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.

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.