coiaf: Directly estimating complexity of infection with allele frequencies

Author:

Paschalidis ArisORCID,Watson Oliver J.ORCID,Aydemir OzkanORCID,Verity RobertORCID,Bailey Jeffrey A.ORCID

Abstract

In malaria, individuals are often infected with different parasite strains. The complexity of infection (COI) is defined as the number of genetically distinct parasite strains in an individual. Changes in the mean COI in a population have been shown to be informative of changes in transmission intensity with a number of probabilistic likelihood and Bayesian models now developed to estimate the COI. However, rapid, direct measures based on heterozygosity or FwS do not properly represent the COI. In this work, we present two new methods that use easily calculated measures to directly estimate the COI from allele frequency data. Using a simulation framework, we show that our methods are computationally efficient and comparably accurate to current approaches in the literature. Through a sensitivity analysis, we characterize how the distribution of parasite densities, the assumed sequencing depth, and the number of sampled loci impact the bias and accuracy of our two methods. Using our developed methods, we further estimate the COI globally from Plasmodium falciparum sequencing data and compare the results against the literature. We show significant differences in the estimated COI globally between continents and a weak relationship between malaria prevalence and COI.

Funder

National Institute of Allergy and Infectious Diseases

Medical Research Council

Foreign, Commonwealth and Development Office

Schmidt Science Fellowship

Rhodes Trust

Publisher

Public Library of Science (PLoS)

Subject

Computational Theory and Mathematics,Cellular and Molecular Neuroscience,Genetics,Molecular Biology,Ecology,Modeling and Simulation,Ecology, Evolution, Behavior and Systematics

Reference70 articles.

1. Organization WH. World malaria report 2022. World Health Organization; 2022.

2. Current vector control challenges in the fight against malaria;G Benelli;Acta Tropica,2017

3. Malaria vector control: from past to future;K Raghavendra;Parasitology Research,2011

4. Malaria vector control: current and future strategies;W Takken;Trends in Parasitology,2009

5. Artemisinin-based combination therapies (ACTs): best hope for malaria treatment but inaccessible to the needy!;TK Mutabingwa;Acta Tropica,2005

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