RNA sequencing analysis of viromes of <i>Aedes albopictus</i> and <i>Aedes vexans</i> collected from NEON sites

S Sara H. Paull (Battelle, National Ecological Observatory Network) R Rachel R. Spurbeck (Battelle, Health, Drug Development, and Precision Diagnostics) N Nur A. Hasan (EZBiome Inc) K Kyle D. Brumfield (Department of Cellular Biology and Molecular Genetics, Maryland Pathogen Research Institute, University of Maryland) L Lindsay A. Catlin (Battelle, National Security—Chemical, Biological, Radiological, Nuclear and Explosives) M Michael J. Netherland (EZBiome Inc) A Anthony K. Smith (Battelle, National Security—Chemical, Biological, Radiological, Nuclear and Explosives) K Katherine M. Thibault (Battelle, National Ecological Observatory Network) R Rita R. Colwell (Department of Cellular Biology and Molecular Genetics, Maryland Pathogen Research Institute, University of Maryland)

Abstract

Climate change is significantly impacting the geographic range of many animal species and their associated microorganisms, hence influencing emergence of vector-borne diseases. Mosquito-borne viruses represent a potential major reservoir of human pathogens, highlighting the need for improved understanding of ecological factors associated with variation in the mosquito viral community (virome). Here, a subtractive hybridization method coupled with RNAseq of individual mosquito specimens was used to profile RNA viromes of individual co-occurring Aedes albopictus and Aedes vexans mosquitoes across a 2,000 km spatial scale. Samples were collected and archived by the National Ecological Observatory Network (NEON) from four ecologically variable sites in the Southeastern United States between 2018 and 2019. Results of multivariate analysis suggest that mosquito species are an important factor in RNA viral community composition. Significantly higher viral diversity was detected in A. albopictus compared to A.vexans . However, season, year, and site of sample collection did not show strong association with virome profiles, supporting the hypothesis that factors unique to the mosquito host species (e.g., larval habitat or vector competence) influence the structure of mosquito viromes.

Article Details

Volume / Issue Vol. 122, Issue 20
Published May 20, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (9)

S

Sara H. Paull

Battelle, National Ecological Observatory Network

R

Rachel R. Spurbeck

Battelle, Health, Drug Development, and Precision Diagnostics

N

Nur A. Hasan

EZBiome Inc

K

Kyle D. Brumfield

Department of Cellular Biology and Molecular Genetics, Maryland Pathogen Research Institute, University of Maryland

L

Lindsay A. Catlin

Battelle, National Security—Chemical, Biological, Radiological, Nuclear and Explosives

M

Michael J. Netherland

EZBiome Inc

A

Anthony K. Smith

Battelle, National Security—Chemical, Biological, Radiological, Nuclear and Explosives

K

Katherine M. Thibault

Battelle, National Ecological Observatory Network

R

Rita R. Colwell

Department of Cellular Biology and Molecular Genetics, Maryland Pathogen Research Institute, University of Maryland