Tracking the early spatio-temporal dynamics of phytoplasma multiplication within its leafhopper vector

Valeria Trivellone1, Francesca Canuto2, Giulia Lucetti2

  • 1Illinois Natural History Survey, Prairie Research Institute, University of Illinois at Urbana Champaign, 1816 South Oak Street, Champaign 61820, Illinois, USA.

Insights

Short acquisition periods for phytoplasmas in leafhoppers result in lower pathogen loads. However, even brief feeding can enable infection and potential transmission, impacting plant disease spread.

Area of Science:

  • Plant pathology
  • Insect vector biology
  • Bacteriology

Background:

  • Phytoplasmas are bacteria transmitted by insect vectors, crucial for plant disease epidemiology.
  • Understanding phytoplasma multiplication dynamics within vectors after acquisition is key to disease management.
  • The impact of acquisition duration on early phytoplasma colonization in vectors is not well-defined.

Purpose of the Study:

  • To investigate the spatio-temporal patterns of *Flavescence dorée* phytoplasma multiplication in *Euscelidius variegatus* after short acquisition access periods (AAP).
  • To model phytoplasma dynamics and estimate multiplication rates based on varying acquisition durations.

Main Methods:

  • Insects were exposed to short (4-h) and medium (2-day) acquisition access periods.
  • Phytoplasma load was quantified in insect tissues over time.
  • Data were integrated with existing studies and analyzed using a Bayesian hurdle-lognormal model.

Main Results:

  • Short AAPs (4-h, 2-day) resulted in significantly lower phytoplasma loads compared to longer durations, post-latent period.
  • Model predictions showed gradual phytoplasma load increase following similar trends to longer AAPs but consistently lower.
  • Even brief feeding (2-day AAP) could lead to loads near the transmission threshold in some vectors.

Conclusions:

  • Acquisition duration critically influences early phytoplasma colonization and multiplication dynamics in insect vectors.
  • Brief feeding events can be sufficient for phytoplasma infection and potential transmission, affecting disease risk.
  • Findings provide insights into phytoplasma transmission under natural conditions with incidental vector feeding.

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