Baseline sensitivity and physiological characteristics of natural product hinokitiol against Sclerotinia sclerotiorum

Author:

Zhang Mengwei1,Ren Xingyu12ORCID,Li Yuying1,Wang Yaqiang1,Li Yi1,Ma Zhiqing12,Wang Yong12ORCID,Feng Juntao12

Affiliation:

1. State Key Laboratory of Crop Stress Biology for Arid Areas, Key Laboratory of Plant Protection Resources and Pest Management of Ministry of Education, College of Plant Protection Northwest A&F University Yangling China

2. Provincial Center for Bio‐Pesticide Engineering Yangling China

Abstract

AbstractBACKGROUNDSclerotinia sclerotiorum, a pathogenic fungus of oilseed rape, poses a severe threat to the oilseed rapeseed industry. In this study, we evaluated the potential of the natural compound hinokitiol against S. sclerotiorum by determining its biological activity and physiological characteristics.RESULTSOur results showed that hinokitiol strongly inhibited the hyphae expansion of S. sclerotiorum, and its effective concentration of hyphae growing inhibition by 50% (EC50) against 103 S. sclerotiorum strains varied from 0.36 to 3.45 μg/mL, with an average of 1.23 μg/mL. Hinokitiol possessed better protective efficacy than therapeutic effects, and it exhibited no cross‐resistance between carbendazim. After treatment with hinokitiol, many vesicular protrusions developed on the mycelium with rough surface and thickened cell wall. Moreover, the cell membrane permeability and glycerol content increased, while the oxalic acid declined after hinokitiol treatment. In addition, hinokitiol induced membrane lipid peroxidation and improved the production of reactive oxygen species (ROS) in S. sclerotiorum. Importantly, real‐time quantitative polymerase chain reaction showed that cell wall and ROS synthesis‐related genes were significantly up‐regulated after hinokitiol treatment.CONCLUSIONThis study revealed that hinokitiol has good biological activity against S. sclerotiorum and could be considered as an alternative bio‐fungicide for the resistance management in controlling sclerotinia stem rot infected by S. sclerotiorum. These investigations provided new insights into understanding the toxic action of hinokitiol against pathogenic fungi. © 2024 Society of Chemical Industry.

Funder

National Key Research and Development Program of China

Key Research and Development Projects of Shaanxi Province

Publisher

Wiley

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