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  5. A Major Genome Region Underlying Artemisinin Resistance in Malaria

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Article
English
2012

A Major Genome Region Underlying Artemisinin Resistance in Malaria

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English
2012
Science
Vol 336 (6077)
DOI: 10.1126/science.1215966

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Sir Nicholas White
Sir Nicholas White

University Of Cambridge

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Ian H. Cheeseman
Becky A. Miller
Shalini Nair
+19 more

Abstract

Evolving resistance to artemisinin-based compounds threatens to derail attempts to control malaria. Resistance has been confirmed in western Cambodia and has recently emerged in western Thailand, but is absent from neighboring Laos. Artemisinin resistance results in reduced parasite clearance rates (CRs) after treatment. We used a two-phase strategy to identify genome region(s) underlying this ongoing selective event. Geographical differentiation and haplotype structure at 6969 polymorphic single-nucleotide polymorphisms (SNPs) in 91 parasites from Cambodia, Thailand, and Laos identified 33 genome regions under strong selection. We screened SNPs and microsatellites within these regions in 715 parasites from Thailand, identifying a selective sweep on chromosome 13 that shows strong association (P = 10(-6) to 10(-12)) with slow CRs, illustrating the efficacy of targeted association for identifying the genetic basis of adaptive traits.

How to cite this publication

Ian H. Cheeseman, Becky A. Miller, Shalini Nair, Standwell C. Nkhoma, Asako Tan, John C. Tan, Salma Al Saai, Aung Pyae Phyo, Carit ler Moo, Khin Maung Lwin, Rose McGready, Elizabeth A. Ashley, Mallika Imwong, Kasia Stepniewska, Poravuth Yi, Arjen M. Dondorp, Mayfong Mayxay, Paul N. Newton, Sir Nicholas White, François Nosten, Michael T. Ferdig, Timothy J. C. Anderson (2012). A Major Genome Region Underlying Artemisinin Resistance in Malaria. Science, 336(6077), pp. 79-82, DOI: 10.1126/science.1215966.

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Publication Details

Type

Article

Year

2012

Authors

22

Datasets

0

Total Files

0

Language

English

Journal

Science

DOI

10.1126/science.1215966

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