Knockdown resistance allele L1014F introduced by CRISPR/Cas9 is not associated with altered vector competence of Anopheles gambiae for o’nyong nyong virus

Author:

Kay Grant A.,Patterson Edward I.,Hughes Grant L.ORCID,Lord Jennifer S.,Reimer Lisa J.ORCID

Abstract

Knockdown resistance (kdr) alleles conferring resistance to pyrethroid insecticides are widespread amongst vector populations. Previous research has suggested that these alleles are associated with changes in the vector competence of mosquitoes for arboviruses and Plasmodium, however non-target genetic differences between mosquito strains may have had a confounding effect. Here, to minimise genetic differences, the laboratory Anopheles gambiae Kisumu strain was compared to a CRISPR/Cas9 homozygous kdr L1014F mutant Kisumu-kdr line in order to examine associations with vector competence for o’nyong nyong virus (ONNV). Mosquitoes were infected using either blood feeds or intrathoracic microinjections. There were no significant differences in the prevalence of virus in mosquito body parts between kdr mutant and wildtype lines from either oral or intrathoracic injection routes. The ONNV titre was significantly higher in the legs of the wildtype strain at 7dpi following intrathoracic microinjection, but no other significant differences in viral titre were detected. ONNV was not detected in the saliva of mosquitoes from either strain. Our findings from per os infections suggest that the kdr L1014F allele is not associated with altered infection prevalence for ONNV, a key component of vector competence.

Funder

Medical Research Council

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference38 articles.

1. Molecular biology of insect sodium channels and pyrethroid resistance;K. Dong;Insect Biochemistry and Molecular Biology,2014

2. The genetic architecture of target-site resistance to pyrethroid insecticides in the African malaria vectors Anopheles gambiae and Anopheles coluzzii;C.S. Clarkson;Molecular Ecology,2021

3. Genetics of Mosquito Vector Competence;B.T. Beerntsen;Microbiology and Molecular Biology Reviews,2000

4. Assessing the Impact of Insecticide Resistance on Vector Competence: A Review;A.E. Juache-Villagrana;Insects,2022

5. Aedes aegypti vector competence studies: A review;J.A. Souza-Neto;Infection, Genetics and Evolution,2019

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