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戊唑醇对苹果腐烂病菌的基线敏感性及作用机制。

Baseline sensitivity and action mechanism of the sterol demethylation inhibitor flusilazole to Valsa mali.

机构信息

College of plant protection, Northwest A & F University, Yangling 712100, Shaanxi, China.

College of plant protection, Northwest A & F University, Yangling 712100, Shaanxi, China.

出版信息

Pestic Biochem Physiol. 2021 Jan;171:104722. doi: 10.1016/j.pestbp.2020.104722. Epub 2020 Oct 13.

Abstract

The apple Valsa canker caused by Valsa mali is a devastating branch disease that has seriously threatened the development of the apple industry worldwide. In current study, a total of 115 V. mali strains collected from different apple orchards in Shaanxi Province of China during 2016 and 2017 were tested for their sensitivity to flusilazole. The average EC (effective concentrations causing 50% mycelial growth inhibition) value of all tested strains for flusilazole was 0.0892 (±0.0036) μg/mL and the frequency distribution of the EC50 values was unimodal. Flusilazole exhibited both excellent protective and curative activity on detached apple branches, which was significantly better than the commonly used fungicide thiophanate-methyl. After flusilazole treatment, mycelia twisted with offshoot of top increased, the V. mali strains lost the ability of fruiting body production, and cell membrane permeability of the mycelia increased while ergosterol content and pectinase activity decreased. The expression of pectinase genes involved in virulence down-regulated after flusilazole treatment. This study is the first report on the baseline sensitivity of V. mali to flusilazole. These results indicated that flusilazole has a great potential to play an important role in the management of Valsa canker.

摘要

苹果腐烂病菌(Valsa mali)引起的苹果树腐烂病是一种毁灭性的枝干病害,已严重威胁到全球苹果产业的发展。本研究于 2016-2017 年,从陕西省不同苹果园中采集了 115 株 V. mali 菌株,检测其对氟硅唑的敏感性。所有供试菌株对氟硅唑的平均 EC50 值(抑制 50%菌丝生长的有效浓度)为 0.0892(±0.0036)μg/mL,EC50 值的频率分布呈单峰型。氟硅唑对离体苹果树具有良好的保护和治疗作用,显著优于常用杀菌剂噻菌灵。氟硅唑处理后,菌丝顶端扭曲分枝增加,病菌丧失产孢能力,细胞膜透性增加,麦角甾醇含量和果胶酶活性降低。与致病力相关的果胶酶基因表达下调。这是首次报道苹果腐烂病菌对氟硅唑的基础敏感性。这些结果表明,氟硅唑在苹果树腐烂病防治中具有巨大的应用潜力。

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