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细胞黏菌子实体中孢粉素的存在及位置。

The presence and location of sporopollenin in fruiting bodies of the cellular slime moulds.

作者信息

Maeda Y

出版信息

J Cell Sci. 1984 Mar;66:297-308. doi: 10.1242/jcs.66.1.297.

Abstract

The presence of an acetolysis-resistant polymer (sporopollenin) in the cellular slime moulds is demonstrated. This polymer is located on the stalk sheath of fruiting bodies as a bundle of fine fibrils (4-5 nm diameter). The location and structure of sporopollenin in spores are shown to vary considerably, depending upon the species. In Polysphondylium violaceum spores, sporopollenin is composed of fine spicules (4-5 nm in diameter, 25-50 nm long) that cover both the outermost layer of spore wall and the inner surface of the cell membrane. The sporopollenin of Dictyostelium discoideum spores is located preferentially close to the inner surface of the cell membrane, forming a mass of electron-opaque fine granules (4-5 nm in diameter). D. mucoroides spores, however, appear not to possess a tight network of sporopollenin, since they were less resistant to acetolysis than those of the other species. The biological significance of the results is discussed with special reference to fruiting body formation.

摘要

已证明细胞黏菌中存在一种抗乙酰解的聚合物(孢粉素)。这种聚合物以一束细纤维(直径4 - 5纳米)的形式位于子实体的柄鞘上。孢粉素在孢子中的位置和结构显示出很大差异,这取决于物种。在紫色多头绒泡菌的孢子中,孢粉素由细小的针状体(直径4 - 5纳米,长25 - 50纳米)组成,这些针状体覆盖了孢子壁的最外层和细胞膜的内表面。盘基网柄菌孢子的孢粉素优先位于细胞膜内表面附近,形成一团电子不透明的细颗粒(直径4 - 5纳米)。然而,黏液霉菌孢子似乎没有紧密的孢粉素网络,因为它们比其他物种的孢子对乙酰解的抗性更低。文中特别参考子实体形成对这些结果的生物学意义进行了讨论。

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