Differential intra-host infection kinetics in Aedes aegypti underlie superior transmissibility of African relative to Asian Zika virus
Phengchat, R.; Pakparnich, P.; Pethrak, C.; Pengon, J.; Sartsanga, C.; Chotiwan, N.; Uppakara, K.; Suksirisawat, K.; Lambrechts, L.; Jupatanakul, N.
Show abstract
Despite numerous studies highlighting the higher transmissibility of the African Zika virus (ZIKV) lineage compared to the Asian lineage in mosquito vectors, little is known about how the viruses interact with different tissues during the early steps of mosquito infection. To address this gap, we aimed to characterize intra-host infection barriers by combining a tissue-level monitoring of infection using plaque assays and a novel quantitative analysis of single-cell level infection kinetics by in situ immunofluorescent staining. Our results revealed that, in Aedes aegypti, an African ZIKV strain exhibited a higher replication rate across various tissues than an Asian ZIKV strain. This difference was potentially due to a higher virus production in individual cells, faster spread within tissues, or a combination of both factors. Furthermore, we observed that higher bloodmeal titers resulted in a faster viral spread to neighboring cells suggesting that intra-host infection dynamics depend on inoculum size. We also identified a significant bottleneck during midgut infection establishment for both ZIKV lineages, with only a small percentage of the virus population successfully initiating infection. Finally, the in situ immunofluorescent staining technique enabled the examination of virus infection characteristics in different cell types and revealed heterogeneity in viral replication. Together, these findings demonstrate that differences in intra-host infection kinetics underlie differential transmissibility between African and Asian ZIKV lineages. This information could serve as a starting point to further investigate the underlying mechanisms and ultimately inform the development of alternative control strategies. ImportanceThe recent Zika virus (ZIKV) epidemic in the Americas highlights its potential public health threat. While the Asian ZIKV lineage has been identified as the main cause of the epidemic, the African lineage, which has been primarily confined to Africa, has shown evidence of higher transmissibility in Aedes mosquitoes. To gain a deeper understanding of this differential transmissibility, our study employed a combination of tissue-level infection kinetics and single-cell level infection kinetics using in situ immunofluorescent staining. We discovered that the African ZIKV lineage propagates more rapidly and spreads more efficiently within mosquito cells and tissues than its Asian counterpart. This information lays the groundwork for future exploration of the viral and host determinants driving these variations in propagation efficiency.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Belgian Culex pipiens pipiens are competent vectors for West Nile virus but not Usutu virus 96%
- Wolbachia wAlbB inhibit dengue and Zika infection in the mosquito Aedes aegypti with an Australian background 96%
- Low risk of transmission of prototype and newly emerged Oropouche virus strains by European Culex pipiens, Aedes albopictus, and Anopheles atroparvus mosquitoes 96%
Similar papers in this journal
- Viral RNA is a target for Wolbachia-mediated pathogen blocking 95%
- Novel phenotype of Wolbachia strain wPip in Aedes aegypti challenges assumptions on mechanisms of Wolbachia-mediated dengue virusinhibition . 95%
- JNK pathway restricts DENV, ZIKV and CHIKV infection by activating complement and apoptosis in mosquito salivary glands 95%
Similar papers in this journal
- Sexual transmission of Anopheles gambiae densovirus (AgDNV) leads to disseminated infection in mated females 96%
- Field-deployable molecular diagnostic platform for arbovirus and Wolbachia detection in Aedes aegypti 95%
- The tortoise strategy as an arbovirus fitness phenotype within the mosquito as revealed by a novel formulation of age-structured vectorial capacity 94%
Similar papers in this journal
- Quantifying and modelling the acquisition and retention of lumpy skin disease virus by haematophagus insects reveals clinically but not subclinically-affected cattle are promoters of viral transmission and key targets for control of disease outbreaks. 94%
- Covert RNA viruses in medflies differ in their mode of transmission and tissue tropism 94%
- Negeviruses reduce replication of alphaviruses during co-infection 94%
Similar papers in this journal
- Quantifying Rift Valley fever virus transmission efficiency in a lamb-mosquito-lamb model 95%
- Replication in the presence of dengue convalescent serum impacts Zika virus neutralization sensitivity and fitness 93%
- The stronger downregulation of in vitro and in vivo innate antiviral responses by a very virulent strain of infectious bursal disease virus (IBDV), compared to a classical strain, is mediated, in part, by the VP4 protein. 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.