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Updated: Aug 8, 2025

Phage-Mediated Genetic Manipulation of the Lyme Disease Spirochete Borrelia burgdorferi
Published on: September 28, 2022
Endogenous Linear Plasmids lp28-4 and lp25 Are Required for Infectivity and Restriction Protection in the Lyme
Timothy Casselli1, Yvonne Tourand1, Kaitlyn Gura1
1Department of Biological Sciences, School of Medicine and Health Sciences, University of North Dakota, Grand Forks, North Dakota, USA.
Abstract:
Borrelia mayonii is a newly recognized causative agent of Lyme disease in the Upper Midwestern United States, with distinct clinical presentations compared to classical Lyme disease caused by other Lyme Borrelia species. However, little is known about the B. mayonii genetic determinants required for establishing infection or perpetuating disease in mammals. Extrachromosomal plasmids in Borrelia species often encode proteins necessary for infection and pathogenesis, and spontaneous loss of these plasmids can lead to the identification of virulence determinant genes. Here, we describe infection of Lyme disease-susceptible C3H mice with B. mayonii, and show bacterial dissemination and persistence in peripheral tissues. Loss of endogenous plasmids, including lp28-4, lp25, and lp36 correlated with reduced infectivity in mice. The apparent requirement for lp28-4 during murine infection suggests the presence of a novel virulence determinant, as this plasmid does not encode homologs of any known virulence determinant. We also describe transformation and stable maintenance of a self-replicating shuttle vector in B. mayonii, and show that loss of either lp25 or lp28-4 correlated with increased transformation competency. Finally, we demonstrate that linear plasmids lp25 and lp28-4 each encode functional restriction modification systems with distinct but partially overlapping target modification sequences, which likely accounts for the observed decrease in transformation efficiency when those plasmids are present. Taken together, this study describes a role for endogenous plasmids in mammalian infection and restriction protection in the Lyme disease spirochete Borrelia mayonii.
Insights
Borrelia mayonii plasmids, including lp28-4, are crucial for mammalian infection and persistence. Loss of these plasmids reduces infectivity and impacts transformation, revealing new insights into Lyme disease pathogenesis.
Area of Science:
- Microbiology
- Genetics
- Infectious Diseases
Background:
- Borrelia mayonii causes Lyme disease in the Upper Midwest.
- Its genetic determinants for infection are largely unknown.
- Extrachromosomal plasmids often contain virulence genes in Borrelia species.
Purpose of the Study:
- To investigate the role of Borrelia mayonii plasmids in mammalian infection.
- To identify genetic determinants of B. mayonii virulence.
- To characterize B. mayonii transformation and plasmid function.
Main Methods:
- Infection of C3H mice with B. mayonii.
- Analysis of bacterial dissemination and persistence.
- Plasmid loss experiments and transformation competency assays.
- Identification of restriction modification systems on plasmids.
Main Results:
- Loss of plasmids lp28-4, lp25, and lp36 correlated with reduced B. mayonii infectivity in mice.
- lp28-4 appears to encode a novel virulence determinant.
- Plasmid loss increased transformation competency.
- lp25 and lp28-4 encode functional restriction modification systems.
Conclusions:
- Endogenous plasmids play a significant role in Borrelia mayonii mammalian infection.
- Specific plasmids are essential for infectivity and provide restriction protection.
- This study identifies novel virulence factors and mechanisms in B. mayonii.
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