Development of circulating isolates of Plasmodium falciparum is accelerated in Anopheles vectors with reduced reproductive output

Author:

Werling Kristine,Itoe Maurice A.,Shaw W. RobertORCID,Hien Raymond Dombagniro,Bazié Bali Jean,Aminata Fofana,Adams Kelsey L.,Ouattara Bienvenu Seydou,Sanou Mathias,Peng Duo,Dabiré Roch K.,Da Dari F.,Yerbanga Rakiswendé Serge,Diabaté Abdoulaye,Lefèvre Thierry,Catteruccia FlaminiaORCID

Abstract

Anopheles gambiae and its sibling species Anopheles coluzzii are the most efficient vectors of the malaria parasite Plasmodium falciparum. When females of these species feed on an infected human host, oogenesis and parasite development proceed concurrently, but interactions between these processes are not fully understood. Using multiple natural P. falciparum isolates from Burkina Faso, we show that in both vectors, impairing steroid hormone signaling to disrupt oogenesis leads to accelerated oocyst growth and in a manner that appears to depend on both parasite and mosquito genotype. Consistently, we find that egg numbers are negatively linked to oocyst size, a metric for the rate of oocyst development. Oocyst growth rates are also strongly accelerated in females that are in a pre-gravid state, i.e. that fail to develop eggs after an initial blood meal. Overall, these findings advance our understanding of mosquito-parasite interactions that influence P. falciparum development in malaria-endemic regions.

Funder

National Institute of Allergy and Infectious Diseases

Howard Hughes Medical Institute

Publisher

Public Library of Science (PLoS)

Subject

Infectious Diseases,Public Health, Environmental and Occupational Health

Reference63 articles.

1. Microarray analysis of genes showing variable expression following a blood meal in Anopheles gambiae;O Marinotti;Insect Mol Biol,2005

2. Genome-wide analysis of gene expression in adult Anopheles gambiae;O Marinotti;Insect Mol Biol,2006

3. Regulatory Pathways Controlling Female Insect Reproduction;S Roy;Annu Rev Entomol,2018

4. Critical Steps of Plasmodium falciparum Ookinete Maturation.;G Siciliano;Front Microbiol.,2020

5. Epidemiological basis of malaria control;G. Macdonald;Bull World Health Organ,1956

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