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Genomic epidemiology of artemisinin resistant malaria

  • Roberto Amato
  • , Olivo Miotto
  • , Charles J. Woodrow
  • , Jacob Almagro-Garcia
  • , Ipsita Sinha
  • , Susana Campino
  • , Daniel Mead
  • , Eleanor Drury
  • , Mihir Kekre
  • , Mandy Sanders
  • , Alfred Amambua-Ngwa
  • , Chanaki Amaratunga
  • , Lucas Amenga-Etego
  • , Voahangy Andrianaranjaka
  • , Tobias Apinjoh
  • , Elizabeth Ashley
  • , Sarah Auburn
  • , Gordon A. Awandare
  • , Vito Baraka
  • , Alyssa Barry
  • Maciej F. Boni, Steffen Borrmann, Teun Bousema, Oralee Branch, Peter C. Bull, Kesinee Chotivanich, David J. Conway, Alister Craig, Nicholas P. Day, Abdoulaye Djimdé, Christiane Dolecek, Arjen M. Dondorp, Chris Drakeley, Patrick Duffy, Diego F. Echeverry, Thomas G. Egwang, Rick M. Fairhurst, Abul Faiz, Caterina I. Fanello, Tran Tinh Hien, Abraham Hodgson, Mallika Imwong, Deus Ishengoma, Pharath Lim, Chanthap Lon, Jutta Marfurt, Kevin Marsh, Mayfong Mayxay, Pascal Michon, Victor Mobegi
  • Wellcome Sanger Institute
  • University of Oxford
  • Mahidol University
  • Medical Research Council Laboratories Gambia
  • National Institutes of Health
  • University for Development Studies Ghana
  • Institut Pasteur de Madagascar
  • University of Buea
  • Charles Darwin University
  • University of Ghana
  • National Institute for Medical Research Tanzania
  • University of Antwerp
  • Walter and Eliza Hall Institute of Medical Research
  • University of Melbourne
  • Kenya Medical Research Institute
  • University of Tübingen
  • London School of Hygiene and Tropical Medicine
  • New York University
  • Liverpool School of Tropical Medicine
  • Université de Bamako
  • Purdue University
  • Internacional Centre for Medical Research and Training (CIDEIM)
  • Med Biotech Laboratories Ltd.
  • Malaria Research Group and Dev Care Foundation
  • National Centre for Parasitology, Entomology and Malaria Control
  • Armed Forces Research Institute of Medical Sciences, Thailand
  • Lao PDR
  • University of Health Sciences
  • Divine Word University
  • University of Ilorin
  • Pennsylvania State University

Research output: Contribution to journalArticlepeer-review

219 Citations (Scopus)

Abstract

The current epidemic of artemisinin resistant Plasmodium falciparum in Southeast Asia is the result of a soft selective sweep involving at least 20 independent kelch13 mutations. In a large global survey, we find that kelch13 mutations which cause resistance in Southeast Asia are present at low frequency in Africa. We show that African kelch13 mutations have originated locally, and that kelch13 shows a normal variation pattern relative to other genes in Africa, whereas in Southeast Asia there is a great excess of non-synonymous mutations, many of which cause radical amino-acid changes. Thus, kelch13 is not currently undergoing strong selection in Africa, despite a deep reservoir of variations that could potentially allow resistance to emerge rapidly. The practical implications are that public health surveillance for artemisinin resistance should not rely on kelch13 data alone, and interventions to prevent resistance must account for local evolutionary conditions, shown by genomic epidemiology to differ greatly between geographical regions.
Original languageEnglish
Article numbere08714
JournaleLife
Volume5
Issue numberMARCH2016
DOIs
Publication statusPublished - 4 Mar 2016

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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