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May 1, 20261 citations

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

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VTValeria TrivelloneFCFrancesca CanutoGLGiulia Lucetti

Key Points

  • This research aims to understand how the duration of feeding affects the multiplication of phytoplasma in leafhopper vectors.
  • Insects were exposed to two acquisition conditions: 4-hour and 2-day access periods (AAP).
  • Phytoplasma loads were quantified over time in the head and body of leafhoppers.
  • A Bayesian hurdle-lognormal model was applied to describe temporal dynamics and estimate multiplication rates.
  • Phytoplasma loads after 4-hour AAPs were significantly lower than those after 2-day AAPs after an 8-day latent period.
  • Model predictions indicate phytoplasma load from short AAPs gradually increases, yet remains consistently lower than longer AAPs over 40 days post-acquisition.
  • In some individuals, brief 2-day feeding events can yield pathogen loads near the transmission threshold of 10³-10⁴ genome units ng⁻¹ insect DNA.

Abstract

during the early stages of infection when acquisition access period (AAP) is short. Insects were exposed to two acquisition conditions: a short 4-h AAP, simulating incidental feeding, and a 2-day AAP, considered the minimum threshold for effective acquisition. Phytoplasma load was quantified in the head and body over time, and these data were integrated with published data covering longer AAPs (7-14 days) and post-acquisition periods (up to 42 days). A Bayesian hurdle-lognormal model was used to describe temporal dynamics and estimate pathogen multiplication rates across studies. Very short AAPs led to significantly lower phytoplasma loads after an 8-day latent period compared to 2-day AAPs, highlighting the importance of feeding duration for efficient colonization. Model predictions indicated that phytoplasma load after short AAPs increases gradually and follows similar temporal trends to those observed for longer AAPs, but remained consistently lower across the 40-day post-acquisition period. Nevertheless, empirical and model-based estimates suggest that even brief feeding events, particularly 2 days, can yield pathogen loads approaching the minimum transmission threshold (10³-10⁴ genome units ng⁻¹ insect DNA) in some individuals, as suggested by upper CI bounds, with potential to sustain infection and facilitate transmission. These findings shed light on how acquisition duration shapes early phytoplasma dynamics in vectors and offer insights into transmission risk under natural conditions where incidental feeding events may occur.

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Cite This Study

Trivellone et al. (2026) studied this question.

synapsesocial.com/papers/69f442ac967e944ac55661adhttps://doi.org/10.1099/mic.0.001700
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