Genetic Determination and Linkage Mapping of Plasmodium falciparum Malaria Related Traits in Senegal
Open Access
- 23 April 2008
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLOS ONE
- Vol. 3 (4) , e2000
- https://doi.org/10.1371/journal.pone.0002000
Abstract
Plasmodium falciparum malaria episodes may vary considerably in their severity and clinical manifestations. There is good evidence that host genetic factors contribute to this variability. To date, most genetic studies aiming at the identification of these genes have used a case/control study design for severe malaria, exploring specific candidate genes. Here, we performed a family-based genetic study of falciparum malaria related phenotypes in two independent longitudinal survey cohorts, as a first step towards the identification of genes and mechanisms involved in the outcome of infection. We studied two Senegalese villages, Dielmo and Ndiop that differ in ethnicity, malaria transmission and endemicity. We performed genome-scan linkage analysis of several malaria-related phenotypes both during clinical attacks and asymptomatic infection. We show evidence for a strong genetic contribution to both the number of clinical falciparum malaria attacks and the asymptomatic parasite density. The asymptomatic parasite density showed linkage to chromosome 5q31 (LOD = 2.26, empirical p = 0.0014, Dielmo), confirming previous findings in other studies. Suggestive linkage values were also obtained at three additional chromosome regions: the number of clinical malaria attacks on chromosome 5p15 (LOD = 2.57, empirical p = 0.001, Dielmo) and 13q13 (LOD = 2.37, empirical p = 0.0014 Dielmo), and the maximum parasite density during asymptomatic infection on chromosome 12q21 (LOD = 3.1, empirical p−4, Ndiop). While regions of linkage show little overlap with genes known to be involved in severe malaria, the four regions appear to overlap with regions linked to asthma or atopy related traits, suggesting that common immune related pathways may be involved.Keywords
This publication has 90 references indexed in Scilit:
- Inhibition of histamine-mediated signaling confers significant protection against severe malaria in mouse models of diseaseThe Journal of Experimental Medicine, 2008
- Association of autism with polymorphisms in the paired-like homeodomain transcription factor 1 (PITX1) on chromosome 5q31: a candidate gene analysisBMC Medical Genetics, 2007
- Genes at human chromosome 5q31.1 regulate delayed-type hypersensitivity responses associated with Leishmania chagasi infectionGenes & Immunity, 2007
- Genome-Wide Linkage Analysis of Malaria Infection Intensity and Mild DiseasePLoS Genetics, 2007
- X-Linked G6PD Deficiency Protects Hemizygous Males but Not Heterozygous Females against Severe MalariaPLoS Medicine, 2007
- A Large-Scale Genetic Association Study Confirms IL12B and Leads to the Identification of IL23R as Psoriasis-Risk GenesAmerican Journal of Human Genetics, 2007
- Rapid Dissemination of Plasmodium falciparum Drug Resistance Despite Strictly Controlled Antimalarial UsePLOS ONE, 2007
- Heritability of Malaria in AfricaPLoS Medicine, 2005
- Linkage and association between Plasmodium falciparum blood infection levels and chromosome 5q31–q33Genes & Immunity, 2003
- Combating malaria morbidity and mortality by reducing transmissionParasitology Today, 1996