Highly Sensitive Virome Characterization of Aedes aegypti and Culex pipiens Complex from Central Europe and the Caribbean Reveals Potential for Interspecies Viral Transmission.
Jakob ThannesbergerNicolas RascovanAnna EisenmannIngeborg KlymiukCarina ZittraHans-Peter FuehrerThea Scantlebury-ManningMarquita Gittens-St HilaireShane AustinRobert Clive LandisChristoph SteiningerPublished in: Pathogens (Basel, Switzerland) (2020)
Mosquitoes are the most important vectors for arthropod-borne viral diseases. Mixed viral infections of mosquitoes allow genetic recombination or reassortment of diverse viruses, turning mosquitoes into potential virologic mixing bowls. In this study, we field-collected mosquitoes of different species (Aedes aegypti and Culex pipiens complex), from different geographic locations and environments (central Europe and the Caribbean) for highly sensitive next-generation sequencing-based virome characterization. We found a rich virus community associated with a great diversity of host species. Among those, we detected a large diversity of novel virus sequences that we could predominately assign to circular Rep-encoding single-stranded (CRESS) DNA viruses, including the full-length genome of a yet undescribed Gemykrogvirus species. Moreover, we report for the first time the detection of a potentially zoonotic CRESS-DNA virus (Cyclovirus VN) in mosquito vectors. This study expands the knowledge on virus diversity in medically important mosquito vectors, especially for CRESS-DNA viruses that have previously been shown to easily recombine and jump the species barrier.
Keyphrases
- aedes aegypti
- zika virus
- dengue virus
- circulating tumor
- genetic diversity
- sars cov
- cell free
- single molecule
- healthcare
- mental health
- dna repair
- gene expression
- copy number
- high resolution
- disease virus
- risk assessment
- binding protein
- circulating tumor cells
- molecularly imprinted
- mass spectrometry
- simultaneous determination