Multistrain Infections with Lyme Borreliosis Pathogens in the Tick Vector

Jonas Durand1, Coralie Herrmann2, Dolores Genné3

  • 1Laboratory of Ecology and Evolution of Parasites, Institute of Biology, University of Neuchâtel, Neuchâtel, Switzerland jonas.durand@unine.ch.

Insights

Multiple Borrelia strains in ticks show competitive interactions, impacting their prevalence. Spirochete abundance within a tick is a key factor determining strain success in nature.

Area of Science:

  • Vector-borne diseases
  • Microbial ecology
  • Epidemiology

Background:

  • Lyme borreliosis is a prevalent vector-borne disease caused by Borrelia bacteria.
  • Multiple-strain infections are common in both hosts and vectors, influencing disease dynamics.
  • Little is known about pathogen strain interactions within the arthropod vector.

Purpose of the Study:

  • To investigate the frequencies and abundances of Borrelia afzelii and Borrelia garinii strains in Ixodes ricinus ticks.
  • To understand the competitive interactions and factors influencing strain prevalence within the tick vector.

Main Methods:

  • Sampling of wild Ixodes ricinus ticks over three years.
  • Quantitative PCR (qPCR) and 454 sequencing to determine spirochete load and strain diversity.
  • Analysis of ospC gene polymorphism to differentiate Borrelia strains.

Main Results:

  • Negative relationship observed between common B. afzelii strains, suggesting competition.
  • Spirochete abundance per strain decreases with increasing strain richness in nymphs.
  • Higher spirochete load in nymphal ticks correlated with greater strain prevalence in the population.

Conclusions:

  • Competitive interactions occur between Borrelia strains within the tick vector.
  • Spirochete abundance in the tick is a crucial life history trait driving strain prevalence.
  • Findings provide insights into the population dynamics of tick-borne pathogens.