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用于研究真菌与植物相互作用的双锥虫苯胺蓝荧光染色方法。

Dual trypan-aniline blue fluorescence staining methods for studying fungus-plant interactions.

作者信息

Bhadauria V, Miraz P, Kennedy R, Banniza S, Wei Y

机构信息

Department of Biology, University of Saskatchewan, 112 Science Place, Saskatoon, SK, Canada.

出版信息

Biotech Histochem. 2010 Apr;85(2):99-105. doi: 10.1080/10520290903132196.

Abstract

Understanding the infection biology of fungi is the key step in devising suitable control strategies for plant diseases. Recently, the Arabidopsis-Colletotrichum higginsianum (causal agent of anthracnose) system has emerged as a seminal paradigm for deciphering the infection biology underlying fungus-plant interactions. We describe here three staining methods coupled with confocal microscopy: trypan blue, aniline blue and dual trypan blue-aniline blue fluorescence staining. Trypan blue and aniline blue staining were employed to scan the infection structures of the hemibiotrophic fungus C. higginsianum and host response in A. thaliana leaf tissues. The two techniques then were combined to observe the contrast between in planta fungal infection structures, i.e., infection vesicles, primary hyphae and secondary hyphae, and the host plant defense responses, i.e., papilla formation and hypersensitive response. These staining techniques also were applied to the lentil-C. truncatum pathosystem to demonstrate their applicability for multiple pathosystems.

摘要

了解真菌的感染生物学是制定合适的植物病害防治策略的关键步骤。最近,拟南芥-菜豆炭疽菌(炭疽病的病原体)系统已成为解读真菌与植物相互作用背后感染生物学的一个开创性范例。我们在此描述三种与共聚焦显微镜相结合的染色方法:台盼蓝、苯胺蓝以及台盼蓝-苯胺蓝双重荧光染色。使用台盼蓝和苯胺蓝染色来扫描半活体营养型真菌菜豆炭疽菌的感染结构以及拟南芥叶片组织中的宿主反应。然后将这两种技术结合起来,以观察植物体内真菌的感染结构(即感染泡、初生菌丝和次生菌丝)与宿主植物防御反应(即乳突形成和超敏反应)之间的对比。这些染色技术也应用于小扁豆-菜豆刺盘孢病害系统,以证明它们在多种病害系统中的适用性。

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