Small RNA sequencing of field Culex mosquitoes identifies patterns of viral infection and the mosquito immune response
Mosquito-borne disease remains a significant burden on global health. In the United States, the major threat posed by mosquitoes is transmission of arboviruses, including West Nile virus by mosquitoes of the Culex genus. Virus metagenomic analysis of mosquito small RNA using deep sequencing and adva...
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Veröffentlicht in: | Scientific reports 2023-06, Vol.13 (1), p.10598-13, Article 10598 |
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Sprache: | eng |
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Zusammenfassung: | Mosquito-borne disease remains a significant burden on global health. In the United States, the major threat posed by mosquitoes is transmission of arboviruses, including West Nile virus by mosquitoes of the
Culex
genus. Virus metagenomic analysis of mosquito small RNA using deep sequencing and advanced bioinformatic tools enables the rapid detection of viruses and other infecting organisms, both pathogenic and non-pathogenic to humans, without any precedent knowledge. In this study, we sequenced small RNA samples from over 60 pools of
Culex
mosquitoes from two major areas of Southern California from 2017 to 2019 to elucidate the virome and immune responses of
Culex
. Our results demonstrated that small RNAs not only allowed the detection of viruses but also revealed distinct patterns of viral infection based on location,
Culex
species, and time. We also identified miRNAs that are most likely involved in
Culex
immune responses to viruses and
Wolbachia
bacteria, and show the utility of using small RNA to detect antiviral immune pathways including piRNAs against some pathogens. Collectively, these findings show that deep sequencing of small RNA can be used for virus discovery and surveillance. One could also conceive that such work could be accomplished in various locations across the world and over time to better understand patterns of mosquito infection and immune response to many vector-borne diseases in field samples. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-023-37571-6 |