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首页> 外文期刊>Fungal Genetics and Biology >The Podosphaera xanthii haustorium, the fungal Trojan horse of cucurbit-powdery mildew interactions
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The Podosphaera xanthii haustorium, the fungal Trojan horse of cucurbit-powdery mildew interactions

机译:Podosphaera xanthii haustorium,葫芦丝-霉菌相互作用的真菌特洛伊木马

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The powdery mildew fungi are obligate biotrophic plant pathogens that develop a specialized structure for parasitism termed haustorium, which is responsible for nutrient uptake and factor exchange with the plant. In this work, we present a detailed microscopy analysis of the haustoria of the cucurbit powdery mildew fungus Podosphaera xanthii, a major limiting factor for cucurbit production worldwide. Despite being located inside plant epidermal cells, transmission electron microscopy (TEM) analysis showed the characteristic highly irregular outline of the extrahaustorial membrane that separates the extrahaustorial matrix of haustoria from the cytoplasm of the plant cell. TEM analysis also revealed the presence of some vesicles and electron-dense plaques of material surrounding the haustoria. In confocal microscopy analysis and aniline blue staining we found a positive correlation between haustorial development and deposition of callose, which is distributed as plaques around haustorial complex. In this study, a method for the isolation of P. xanthii haustoria was also adapted, which permitted the analysis of the formation of haustorial lobes and the visualization of vacuoles and the pool of vesicles inside the haustorial complex. Our findings suggested that the haustorial lobes were responsible for vesicular trafficking and most likely act as the main mediators of the fungus-plant dialogue. All of these findings were integrated into a model of the P. xanthii-host cellular interactions. (C) 2014 Elsevier Inc. All rights reserved.
机译:白粉病真菌是专性的生物营养性植物病原体,可为寄生虫形成专门的结构,称为“抽油草”,它负责营养吸收和与植物的因子交换。在这项工作中,我们提出了对葫芦类白粉病真菌Podosphaera xanthii的吸盘的详细显微分析,这是世界范围内葫芦生产的主要限制因素。尽管位于植物表皮细胞内部,但透射电子显微镜(TEM)分析显示出了极度不规则的膜外膜轮廓,该膜将膜外膜的膜外基质与植物细胞的细胞质分开。透射电镜分析还发现,在酒窖周围存在一些囊泡和物质的电子致密斑。在共聚焦显微镜分析和苯胺蓝染色中,我们发现了黑麦草的发育与ose的沉积之间呈正相关,ose的沉积以斑块的形式分布在复合体周围。在这项研究中,还采用了一种分离黄萎病菌的方法,该方法可以分析化脓性肺叶的形成以及在化脓性复合体内的液泡和囊泡池的可视化。我们的研究结果表明,腺泡是水泡运输的原因,很可能是真菌与植物对话的主要媒介。所有这些发现都整合到了黄腐病菌与宿主细胞相互作用的模型中。 (C)2014 Elsevier Inc.保留所有权利。

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