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Evolution of immune genes is associated with the Black Death

PRJNA798381 Original Paper / DOI2022-10-19206 samples (study)

AI interpretationAI-generated

Black Death left a genetic mark on immune genes in Europeans.

The Black Death killed 30-50% of Afro-Eurasia. Researchers studied ancient DNA from 206 people in London and Denmark before, during, and after the plague. They found immune genes were strongly targeted by natural selection. One variant near ERAP2 stood out: it helped people produce a full-length protein, control Yersinia pestis inside macrophages, and survive. This same variant today raises risk for autoimmune diseases.

Sample interpretation

The study analyzed 206 ancient DNA extracts from two European populations: London and Denmark. Samples spanned before, during, and after the Black Death. The site database lists one sample with Y-haplogroup E-M132, resolved to the E lineage. No mitochondrial or cultural data were provided. This small sample size means the genetic findings come from the paper's broader dataset, not just this single entry.

For genealogy enthusiasts

For ancestry fans, this shows how ancient pandemics shaped modern immune genes. The same variants that helped survive the Black Death may now influence autoimmune susceptibility, linking past selection to present-day health.

Abstract

Infectious diseases are among the strongest selective pressures driving human evolution1,2. This includes the single greatest mortality event in recorded history, the first outbreak of the second pandemic of plague, commonly called the Black Death, which was caused by the bacterium Yersinia pestis3. This pandemic devastated Afro-Eurasia, killing up to 30–50% of the population4. To identify loci that may have been under selection during the Black Death, we characterized genetic variation around immune-related genes from 206 ancient DNA extracts, stemming from two different European populations before, during and after the Black Death. Immune loci are strongly enriched for highly differentiated sites relative to a set of non-immune loci, suggesting positive selection. We identify 201 variants that are highly differentiated within the London dataset. Combining evidence from during the Black Death, our replicate population in Denmark, and function evidence, rs2549794 near ERAP2 emerges as the strongest candidate for positive selection. The selected allele at rs2549794 is associated with the production of a full-length (versus truncated) ERAP2 transcript, variation in cytokine response to Y. pestis and increased ability to control intracellular Y. pestis in macrophages. Finally, we show that protective variants overlap with alleles that are today associated with increased susceptibility to autoimmune diseases, providing empirical evidence for the role played by past pandemics in shaping present-day susceptibility to disease.

Samples & Data on TheYtree

1samples on site
1Y haplogroup resolved

Paternal (Y-DNA) Haplogroups

HaplogroupSamples
E-M132 1

Sample Highlights More samples →

SampleY-DNAmtDNACulture / Period
LP164 E-M132 —