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March 10, 2026Journal of Applied Entomology2 citationsOpen Access

Lethal Effects of the Wild Potato Solanum bulbocastanum on the Planthopper Pentastiridius leporinus , a Vector of Bacterial Pathogens in Potato

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ETEva TherhaagKGKarin GorzolkaJGJürgen Gross

Key Points

  • To investigate the lethal effects of wild potato Solanum bulbocastanum on the planthopper Pentastiridius leporinus, a bacterial pathogen vector.
  • Conducted no-choice mortality experiments on P. leporinus using potato cultivars and wild relatives
  • Performed LC/MS analysis to identify bioactive compounds in planthoppers
  • Carried out choice-tests to assess vector preferences between S. bulbocastanum and S. tuberosum 'Gala'
  • Collected and analyzed volatile organic compounds via GC/MS.
  • Significant mortality of P. leporinus was documented when exposed to S. bulbocastanum
  • C16:3-solamine, a compound from S. bulbocastanum, was found in the intestines of the insects
  • A preference for S. bulbocastanum over S. tuberosum was observed despite its lethal effects
  • Volatile profiles differed significantly between S. bulbocastanum and S. tuberosum, with 39 unique compounds identified.

Abstract

ABSTRACT The planthopper Pentastiridius leporinus Hemiptera: Cixiidae is a vector of the two plant pathogenic bacteria ‘ Candidatus Arsenophonus phytopathogenicus’ and ‘ Candidatus Phytoplasma solani’ causing ‘bacterial potato tuber wilt’ in potato. An infection leads to symptoms such as rubbery and non‐processable tubers and consequently to substantial decreases in yield and tuber quality as well as to abandonment of seed potato production in affected areas. Up to date, resistant potato varieties are not yet known, and the tool box of integrated pest management to prevent the spread of P. leporinus as causal vector is quite limited. Mortality experiments designed as no‐choice trials on potato cultivar ‘Gala’ ( Solanum tuberosum ) and on its wild relative S. bulbocastanum revealed significant effects of the latter on the survival rate of the vector. LC/MS analysis of the insects and their intestines showed that C16:3‐solamine, a bioactive compound of S. bulbocastanum , was retrieved only in individuals from the S. bulbocastanum plants. Furthermore, choice‐tests were carried out to study the vector behaviour. A preference towards S. bulbocastanum vs. S. tuberosum ‘Gala’ was observed despite its lethal effects. Volatile organic compounds of the two different species were collected and analysed by GC/MS. The two profiles differed in 39 of 80 compounds. The wild potato species S. bulbocastanum and its compounds are discussed as potential starting points for further research on sustainable management of P. leporinus .

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Cite This Study

Therhaag et al. (2026) studied this question.

synapsesocial.com/papers/69af951a70916d39fea4c51dhttps://doi.org/10.1111/jen.70079
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Lethal effects of the wild potato Solanum bulbocastanum on the planthopper Pentastiridius leporinus, a vector of bacterial pathogens in potato2025
  2. 2Pentastiridius leporinus (Linnaeus, 1761) as a Vector of Phloem-Restricted Pathogens on Potatoes: ‘Candidatus Arsenophonus Phytopathogenicus’ and ‘Candidatus Phytoplasma Solani’2024 · 10 citations
  3. 3Prevalence in Potato of ‘Candidatus Arsenophonus Phytopathogenicus’ and ‘Candidatus Phytoplasma Solani’ and Their Transmission via Adult Pentastiridius leporinus2024 · 9 citations
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