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Source of cholera pandemic revealed

25 August 2011

Researchers have used next-generation sequencing to trace the source and explain the spread of the latest cholera pandemic, the seventh major outbreak of the disease. The research also highlights the impact of antibiotic resistance on shaping outbreaks and shows that in this case, resistance was first acquired around 1982.

Cholera is caused by infection with the Vibrio cholerae bacterium. It is a diarrhoeal infection usually linked to unhygienic conditions and poor sanitation systems and often found in disaster areas, such as parts of Haitian hit by the earthquake in October 2010. It is estimated that cholera affects 3 million to 5 million people each year, with 100 000 to 120 000 deaths.

Using whole-genome sequencing, the international team of researchers has discovered that the particular cholera type responsible for the current pandemic can be traced back to an ancestor that first appeared 40 years ago in the Bay of Bengal. From this ancestor, cholera has spread repeatedly to different parts of the world in multiple waves.

The team tracked the spread of the organism by analysing the genomes of V. cholerae samples taken from 154 patients across the world over the last 40 years. Using the ability to track single DNA changes in the genome of this strain, they were able to map the transmission routes of the bacteria, aiding future health planning and enabling 'backtracking' of the disease to its origin.

Their findings reveal that the current strain of the bacterium - known as the El Tor strain - first became resistant to antibiotics in 1982 by acquiring the genetic region SXT, which entered the bacterial genome at that time and triggered renewed global transmission from the original source.

Dr Julian Parkhill, a senior group leader at the Wellcome Trust Sanger Institute and a senior author of the study, said: "Our research shows the importance of global transmission events in the spread of cholera. This goes against previous beliefs that cholera always arises from local strains, and provides useful information in understanding cholera outbreaks."

Crucially, the study identified the origins of the pandemic strain to its roots 40 years ago in the Bay of Bengal. From this base, it has since infected people around the world, including in Africa, South Asia and South America.

"By tracking how the disease is spread, our maps of transmission could influence future decisions on how to tackle this disease," explains Nicholas Thomson from the Sanger Institute and one of the first authors of the study.

The analysis shows that there was not a simple, single spread of a strain of V. cholerae out from the Bay of Bengal. The evidence suggests that there have been at least three independent overlapping waves of intercontinental spread with a common ancestor in the 1950s, representing the original El Tor strain. These movements are strongly correlated with human activity, suggesting that the strain has been carried by human travel.

"These findings are opening up new pathways for researchers studying all fields of bacterial infection: from investigating how genetic changes enable strains to build up resistance to antibiotics, to being able to track a disease's transmission and trace it back to its roots," says Ankur Mutreja, first author from the Sanger Institute. "These first initial discoveries could be the key to unlocking many other bacterial pandemics."

"This is among the first study that merges evolutionary information with emergence of contemporary new variants of Vibrio cholerae and then uses the phylogenetic signatures to track the intercontinental spread of cholera," explains Professor G Balakrish Nair, Director of the National Institute of Cholera and Enteric Diseases in Kolkata, India. "These findings in due course will lead us to understand why cholera pandemics begin in South-east Asia and then spread as a wave across the world."

Image: Vibrio cholerae. Credit: AJC1 on Flickr

Reference

Mutreja A et al. Evidence for several waves of global transmission in the seventh cholera pandemic. Nature 2011 [epub].

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