Population genomics ofPlasmodium ovalespecies in sub-Saharan Africa

Author:

Carey-Ewend KellyORCID,Popkin-Hall Zachary R.ORCID,Simkin AlfredORCID,Muller Meredith,Hennelly ChrisORCID,He WenqiaoORCID,Moser Kara A.ORCID,Gaither ClaudiaORCID,Niaré KaramokoORCID,Aghakanian FarhangORCID,Feleke SindewORCID,Brhane Bokretsion G.ORCID,Phanzu Fernandine,Mwandagalirwa Kashamuka,Aydemir OzkanORCID,Sutherland ColinORCID,Ishengoma Deus S.ORCID,Ali Innocent M.ORCID,Ngasala BillyORCID,Kalonji AlbertORCID,Tshefu Antoinette,Parr JonathanORCID,Bailey Jeffrey A.ORCID,Juliano Jonathan J.ORCID,Lin Jessica T.ORCID

Abstract

AbstractPlasmodium ovale curtisi(Poc)andPlasmodium ovale wallikeri(Pow) are relapsing malaria parasites endemic to Africa and Asia that were previously thought to represent a single species. Amid increasing detection of ovale malaria in sub-Saharan Africa, we performed a population genomic study of both species across the continent. We conducted whole-genome sequencing of 25 isolates from central and east Africa and analyzed them alongside four previously published west and central African genomes. Isolates were predominantly monoclonal (27/29), with their genetic similarity aligning with geography.Powshowed lower average nucleotide diversity (1.9×10-4) across the genome compared toPoc(2.8×10-4) (p < 0.0001). Signatures of selective sweeps involving the dihydrofolate reductase gene were found in both species, as were signs of balancing selection at the merozoite surface protein 1 gene. Differences in the nucleotide diversity ofPocandPowmay reflect unique demographic history, even as similar selective forces facilitate their resilience to malaria control interventions.

Publisher

Cold Spring Harbor Laboratory

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