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首页> 外文期刊>Journal of Microscopy >ULTRASTRUCTURE AND COMPOSITION OF THE CELL SURFACES OF INFECTION STRUCTURES FORMED BY THE FUNGAL PLANT PATHOGEN COLLETOTRICHUM LINDEMUTHIANUM
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ULTRASTRUCTURE AND COMPOSITION OF THE CELL SURFACES OF INFECTION STRUCTURES FORMED BY THE FUNGAL PLANT PATHOGEN COLLETOTRICHUM LINDEMUTHIANUM

机译:真菌植物病原菌石炭疽病形成的感染结构的细胞表面的超微结构和组成

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A variety of microscopical techniques and molecular probes have been used to study the ultrastructure and composition of the cell surfaces of the conidia (i.e. spores) and infection structures produced by the hemibiotrophic fungal plant pathogen Colletotrichum lindemuthianum. The fungal conidium germinates to produce a germ-tube, the tip of which swells to produce a domed, melanized appressorium which adheres firmly to the plant surface. Penetration of the cuticle and cell wall is followed by the development of a biotrophic intracellular hypha, which is surrounded by an invagination of the host plasma membrane. Freeze-substitution of C. lindemuthianum germlings showed that conidia are coated with a dense layer of fibrillar material, This 'spore coat' contains irregularly shaped pores. giving it a reticular appearance. Negative staining of germlings revealed the presence of numerous long, flexuous fibres or fimbriae, protruding from the surfaces of germ-tubes and appressoria. Colloidal gold was used to visualize fungal extracellular proteins. The colloidal gold stained a fibrillar sheath around germ-tubes, whereas appressoria were surrounded by a halo, comprising an inner unstained region and a stained perimeter, The carbohydrate composition of the cell surfaces of the conidia and infection structures was studied by labelling cells with rhodamine-and fluorescein-conjugated lectins. The results showed that the extracellular matrices of germ-tubes and appressoria are very similar in composition, but differ from those of conidia and intracellular hyphae, Monoclonal antibodies have been prepared to germlings and infection structures of C. lindemuthianum and their use has provided further evidence that the extracellular matrices around germ-tubes and appressoria have several glycoproteins in common. The results also show that the cell surface of C. lindemuthianum becomes specialized during biotrophic development inside host cells. [References: 44]
机译:已经使用了多种显微技术和分子探针来研究半生营养真菌植物病原菌Colletotrichum lindemuthianum产生的分生孢子(即孢子)细胞表面的超微结构和组成以及感染结构。真菌分生孢子发芽产生胚芽管,胚芽的尖端膨胀产生牢固附着在植物表面的圆顶状黑色素化的包衣。角质层和细胞壁的渗透之后是生物营养性细胞内菌丝的形成,其被宿主质膜的内陷所包围。冷冻替换C. lindemuthianum幼芽表明,分生孢子被致密的原纤维状物质层覆盖。这种“孢子皮”包含不规则形状的孔。使其具有网状外观。幼苗的阴性染色显示存在大量长而弯曲的纤维或菌毛,从细菌管和食欲的表面突出。胶体金用于可视化真菌细胞外蛋白。胶体金将胚​​芽管周围的原纤维鞘染色,而光环被光环围绕,包括内部未染色的区域和染色的周边。通过用罗丹明标记细胞,研究了分生孢子细胞表面和感染结构的碳水化合物组成和荧光素结合的凝集素。结果表明,胚芽管和食欲细胞的细胞外基质组成非常相似,但与分生孢子和胞内菌丝的细胞外基质不同,已经制备了针对菩提树的胚芽和感染结构的单克隆抗体,它们的使用提供了进一步的证据生殖管和食欲周围的细胞外基质有几种共同的糖蛋白。结果还表明,在宿主细胞内部的营养生长发育过程中,菩提树的细胞表面变得专门化。 [参考:44]

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