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茄丝核菌中隔膜孔帽的自动电子断层扫描

Automated electron tomography of the septal pore cap in Rhizoctonia solani.

作者信息

Müller W H, Koster A J, Humbel B M, Ziese U, Verkleij A J, van Aelst A C, van der Krift T P, Montijn R C, Boekhout T

机构信息

Department of Molecular Cell Biology, EMSA, Utrecht University, Utrecht, Padualaan 8, 3584 CH, The Netherlands.

出版信息

J Struct Biol. 2000 Jul;131(1):10-8. doi: 10.1006/jsbi.2000.4243.

Abstract

Dolipore septa and septal pore caps (SPCs) in filamentous basidiomycetes may play an important role in maintaining the integrity of hyphal cells. We have investigated the ultrastructure of the dolipore septum and the SPC in Rhizoctonia solani hyphal cells after high-pressure freezing, freeze substitution, and Spurr embedding. We visualized the SPC with associated cell ultrastructures in three dimensions by automated electron tomography of thick-sectioned cells, followed by 3D tomographic reconstructions. Using these methods we were able to document the passage of mitochondria through the SPC, small tubular membranous structures at the entrance of the septal pore channel, filamentous structures connecting the inner side of the SPC with pore-plugging material, thin filaments anchoring the pore-plugging material with the plasma membrane, small vesicles attached to the plugging material, and tubular endoplasmic reticulum continuous with the base of the SPC. We hypothesize that the SPC, the filamentous structures, the plugging material, and the endoplasmic reticulum act in a coordinated fashion to maintain cellular integrity, intercellular communication, and the transport of solutes and cell organelles in the filamentous fungus R. solani.

摘要

丝状担子菌中的桶孔隔膜和隔膜孔帽(SPCs)可能在维持菌丝细胞的完整性方面发挥重要作用。我们对立枯丝核菌菌丝细胞在高压冷冻、冷冻置换和Spurr包埋后的桶孔隔膜和SPC的超微结构进行了研究。我们通过对厚切片细胞进行自动电子断层扫描,然后进行三维断层重建,在三维空间中观察到了SPC及其相关的细胞超微结构。使用这些方法,我们能够记录线粒体通过SPC的过程、隔膜孔通道入口处的小管状膜结构、将SPC内侧与孔堵塞材料连接起来的丝状结构、将孔堵塞材料与质膜锚定的细丝、附着在堵塞材料上的小泡,以及与SPC基部连续的管状内质网。我们推测,SPC、丝状结构、堵塞材料和内质网以协调的方式发挥作用,以维持丝状真菌立枯丝核菌的细胞完整性、细胞间通讯以及溶质和细胞器的运输。

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