The origins of malaria artemisinin resistance defined by a genetic and transcriptomic background

Mechanisms underlying increasing artemisinin resistance of Plasmodium in Southeast Asia remain unclear. Here, Zhu et al. integrate TWAS, GWAS and eQTL analyses for 773 P. falciparum isolates and identify genetic and transcriptomic backgrounds to artemisinin resistance.

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Autores principales: Lei Zhu, Jaishree Tripathi, Frances Maureen Rocamora, Olivo Miotto, Rob van der Pluijm, Till S. Voss, Sachel Mok, Dominic P. Kwiatkowski, François Nosten, Nicholas P. J. Day, Nicholas J. White, Arjen M. Dondorp, Zbynek Bozdech, Tracking Resistance to Artemisinin Collaboration I
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/78b188f3f3594bb18931bf64b446c61b
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spelling oai:doaj.org-article:78b188f3f3594bb18931bf64b446c61b2021-12-02T15:34:47ZThe origins of malaria artemisinin resistance defined by a genetic and transcriptomic background10.1038/s41467-018-07588-x2041-1723https://doaj.org/article/78b188f3f3594bb18931bf64b446c61b2018-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-07588-xhttps://doaj.org/toc/2041-1723Mechanisms underlying increasing artemisinin resistance of Plasmodium in Southeast Asia remain unclear. Here, Zhu et al. integrate TWAS, GWAS and eQTL analyses for 773 P. falciparum isolates and identify genetic and transcriptomic backgrounds to artemisinin resistance.Lei ZhuJaishree TripathiFrances Maureen RocamoraOlivo MiottoRob van der PluijmTill S. VossSachel MokDominic P. KwiatkowskiFrançois NostenNicholas P. J. DayNicholas J. WhiteArjen M. DondorpZbynek BozdechTracking Resistance to Artemisinin Collaboration INature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-13 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Lei Zhu
Jaishree Tripathi
Frances Maureen Rocamora
Olivo Miotto
Rob van der Pluijm
Till S. Voss
Sachel Mok
Dominic P. Kwiatkowski
François Nosten
Nicholas P. J. Day
Nicholas J. White
Arjen M. Dondorp
Zbynek Bozdech
Tracking Resistance to Artemisinin Collaboration I
The origins of malaria artemisinin resistance defined by a genetic and transcriptomic background
description Mechanisms underlying increasing artemisinin resistance of Plasmodium in Southeast Asia remain unclear. Here, Zhu et al. integrate TWAS, GWAS and eQTL analyses for 773 P. falciparum isolates and identify genetic and transcriptomic backgrounds to artemisinin resistance.
format article
author Lei Zhu
Jaishree Tripathi
Frances Maureen Rocamora
Olivo Miotto
Rob van der Pluijm
Till S. Voss
Sachel Mok
Dominic P. Kwiatkowski
François Nosten
Nicholas P. J. Day
Nicholas J. White
Arjen M. Dondorp
Zbynek Bozdech
Tracking Resistance to Artemisinin Collaboration I
author_facet Lei Zhu
Jaishree Tripathi
Frances Maureen Rocamora
Olivo Miotto
Rob van der Pluijm
Till S. Voss
Sachel Mok
Dominic P. Kwiatkowski
François Nosten
Nicholas P. J. Day
Nicholas J. White
Arjen M. Dondorp
Zbynek Bozdech
Tracking Resistance to Artemisinin Collaboration I
author_sort Lei Zhu
title The origins of malaria artemisinin resistance defined by a genetic and transcriptomic background
title_short The origins of malaria artemisinin resistance defined by a genetic and transcriptomic background
title_full The origins of malaria artemisinin resistance defined by a genetic and transcriptomic background
title_fullStr The origins of malaria artemisinin resistance defined by a genetic and transcriptomic background
title_full_unstemmed The origins of malaria artemisinin resistance defined by a genetic and transcriptomic background
title_sort origins of malaria artemisinin resistance defined by a genetic and transcriptomic background
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/78b188f3f3594bb18931bf64b446c61b
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