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  4. Resistance Inducers for the Protection of Pedunculate Oak (Quercus robur L.) Seedlings against Powdery Mildew Erysiphe alphitoides
 
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Resistance Inducers for the Protection of Pedunculate Oak (Quercus robur L.) Seedlings against Powdery Mildew Erysiphe alphitoides

Type
Journal article
Language
English
Date issued
2023
Author
Turczański, Krzysztof 
Bełka, Marta 
Spychalski, Maciej
Kukawka, Rafal
Prasad, Raghavendra
Smiglak, Marcin
Faculty
Wydział Leśny i Technologii Drewna
Journal
Plants
ISSN
2223-7747
DOI
10.3390/plants12030635
Web address
https://www.mdpi.com/2223-7747/12/3/635
Volume
12
Number
3
Pages from-to
art. 635
Abstract (EN)
Oak powdery mildew caused by Erysiphe alphitoides (Griffon and Maubl.; U. Braun & S. Takam.) is a common disease in European forests. One of the most susceptible species is the pedunculate oak (Quercus robur L.). Presently, a few methods are available to control powdery mildew, e.g., the use of fungicides (e.g., based on citric acid), antagonistic fungi or bacteria, chemical treatments (e.g., sulphur, potassium bicarbonate) or genetic resistance. In our study, we aimed to check the effects of using chitosan derivatives and novel active substances inducing the plants’ natural resistance: benzodiathiadiazole (both in neutral and salt form). 84 pedunculate oak seedlings were subjected to the experiment in three treatment variants (plus positive and negative controls). The plants were treated with active substances and inoculated with E. alphitoides. Although the powdery mildew symptoms appeared in all variants, they were manifested mainly by the mycelium in the form of small spots. The experiment indicated that the highest limitation of powdery mildew mycelium was achieved by applying N-methyl-N-methoxyamide-7-carboxybenzo(1,2,3)thiadiazole (BTHWA). The application of BTHWA reduced disease development by 88.9% when compared to the effects of the other variants.
Keywords (EN)
  • powdery mildew

  • pedunculate oak

  • benzothiadiazole

  • ionic liquids

  • chitosan

License
cc-bycc-by CC-BY - Attribution
Open access date
February 1, 2023
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