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Measuring Bacterial Load and Immune Responses in Mice Infected with Listeria monocytogenes
Published on: August 9, 2011
Homburgvirus LP-018 Has a Unique Ability to Infect Phage-Resistant Listeria monocytogenes
Yaxiong Song1, Tracey L Peters1, Daniel W Bryan1
1Department of Food Science, University of Tennessee, Knoxville, TN 37996, USA.
Abstract:
Listeria phage LP-018 is the only phage from a diverse collection of 120 phages able to form plaques on a phage-resistant Listeria monocytogenes strain lacking rhamnose in its cell wall teichoic acids. The aim of this study was to characterize phage LP-018 and to identify what types of mutations can confer resistance to LP-018. Whole genome sequencing and transmission electron microscopy revealed LP-018 to be a member of the Homburgvirus genus. One-step-growth curve analysis of LP-018 revealed an eclipse period of ~60-90 min and a burst size of ~2 PFU per infected cell. Despite slow growth and small burst size, LP-018 can inhibit the growth of Listeria monocytogenes at a high multiplicity of infection. Ten distinct LP-018-resistant mutants were isolated from infected Listeria monocytogenes 10403S and characterized by whole genome sequencing. In each mutant, a single mutation was identified in either the LMRG_00278 or LMRG_01613 encoding genes. Interesting, LP-018 was able to bind to a representative phage-resistant mutant with a mutation in each gene, suggesting these mutations confer resistance through a mechanism independent of adsorption inhibition. Despite forming plaques on the rhamnose deficient 10403S mutant, LP-018 showed reduced binding efficiency, and we did not observe inhibition of the strain under the conditions tested. Two mutants of LP-018 were also isolated and characterized, one with a single SNP in a gene encoding a BppU domain protein that likely alters its host range. LP-018 is shown to be a unique Listeria phage that, with additional evaluation, may be useful in biocontrol applications that aim to reduce the emergence of phage resistance.
Insights
Listeria phage LP-018, unique for its ability to infect resistant strains, was characterized. Resistance to this phage arises from single gene mutations, suggesting potential for biocontrol applications in managing Listeria monocytogenes.
Area of Science:
- Microbiology
- Virology
- Bacteriology
Background:
- Listeria monocytogenes poses a significant food safety risk.
- Bacteriophages offer a promising alternative for controlling bacterial infections.
- Phage resistance in Listeria monocytogenes is a growing concern.
Purpose of the Study:
- To characterize Listeria phage LP-018, a unique phage effective against resistant strains.
- To identify the genetic basis of resistance to phage LP-018 in Listeria monocytogenes.
- To explore the potential of phage LP-018 in biocontrol strategies.
Main Methods:
- Whole genome sequencing of phage LP-018 and resistant mutants.
- Transmission electron microscopy for phage morphology.
- One-step growth curve analysis to determine phage replication parameters.
- Isolation and characterization of phage-resistant mutants and phage mutants.
Main Results:
- Phage LP-018 belongs to the Homburgvirus genus, exhibiting slow growth and a small burst size.
- Resistance to LP-018 in Listeria monocytogenes is conferred by single mutations in LMRG_00278 or LMRG_01613 genes.
- LP-018 resistance mechanisms are independent of phage adsorption inhibition.
- A phage mutant with an altered host range was identified.
Conclusions:
- Phage LP-018 is a unique Listeria phage with potential for biocontrol.
- Understanding phage resistance mechanisms is crucial for developing effective phage therapy.
- Further evaluation is needed to optimize LP-018 for reducing phage resistance in Listeria monocytogenes.
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