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蚜虫假丝酵母诱导番茄植株对密执安棒形杆菌产生不依赖水杨酸的抗性。

Pseudozyma aphidis Induces Salicylic-Acid-Independent Resistance to Clavibacter michiganensis in Tomato Plants.

作者信息

Barda Omer, Shalev Or, Alster Shanee, Buxdorf Kobi, Gafni Aviva, Levy Maggie

机构信息

Department of Plant Pathology and Microbiology, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot, Israel.

出版信息

Plant Dis. 2015 May;99(5):621-626. doi: 10.1094/PDIS-04-14-0377-RE. Epub 2015 Apr 30.

Abstract

The ability of plant pathogens to rapidly develop resistance to commonly used pesticides challenges efforts to maximize crop production. Fungal biocontrol agents have become an important alternative to chemical fungicides as a result of environmental concerns regarding conventional pesticides, including resistance issues. The complex mode of action of biocontrol agents reduces the likelihood that pathogens will develop resistance to them. We recently isolated a unique, biologically active isolate of the epiphytic fungus Pseudozyma aphidis. We show that the extracellular metabolites secreted by our P. aphidis isolate can inhibit Xanthomonas campestris pv. vesicatoria, X. campestris pv. campestris, Pseudomonas syringae pv. tomato, Erwinia amylovora, Clavibacter michiganensis, and Agrobacterium tumefaciens in vitro. Moreover, application of Pseudozyma aphidis spores on tomato plants in the greenhouse significantly reduced (by 60%) the incidence of bacterial wilt and canker disease caused by C. michiganensis subsp. michiganensis on those plants as well as disease severity by 35%. Furthermore, infected plants treated with P. aphidis were 25% taller than control infected plants. We found that P. aphidis activates PR1a-and other pathogenesis-related genes in tomato plants-and can trigger an induced-resistance response against C. michiganensis that proceeds in a salicylic-acid-independent manner, as shown using NahG-transgenic tomato plants.

摘要

植物病原体对常用农药迅速产生抗性的能力,给旨在实现作物产量最大化的努力带来了挑战。由于对传统农药包括抗性问题存在环境担忧,真菌生物防治剂已成为化学杀菌剂的重要替代品。生物防治剂复杂的作用方式降低了病原体对其产生抗性的可能性。我们最近分离出了一种独特的、具有生物活性的附生真菌——蚜虫假丝酵母(Pseudozyma aphidis)菌株。我们发现,我们分离的蚜虫假丝酵母分泌的细胞外代谢产物在体外能够抑制野油菜黄单胞菌疮痂致病变种(Xanthomonas campestris pv. vesicatoria)、野油菜黄单胞菌野油菜致病变种(X. campestris pv. campestris)、番茄丁香假单胞菌(Pseudomonas syringae pv. tomato)、梨火疫病菌(Erwinia amylovora)、密执安棒形杆菌(Clavibacter michiganensis)和根癌土壤杆菌(Agrobacterium tumefaciens)。此外,在温室中对番茄植株施用蚜虫假丝酵母孢子,可显著降低(60%)由密执安棒形杆菌密执安亚种(C. michiganensis subsp. michiganensis)引起的青枯病和溃疡病的发病率,以及病情严重程度35%。此外,用蚜虫假丝酵母处理的受感染植株比未处理的受感染对照植株高25%。我们发现,蚜虫假丝酵母可激活番茄植株中的PR1a基因和其他病程相关基因,并能触发对密执安棒形杆菌的诱导抗性反应,该反应以水杨酸非依赖的方式进行,这是通过NahG转基因番茄植株实验证明的。

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