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Largest genome-wide study of parasite provides clearest picture yet of genetic changes driving artemisinin resistance artemisinin-genetics-resistance. Hinxton, Cambridge, UK, 19 January 2015 – The largest genome-wide association study to date of the malaria parasite Plasmodium falciparum unveils a complex genetic architecture that enables the parasite to develop resistance to our most effective antimalarial drug, artemisinin.

Maps of South East Asia showing drug resistance to antimalarials
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Real-time genetic surveillance can support timely, evidence-based responses to shifting malaria threats

A sharp decline in piperaquine-resistant strains of P. Falciparum malaria following drug policy revisions across the Greater Mekong Subregion (GMS) highlights how real-time genetic data can support timely, evidence-based responses to shifting malaria threats, say researchers in a study published in Nature Communications.