An integrated mosquito small RNA genomics resource reveals dynamic evolution and host responses to viruses and transposons

Author:

Ma Qicheng,Srivastav Satyam P.,Gamez Stephanie,Feitosa-Suntheimer Fabiana,Patterson Edward I.,Johnson Rebecca M.,Matson Erik R.,Gold Alexander S.,Brackney Douglas E.,Connor John H.,Colpitts Tonya M.,Hughes Grant L.ORCID,Rasgon Jason L.ORCID,Nolan Tony,Akbari Omar S.,Lau Nelson C.ORCID

Abstract

ABSTRACTAlthough mosquitoes are major transmission vectors for pathogenic arboviruses, viral infection has little impact on mosquito health. This immunity is due in part to mosquito RNA interference (RNAi) pathways that generate antiviral small interfering RNAs (siRNAs) and Piwi-interacting RNAs (piRNAs). RNAi also maintains genome integrity by potently repressing mosquito transposon activity in the germline and soma. However, viral and transposon small RNA regulatory pathways have not been systematically examined together in mosquitoes. Therefore, we developed an integrated Mosquito Small RNA Genomics (MSRG) resource that analyzes the transposon and virus small RNA profiles in mosquito cell cultures and somatic and gonadal tissues across four medically important mosquito species. Our resource captures both somatic and gonadal small RNA expression profiles within mosquito cell cultures, and we report the evolutionary dynamics of a novel Mosquito-Conserved piRNA Cluster Locus (MCpiRCL) composed of satellite DNA repeats. In the larger culicine mosquito genomes we detected highly regular periodicity in piRNA biogenesis patterns coinciding with the expansion of Piwi pathway genes. Finally, our resource enables detection of crosstalk between piRNA and siRNA populations in mosquito cells during a response to virus infection. The MSRG resource will aid efforts to dissect and combat the capacity of mosquitoes to tolerate and spread arboviruses.

Publisher

Cold Spring Harbor Laboratory

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