjects Bacteriophages - genetics
Cell-free expression
Escherichia coli - genetics
felixO1
Genome, Viral
Host Specificity
Phage
Salmonella
Salmonella - genetics
Salmonella Phages - genetics
title Cell-free synthesis of the Salmonella specific broad host range bacteriophage, felixO1
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