TY - JOUR
T1 - Human plasmodium vivax diversity, population structure and evolutionary origin
AU - Rougeron, Virginie
AU - Elguero, Eric
AU - Arnathau, Céline
AU - Hidalgo, Beatriz Acuña
AU - Durand, Patrick
AU - Houze, Sandrine
AU - Berry, Antoine
AU - Zakeri, Sedigheh
AU - Haque, Rashidul
AU - Alam, Mohammad Shafiul
AU - Nosten, François
AU - Severini, Carlo
AU - Woldearegai, Tamirat Gebru
AU - Mordmüller, Benjamin
AU - Kremsner, Peter Gottfried
AU - González-Cerón, Lilia
AU - Fontecha, Gustavo
AU - Gamboa, Dionicia
AU - Musset, Lise
AU - Legrand, Eric
AU - Noya, Oscar
AU - Pumpaibool, Tepanata
AU - Harnyuttanakorn, Pingchai
AU - Lekweiry, Khadijetou Mint
AU - Albsheer, Musab Mohamad
AU - Hamid, Muzamil Mahdi Abdel
AU - Boukary, Ali Ould Mohamed Salem
AU - Trape, Jean François
AU - Renaud, François
AU - Prugnolle, Franck
N1 - Publisher Copyright:
© 2020 Rougeron et al.
PY - 2020
Y1 - 2020
N2 - More than 200 million malaria clinical cases are reported each year due to Plasmodium vivax, the most widespread Plasmodium species in the world. This species has been neglected and understudied for a long time, due to its lower mortality in comparison with Plasmodium falciparum. A renewed interest has emerged in the past decade with the dis-covery of antimalarial drug resistance and of severe and even fatal human cases. Nonethe-less, today there are still significant gaps in our understanding of the population genetics and evolutionary history of P. vivax, particularly because of a lack of genetic data from Africa. To address these gaps, we genotyped 14 microsatellite loci in 834 samples obtained from 28 locations in 20 countries from around the world. We discuss the worldwide population genetic structure and diversity and the evolutionary origin of P. vivax in the world and its introduction into the Americas. This study demonstrates the importance of conducting genome-wide analyses of P. vivax in order to unravel its complex evolutionary history.
AB - More than 200 million malaria clinical cases are reported each year due to Plasmodium vivax, the most widespread Plasmodium species in the world. This species has been neglected and understudied for a long time, due to its lower mortality in comparison with Plasmodium falciparum. A renewed interest has emerged in the past decade with the dis-covery of antimalarial drug resistance and of severe and even fatal human cases. Nonethe-less, today there are still significant gaps in our understanding of the population genetics and evolutionary history of P. vivax, particularly because of a lack of genetic data from Africa. To address these gaps, we genotyped 14 microsatellite loci in 834 samples obtained from 28 locations in 20 countries from around the world. We discuss the worldwide population genetic structure and diversity and the evolutionary origin of P. vivax in the world and its introduction into the Americas. This study demonstrates the importance of conducting genome-wide analyses of P. vivax in order to unravel its complex evolutionary history.
UR - https://www.scopus.com/pages/publications/85082145367
U2 - 10.1371/journal.pntd.0008072
DO - 10.1371/journal.pntd.0008072
M3 - Artículo
C2 - 32150544
AN - SCOPUS:85082145367
SN - 1935-2727
VL - 14
SP - 1
EP - 17
JO - PLoS Neglected Tropical Diseases
JF - PLoS Neglected Tropical Diseases
IS - 3
M1 - e0008072
ER -