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Towards modelling tick-virus interactions using the weakly pathogenic Sindbis virus: Evidence that ticks are
Yanan Wang1, Zhengmao Xu1, Houshuang Zhang1
1Key Laboratory of Animal Parasitology of Ministry of Agriculture, Shanghai Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Shanghai, China.
Abstract:
Most tick-borne viruses (TBVs) are highly pathogenic and require high biosecurity, which severely limits their study. We found that Sindbis virus (SINV), predominantly transmitted by mosquitoes, can replicate in ticks and be subsequently transmitted, with the potential to serve as a model for studying tick-virus interactions. We found that both larval and nymphal stages of Rhipicephalus haemaphysaloides can be infected with SINV-wild-type (WT) when feeding on infected mice. SINV replicated in two species of ticks (R. haemaphysaloides and Hyalomma asiaticum) after infecting them by microinjection. Injection of ticks with SINV expressing enhanced Green Fluorescent Protein (eGFP) revealed that SINV-eGFP specifically aggregated in the tick midguts for replication. During blood-feeding, SINV-eGFP migrated from the midguts to the salivary glands and was transmitted to a new host. SINV infection caused changes in expression levels of tick genes related to immune responses, substance transport and metabolism, cell growth and death. SINV mainly induced autophagy during the early stage of infection; with increasing time of infection, the level of autophagy decreased, while the level of apoptosis increased. During the early stages of infection, the transcript levels of immune-related genes were significantly upregulated, and then decreased. In addition, SINV induced changes in the transcription levels of some functional genes that play important roles in the interactions between ticks and tick-borne pathogens. These results confirm that the SINV-based transmission model between ticks, viruses, and mammals can be widely used to unravel the interactions between ticks and viruses.
Insights
Sindbis virus (SINV), typically mosquito-borne, can infect and replicate in ticks, serving as a model for tick-virus interactions. This discovery aids in studying tick-borne pathogen transmission dynamics.
Area of Science:
- Virology
- Entomology
- Pathogen Transmission
Background:
- Most tick-borne viruses (TBVs) are highly pathogenic, necessitating stringent biosecurity measures that impede research.
- Studying tick-virus interactions is crucial for understanding disease transmission and developing control strategies.
Purpose of the Study:
- To establish Sindbis virus (SINV) as a model for studying tick-virus interactions.
- To investigate the replication and transmission capabilities of SINV in ticks.
Main Methods:
- Infection of mice with SINV to allow tick feeding on infected hosts.
- Microinjection of ticks with SINV, including SINV expressing enhanced Green Fluorescent Protein (eGFP).
- Analysis of SINV replication sites within ticks and assessment of gene expression changes.
Main Results:
- Larval and nymphal *Rhipicephalus haemaphysaloides* ticks were infected by feeding on SINV-infected mice.
- SINV replicated in *R. haemaphysaloides* and *Hyalomma asiaticum* post-microinjection, localizing to midguts and migrating to salivary glands for transmission.
- SINV infection altered tick gene expression, initially inducing autophagy and upregulating immune genes, followed by increased apoptosis and decreased immune gene expression over time.
Conclusions:
- Sindbis virus can replicate in ticks and be transmitted, establishing a viable model for tick-virus interaction studies.
- The SINV-tick-mammal model facilitates research into the complex interactions between ticks and arboviruses.
- Understanding these interactions is key to managing the risks posed by tick-borne diseases.
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