首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >A FINE STRUCTURAL INVESTIGATION OF SURFACE SPECIALIZATIONS AND THE CORTICAL REACTION IN EGGS OF THE CNIDARIAN BUNODOSOMA CAVERNATA
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A FINE STRUCTURAL INVESTIGATION OF SURFACE SPECIALIZATIONS AND THE CORTICAL REACTION IN EGGS OF THE CNIDARIAN BUNODOSOMA CAVERNATA

机译:猪ID虫洞表面卵的细微结构研究和蛋壳中的亲和反应

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摘要

Developing oocytes of the cnidarian Bunodosoma cavernata are located within the mesoglea of the mesenteries of the gastrovascular cavity. The cortex of the more mature vitellogenic oocytes contains numerous, electron-dense, membrane-bound, cortical granules. The surface of these oocytes possesses prominent radially projecting structures termed cytospines. Each cytospine has a core of microfilaments, 50–70 Å in diameter, that extends basally as a rootlet through the cortical layer. During spawning, ova lacking any extraneous investments are released from the enclosing gastrodermis. As a consequence of fertilization or events associated with the earliest stages of development the ova undergo a massive cortical reaction. This reaction, which occurs during or just after release of the ova, involves extensive reorganization of the cortical layer. The cortical granule membranes and egg surface membrane fuse and vesiculate resulting in the massive discharge of granule contents. This event is accompanied by the loss of vesicular remnants of cortical ooplasm and the disruption of cytospine organization. Light and electron microscope comparisons of unreacted and reacted eggs show that the reaction results in a significant decrease in egg diameter with the oolemma of the reacted egg reorganizing in a position centripetal to its original location.
机译:刺孢子虫Bonodosoma Cavernata的发育卵母细胞位于胃腔肠系膜的中胚层内。较成熟的卵黄形成卵母细胞的皮质包含大量电子密集的,膜结合的皮质颗粒。这些卵母细胞的表面具有显着的径向突出结构,称为胞嘧啶。每个胞嘧啶都有一个直径为50-70Å的微丝核心,基本呈根状延伸穿过皮质层。在产卵过程中,缺乏任何外来投资的卵从封闭的胃真皮中释放出来。由于受精或与发育最早阶段有关的事件,卵子会发生大量的皮层反应。在卵子释放期间或刚释放后发生的该反应涉及皮层的广泛重组。皮质颗粒膜和卵表面膜融合并形成囊泡,导致大量颗粒物质排出。该事件伴有皮质卵泡囊泡残余的丢失和细胞脊柱组织的破坏。未反应和反应过的卵的光和电子显微镜比较显示,反应导致卵径显着减小,而反应后的卵的菌斑在向心原始位置重组。

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