Ancient genomes reveal how European colonisation brought smallpox to the Americas

Posted on: 31 July 2026

Smallpox, caused by variola virus, played a major role in the catastrophic population decline experienced by Indigenous peoples after European arrival.

Smallpox story image

Researchers have recovered and analysed the first ancient smallpox virus genomes ever identified in the Americas, providing the strongest direct evidence to date that the disease was introduced through European colonisation.

Smallpox, caused by variola virus, played a major role in the catastrophic population decline experienced by Indigenous peoples after European arrival. Such was the extent of those declines, that many claim smallpox and other introduced diseases entirely reshaped societies, killing hundreds of millions of people. 

Until now, however, there had been no direct genetic evidence linking colonial-era outbreaks in the Americas to strains circulating in the Old World.

The study, just published in leading international journal Science, analysed ancient viral DNA recovered from two individuals from a local community buried in northern Chile between the late 15th and early 17th centuries. The researchers found that the viruses belonged to a now-extinct lineage of variola virus that sits evolutionarily between medieval European strains and the strains that circulated in later centuries. 

“This discovery provides the first molecular confirmation that smallpox was carried to the Americas during the colonial period,” said Dr Shigeki Nakagome, from Trinity’s School of Medicine (pictured below on left), “but beyond tracing the disease’s arrival, our study also sheds new light on how smallpox evolved.

“We found that the virus underwent a long period of genetic change up to the 16th century, but that its evolution slowed markedly during the height of colonial expansion and major smallpox epidemics in the 17th and 18th centuries,” said Dr Lara Cassidy, from Trinity’s School of Genetics and Microbiology (pictured below on right)

“This suggests that the virus may have reached an evolutionary optimum, allowing it to spread successfully with little further adaptation – possibly aided by the lack of immunity newly exposed populations had.”

The team also found evidence that this period of evolutionary stability may have ended in the 19th century when vaccination became increasingly widespread. As immunity levels rose, the pace of viral evolution appears to have increased again.

A woman and a man pose

Bruno Romero González, a PhD student in Trinity’s School of Medicine (pictured below on left), said: “Taken together, the findings show how major historical events including colonisation, population change and vaccination likely shaped the evolution of one of humanity’s most devastating infectious diseases, while also demonstrating the power of ancient DNA to address longstanding historical questions.”

Two men pose, smiling

Specifically, the work:

  • Expands the field of ancient pathogen genomics, demonstrating how ancient DNA can uncover aspects of disease history that are invisible in historical records alone. This opens new opportunities to study past epidemics and their impacts on global human populations. 

The research was funded by Research Ireland and Agencia Nacional de Investigación y Desarrollo. 

ENDS

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