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Cultivation Methods of Spirochetes from Borrelia burgdorferi Sensu Lato Complex and Relapsing Fever Borrelia
Published on: November 25, 2022
Genomic blueprint of a relapsing fever pathogen in 15th century Scandinavia
Meriam Guellil1, Oliver Kersten2, Amine Namouchi2
1Centre for Ecological and Evolutionary Synthesis, Department of Biosciences, University of Oslo, N-0316 Oslo, Norway; meriam.guellil@ibv.uio.no n.c.stenseth@ibv.uio.no barbara.bramanti@ibv.uio.no.
Abstract:
Louse-borne relapsing fever (LBRF) is known to have killed millions of people over the course of European history and remains a major cause of mortality in parts of the world. Its pathogen, Borrelia recurrentis, shares a common vector with global killers such as typhus and plague and is known for its involvement in devastating historical epidemics such as the Irish potato famine. Here, we describe a European and historical genome of Brecurrentis, recovered from a 15th century skeleton from Oslo. Our distinct European lineage has a discrete genomic makeup, displaying an ancestral oppA-1 gene and gene loss in antigenic variation sites. Our results illustrate the potential of ancient DNA research to elucidate dynamics of reductive evolution in a specialized human pathogen and to uncover aspects of human health usually invisible to the archaeological record.
Insights
Louse-borne relapsing fever (LBRF) caused by Borrelia recurrentis historically killed millions. Ancient DNA reveals a 15th-century European B. recurrentis genome, showing reductive evolution in this pathogen.
Area of Science:
- Paleogenomics
- Evolutionary Biology
- Infectious Disease
Background:
- Louse-borne relapsing fever (LBRF), caused by Borrelia recurrentis, has historically caused significant mortality.
- Borrelia recurrentis shares vectors with other major pathogens like typhus and plague.
Observation:
- A 15th-century European genome of Borrelia recurrentis was recovered from a skeleton in Oslo.
- This ancient European lineage exhibits a distinct genomic profile.
Findings:
- The European B. recurrentis genome possesses an ancestral oppA-1 gene.
- Gene loss in antigenic variation sites was observed in this historical lineage.
Implications:
- Ancient DNA analysis can illuminate the reductive evolution of specialized human pathogens.
- This research uncovers previously hidden aspects of human health within the archaeological record.
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