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大黄素、大黄酚、大黄素甲醚和掌叶防己碱对大麦白粉菌(Blumeria graminis f. sp. hordei (DC.) Speer.)萌发和附着胞形成的直接影响。

Direct Effects of Physcion, Chrysophanol, Emodin, and Pachybasin on Germination and Appressorium Formation of the Barley ( Hordeum vulgare L.) Powdery Mildew Fungus Blumeria graminis f. sp. hordei (DC.) Speer.

机构信息

Universität Würzburg, Julius-von-Sachs-Institute for Biosciences, Chair of Botany II , Julius-von-Sachs-Platz 3 , 97082 Würzburg , Germany.

出版信息

J Agric Food Chem. 2018 Apr 4;66(13):3393-3401. doi: 10.1021/acs.jafc.7b05977. Epub 2018 Mar 22.

Abstract

Several anthraquinone derivatives are active components of fungicidal formulations particularly effective against powdery mildew fungi. The antimildew effect of compounds such as physcion and chrysophanol is largely attributed to host plant defense induction. However, so far a direct fungistatic/fungicidal effect of anthraquinone derivatives on powdery mildew fungi has not been unequivocally demonstrated. By applying a Formvar-based in vitro system we demonstrate a direct, dose-dependent effect of physcion, chrysophanol, emodin, and pachybasin on conidial germination and appressorium formation of Blumeria graminis f. sp. hordei (DC.) Speer, the causative agent of barley ( Hordeum vulgare L.) powdery mildew. Physcion was the most effective among the tested compounds. At higher doses, physcion mainly inhibited conidial germination. At lower rates, however, a distinct interference with appressorium formation became discernible. Physcion and others may act by modulating both the infection capacity of the powdery mildew pathogen and host plant defense. Our results suggest a specific arrangement of substituents at the anthraquinone backbone structure being crucial for the direct antimildew effect.

摘要

几种蒽醌衍生物是杀真菌制剂的有效成分,特别是对白粉菌真菌特别有效。化合物如大黄素和大黄酚的抗霉菌作用主要归因于宿主植物防御诱导。然而,到目前为止,蒽醌衍生物对白粉菌真菌的直接抑菌/杀菌作用尚未得到明确证明。通过应用基于 Formvar 的体外系统,我们证明了大黄素、大黄酚、大黄素和 pachybasin 对大麦(Hordeum vulgare L.)白粉菌(Blumeria graminis f. sp. hordei (DC.) Speer)分生孢子萌发和附着胞形成的直接、剂量依赖性影响,大麦白粉病的病原体。在测试的化合物中,大黄素是最有效的。在较高剂量下,大黄素主要抑制分生孢子萌发。然而,在较低的速率下,附着胞形成明显受到干扰。大黄素和其他物质可能通过调节白粉病病原体的侵染能力和宿主植物的防御来发挥作用。我们的结果表明,蒽醌骨架结构上取代基的特定排列对于直接的抗霉菌作用至关重要。

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