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  4. Combined Biological and Chemical Control of Sclerotinia sclerotiorum on Oilseed Rape in the Era of Climate Change
 
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Combined Biological and Chemical Control of Sclerotinia sclerotiorum on Oilseed Rape in the Era of Climate Change

Type
Journal article
Language
English
Date issued
2025
Author
Danielewicz, Jakub
Jajor, Ewa
Horoszkiewicz, Joanna
Korbas, Marek
Sobiech, Łukasz 
Grzanka, Monika 
Sawinska, Zuzanna 
Bocianowski, Jan 
Cholewa, Jakub
Faculty
Wydział Rolnictwa, Ogrodnictwa i Biotechnologii
Journal
Agriculture (Switzerland)
ISSN
2077-0472
DOI
10.3390/agriculture15202147
Web address
https://www.mdpi.com/2077-0472/15/20/2147
Volume
15
Number
20
Pages from-to
art. 2147
Abstract (EN)
This study investigates the biocontrol potential of Trichoderma asperellum and Coniothyrium minitans against the pathogen Sclerotinia sclerotiorum, which causes yield losses in many plants, including oilseed rape (Brassica napus) cultivation. This research emphasizes the promising alternative of hybrid control, specifically using T. asperellum and C. minitans in strategy with synthetic fungicides. In vitro experiments demonstrated that T. asperellum effectively inhibited S. sclerotiorum mycelial growth, especially when combined with synthetic fungicides such as azoxystrobin. Field trials conducted over two years revealed that pre-sowing applications of T. asperellum and C. minitans, followed by fungicide treatments during the flowering stage, significantly reduced plant infection rates and improved both yield and seed quality across different oilseed rape cultivars. The results indicated an efficacy range of 81% to 100% in controlling the pathogen and highlighted the synergistic effects of combining biological and chemical controls. Overall, the research findings support the integration of T. asperellum and C. minitans into sustainable agricultural practices for oilseed rape, offering a viable strategy to enhance disease management while reducing reliance on chemical fungicides. This research underscores the importance of adopting innovative biocontrol approaches to improve crop health and productivity.
Keywords (EN)
  • biofungicide

  • integrated plant protection

  • Sclerotinia stem rot

  • white mold

  • Trichoderma sp.

  • plant diseases

License
cc-bycc-by CC-BY - Attribution
Open access date
October 15, 2025
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