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Updated: Aug 17, 2025

Heuristic Mining of Hierarchical Genotypes and Accessory Genome Loci in Bacterial Populations
Published on: December 7, 2021
Pathogen genomics study of an early medieval community in Germany reveals extensive co-infections
Joanna H Bonczarowska1, Julian Susat1, Barbara Mühlemann2,3
1Institute of Clinical Molecular Biology, Kiel University, 24105, Kiel, Germany.
Background:
The pathogen landscape in the Early European Middle Ages remains largely unexplored. Here, we perform a systematic pathogen screening of the rural community Lauchheim "Mittelhofen," in present-day Germany, dated to the Merovingian period, between fifth and eighth century CE. Skeletal remains of individuals were subjected to an ancient DNA metagenomic analysis. Genomes of the detected pathogens were reconstructed and analyzed phylogenetically.
Results:
Over 30% of the individuals exhibit molecular signs of infection with hepatitis B virus (HBV), parvovirus B19, variola virus (VARV), and Mycobacterium leprae. Seven double and one triple infection were detected. We reconstructed four HBV genomes and one genome each of B19, VARV, and M. leprae. All HBV genomes are of genotype D4 which is rare in Europe today. The VARV strain exhibits a unique pattern of gene loss indicating that viruses with different gene compositions were circulating in the Early Middle Ages. The M. leprae strain clustered in branch 3 together with the oldest to-date genome from the UK.
Conclusions:
The high burden of infectious disease, together with osteological markers of physiological stress, reflect a poor health status of the community. This could have been an indirect result of the climate decline in Europe at the time, caused by the Late Antique Little Ice Age (LALIA). Our findings suggest that LALIA may have created an ecological context in which persistent outbreaks set the stage for major epidemics of severe diseases such as leprosy and smallpox hundreds of years later.
Insights
Ancient DNA analysis of a Merovingian-era German community reveals widespread infections, including hepatitis B virus (HBV), parvovirus B19, variola virus (VARV), and Mycobacterium leprae. Climate decline may have contributed to disease outbreaks.
Area of Science:
- Paleomicrobiology
- Ancient DNA Analysis
- Medieval History
Background:
- Pathogen landscape of the Early European Middle Ages is poorly understood.
- Systematic pathogen screening of a Merovingian-period (5th-8th century CE) rural community in Germany was conducted.
- Ancient DNA metagenomic analysis was applied to skeletal remains.
Purpose of the Study:
- To investigate the pathogen landscape in a Merovingian-era German community.
- To reconstruct and phylogenetically analyze pathogen genomes.
- To understand the health status and disease burden of the community.
Main Methods:
- Ancient DNA metagenomic analysis of skeletal remains.
- Pathogen genome reconstruction.
- Phylogenetic analysis of pathogen genomes.
Main Results:
- Over 30% of individuals showed signs of infection with hepatitis B virus (HBV), parvovirus B19, variola virus (VARV), and Mycobacterium leprae.
- Four HBV genomes (genotype D4), and one each of B19, VARV, and M. leprae were reconstructed.
- The VARV strain showed unique gene loss, and the M. leprae strain clustered with the oldest known genome.
Conclusions:
- High infectious disease burden and physiological stress indicate poor community health.
- Climate decline (Late Antique Little Ice Age) may have fostered conditions for widespread outbreaks.
- These outbreaks may have preceded major epidemics of diseases like leprosy and smallpox.
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