The apicoplast link to fever-survival and artemisinin-resistance in the malaria parasite

Repeating fever is a hallmark of malaria. Here, a large-scale forward genetic screen in malaria-causing Plasmodium falciparum identifies genes associated with parasite tolerance to host fever, including apicoplast targeted isoprenoid biosynthesis—sharing features with artemisinin resistance.

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Autores principales: Min Zhang, Chengqi Wang, Jenna Oberstaller, Phaedra Thomas, Thomas D. Otto, Debora Casandra, Sandhya Boyapalle, Swamy R. Adapa, Shulin Xu, Katrina Button-Simons, Matthew Mayho, Julian C. Rayner, Michael T. Ferdig, Rays H. Y. Jiang, John H. Adams
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/6cf614cb2d744e3081e92819ff983c47
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spelling oai:doaj.org-article:6cf614cb2d744e3081e92819ff983c472021-12-02T16:30:11ZThe apicoplast link to fever-survival and artemisinin-resistance in the malaria parasite10.1038/s41467-021-24814-12041-1723https://doaj.org/article/6cf614cb2d744e3081e92819ff983c472021-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24814-1https://doaj.org/toc/2041-1723Repeating fever is a hallmark of malaria. Here, a large-scale forward genetic screen in malaria-causing Plasmodium falciparum identifies genes associated with parasite tolerance to host fever, including apicoplast targeted isoprenoid biosynthesis—sharing features with artemisinin resistance.Min ZhangChengqi WangJenna OberstallerPhaedra ThomasThomas D. OttoDebora CasandraSandhya BoyapalleSwamy R. AdapaShulin XuKatrina Button-SimonsMatthew MayhoJulian C. RaynerMichael T. FerdigRays H. Y. JiangJohn H. AdamsNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-15 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Min Zhang
Chengqi Wang
Jenna Oberstaller
Phaedra Thomas
Thomas D. Otto
Debora Casandra
Sandhya Boyapalle
Swamy R. Adapa
Shulin Xu
Katrina Button-Simons
Matthew Mayho
Julian C. Rayner
Michael T. Ferdig
Rays H. Y. Jiang
John H. Adams
The apicoplast link to fever-survival and artemisinin-resistance in the malaria parasite
description Repeating fever is a hallmark of malaria. Here, a large-scale forward genetic screen in malaria-causing Plasmodium falciparum identifies genes associated with parasite tolerance to host fever, including apicoplast targeted isoprenoid biosynthesis—sharing features with artemisinin resistance.
format article
author Min Zhang
Chengqi Wang
Jenna Oberstaller
Phaedra Thomas
Thomas D. Otto
Debora Casandra
Sandhya Boyapalle
Swamy R. Adapa
Shulin Xu
Katrina Button-Simons
Matthew Mayho
Julian C. Rayner
Michael T. Ferdig
Rays H. Y. Jiang
John H. Adams
author_facet Min Zhang
Chengqi Wang
Jenna Oberstaller
Phaedra Thomas
Thomas D. Otto
Debora Casandra
Sandhya Boyapalle
Swamy R. Adapa
Shulin Xu
Katrina Button-Simons
Matthew Mayho
Julian C. Rayner
Michael T. Ferdig
Rays H. Y. Jiang
John H. Adams
author_sort Min Zhang
title The apicoplast link to fever-survival and artemisinin-resistance in the malaria parasite
title_short The apicoplast link to fever-survival and artemisinin-resistance in the malaria parasite
title_full The apicoplast link to fever-survival and artemisinin-resistance in the malaria parasite
title_fullStr The apicoplast link to fever-survival and artemisinin-resistance in the malaria parasite
title_full_unstemmed The apicoplast link to fever-survival and artemisinin-resistance in the malaria parasite
title_sort apicoplast link to fever-survival and artemisinin-resistance in the malaria parasite
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/6cf614cb2d744e3081e92819ff983c47
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