▲ 6 r/conifers+1 crossposts

Esteya spp. reduce Bursaphelenchus xylophilus reproduction in Pinus pinaster seedlings without consistent improvements in disease outcomes

BACKGROUND

Pine wilt disease, caused by Bursaphelenchus xylophilus, threatens pine forests worldwide, yet sustainable biological control strategies remain limited. We evaluated the effects of pre-emptive inoculation with Esteya vermicola and E. floridanum on nematode reproduction and disease outcomes in Pinus pinaster seedlings under greenhouse conditions.

RESULTS

Seedlings inoculated with Evermicola or Efloridanum remained free of visible symptoms during the 5-week pre-challenge period. Fungi were subsequently re-isolated from stem tissues at the experimental endpoint, and both treatments significantly reduced nematode reproduction relative to the inoculated control. However, reductions in nematode reproduction were not consistently accompanied by improvements across disease assessment endpoints, including symptom severity, disease progression, and survival. Symptom expression in nematode-free controls indicated that environmental stress contributed to disease assessment endpoints, limiting interpretation of symptom-based measures. Exploratory correlation and permutation analyses suggested treatment-specific differences in the association between nematode reproduction and symptom severity; however, the endpoint design and restricted range of reproduction values following fungal treatment do not distinguish this interpretation from alternative explanations.

CONCLUSION

Esteya spp. significantly reduced pinewood nematode reproduction in Ppinaster seedlings, but improvements in disease outcomes were inconsistent under the conditions tested. These findings highlight that pathogen reproduction and disease assessment endpoints should both be evaluated when assessing biological control strategies for pine wilt disease. © 2026 Society of Chemical Industry.

onlinelibrary.wiley.com
u/ColdFirm2537 — 5 days ago
▲ 32 r/Soil+2 crossposts

Soil as a Battlefield and a Reservoir: Linking Soil Components to the Epidemiology of Soilborne Plant Diseases | Microbial Ecology

Soils are more than a substrate for plant growth: they can act as both a reservoir for pathogens and a battlefield where disease suppression takes place.

In this review, we examine how soil microbial diversity, organic matter, and soil structure influence the survival, spread, and suppression of soilborne plant pathogens, and discuss how management practices can shift soils toward more disease-suppressive states.

doi.org
u/ColdFirm2537 — 2 months ago

PurPest Stakeholder Webinar: VOC sensors for early pest and pathogen detection

https://preview.redd.it/axal9dtqix0h1.png?width=1535&format=png&auto=webp&s=ea431492d02e8d8751e64202654bff3f9374093f

🌱 Join the PurPest Stakeholder Webinar: VOC sensors for early pest and pathogen detection!

📅 June 3, 2026
⏰ 14:00-15:30 CEST

❓ How can VOC-based "e-nose" technologies support earlier detection of invasive pests and pathogens across Europe?

This webinar will explore:
🔬 VOC sensor development
🌍 Key agricultural and forestry threats
📈 Socioeconomic implications of early detection technologies

🤝 Q&A session at the end, open for discussion with the audience

📌 Programme & registration: https://www.purpest.eu/news/purpest-stakeholder-webinar

reddit.com
u/ColdFirm2537 — 3 months ago