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June 3, 20260 citationsOpen Access

A paradoxical population structure of var DBLα types in Africa

MTMun Hua TanKTKathryn E. TiedjeQFQian Feng

Key Points

  • This research investigates the diversity of DBLα types of var genes in African populations and their implications for malaria resilience.
  • Applied a novel classification algorithm (cUps) to categorize DBLα sequences available publicly.
  • Conducted deep sequencing in a population from northern Ghana over seven surveys from 2012 to 2017.
  • Compared the prevalence of DBLα types across Ghana, Gabon, Malawi, and Uganda.
  • Identified variants with rare-to-extreme frequencies, with common variants being temporally stable.
  • Some DBLα types were found at high frequencies across multiple African countries, while others were specific to single countries.
  • Indicated a common genome structure across isolates, suggesting advantages for the parasite in adapting to control measures.

Abstract

The var multigene family encodes Plasmodium falciparum erythrocyte membrane protein 1 (PfEMP1), central to host-parasite interactions. Genome structure studies have identified three major groups of var genes by specific upstream sequences (upsA, B, or C). Var with these ups groups have different chromosomal locations, transcriptional directions, and associations with disease severity. Here we explore temporal and spatial diversity of a region of var genes encoding the DBLα domain of PfEMP1 in Africa. By applying a novel ups classification algorithm (cUps) to publicly-available DBLα sequence datasets, we categorised DBLα according to association with the three ups groups, thereby avoiding the need to sequence complete genes. Data from deep sequencing of DBLα types in a local population in northern Ghana surveyed seven times from 2012 to 2017 found variants with rare-to-moderate-to-extreme frequencies, and the common variants were temporally stable in this local endemic area. Furthermore, we observed that every isolate repertoire, whether mono- or multiclonal, comprised DBLα types occurring with these frequency ranges implying a common genome structure. When comparing African countries of Ghana, Gabon, Malawi, and Uganda, we report that some DBLα types were consistently found at high frequencies in multiple African countries while others were common only at the country level. The implication of these local and pan-Africa population patterns is discussed in terms of advantage to the parasite with regards to within-host adaptation and resilience to malaria control.

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Cite This Study

Tan et al. (2025) studied this question.

synapsesocial.com/papers/6a1fc47adee9eb8c0dce5f5ehttps://doi.org/10.6082/n5b9d-e8p31
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