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多囊泡体参与了大麦叶片受致病白粉菌攻击时的细胞壁相关防御反应。

Multivesicular bodies participate in a cell wall-associated defence response in barley leaves attacked by the pathogenic powdery mildew fungus.

作者信息

An Qianli, Hückelhoven Ralph, Kogel Karl-Heinz, van Bel Aart J E

机构信息

Institute of General Botany, Justus-Liebig-University Giessen, Giessen, Germany.

出版信息

Cell Microbiol. 2006 Jun;8(6):1009-19. doi: 10.1111/j.1462-5822.2006.00683.x.

DOI:10.1111/j.1462-5822.2006.00683.x
PMID:16681841
Abstract

Localized cell wall modification and accumulation of antimicrobial compounds beneath sites of fungal attack are common mechanisms for plant resistance to fungal penetration. In barley (Hordeum vulgare) leaves, light-microscopically visible vesicle-like bodies (VLBs) containing H(2)O(2) or phenolics frequently accumulate around cell wall appositions (syn. papillae), in which the penetration attempt of the biotrophic powdery mildew fungus Blumeria graminis f. sp. hordei (Bgh) is halted. By ultrastructural analyses, we demonstrated that the Bgh-induced VLBs represent different structures. VLBs intensively stained by H(2)O(2)-reactive dyes were actually small papillae instead of cytoplasmic vesicles. Other VLBs were identified as osmiophilic bodies or multivesicular compartments, designated paramural bodies (PMBs) and multivesicular bodies (MVBs). MVBs seemingly followed two distinct pathways: either they were engulfed by the tonoplast for degradation in the vacuole or they fused with the plasma membrane to release their internal vesicles into the paramural space and hence could be the origin of PMBs. MVBs and PMBs appeared to be multicomponent kits possibly containing building blocks to be readily assembled into papilla and antimicrobial compounds to be discharged against fungal penetration. Finally, we propose that released paramural vesicles might be similar to exosomes in animal cells.

摘要

局部细胞壁修饰以及在真菌侵染部位下方积累抗菌化合物是植物抵抗真菌穿透的常见机制。在大麦(Hordeum vulgare)叶片中,光学显微镜下可见的含有H₂O₂或酚类物质的囊泡状小体(VLBs)经常在细胞壁附着处(同义词:乳突)周围积累,活体营养型白粉菌Blumeria graminis f. sp. hordei(Bgh)的穿透企图在此处受阻。通过超微结构分析,我们证明Bgh诱导的VLBs代表不同的结构。被H₂O₂反应性染料强烈染色的VLBs实际上是小乳突而非细胞质囊泡。其他VLBs被鉴定为嗜锇小体或多囊泡区室,分别称为壁旁体(PMBs)和多囊泡体(MVBs)。MVBs似乎遵循两条不同的途径:要么它们被液泡膜吞噬以便在液泡中降解,要么它们与质膜融合以将其内部囊泡释放到壁旁空间,因此可能是PMBs的起源。MVBs和PMBs似乎是多组分组合,可能包含易于组装成乳突的构建块以及针对真菌穿透而释放的抗菌化合物。最后,我们提出释放的壁旁囊泡可能类似于动物细胞中的外泌体。

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