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大西洋对虾卵中皮质囊泡的发育:其异质性及在孵化膜形成中的作用

Development of cortical vesicles in Sicyonia ingentis ova: their heterogeneity and role in elaboration of the hatching envelope.

作者信息

Pillai M C, Clark W H

机构信息

Department of Animal Science, University of California, Davis.

出版信息

Mol Reprod Dev. 1990 May;26(1):78-89. doi: 10.1002/mrd.1080260112.

Abstract

In the marine shrimp Sicyonia ingentis, ova lack cortical vesicles at spawning. Previous ultrastructural studies suggested that two different populations of cortical vesicles (dense vesicles and the ring vesicles) appear within 30 min post-spawning. These vesicles undergo sequential exocytosis (exocytosis of the dense vesicles followed by exocytosis of the ring vesicles) that leads to the formation of a hatching envelope around the ovum (see Pillai and Clark: Tissue & Cell 20:941-52, 1988). In the present study, lectins were used as molecular probes to study the development of cortical vesicles subsequent to spawning and the role of these vesicles in formation and elaboration of the hatching envelope. Isolated envelopes were screened with 11 different lectins to determine what group(s) were specific to the envelope glycoconjugates; Concanavalin A (Con A), Griffonia simplicifolia (GS II), Lens culinaris (LCA), and wheat germ agglutinin (WGA) bound to the envelopes. FITC-lectin studies of sectioned ova (fixed at various time points after spawning) utilizing WGA and LCA showed different labelling patterns. Data obtained at the light microscopical level indicated that WGA was specific to the dense vesicles and the outer portion of the envelope, while LCA exhibited specificity for the ring vesicles and the inner portion of the envelope. At the ultrastructural level, gold-LCA labelling was seen associated with the cisternal elements (containing ring-shaped structures), ring vesicles, and the inner layer of the fully formed envelope. These data demonstrated that 1) the ring vesicles are formed by fusion of cisternal elements containing ring-shaped structures; 2) the two species of cortical vesicles are chemically heterogeneous; and 3) the components of each type of vesicle contribute to different integral parts (the outer and inner layers) of the hatching envelope.

摘要

在海洋虾类西氏矶虾(Sicyonia ingentis)中,卵子在产卵时缺乏皮质小泡。先前的超微结构研究表明,两种不同类型的皮质小泡(致密小泡和环状小泡)在产卵后30分钟内出现。这些小泡经历顺序性胞吐作用(致密小泡先胞吐,随后环状小泡胞吐),这导致在卵子周围形成孵化膜(见皮莱和克拉克:《组织与细胞》20:941 - 52,1988)。在本研究中,凝集素被用作分子探针,以研究产卵后皮质小泡的发育以及这些小泡在孵化膜形成和细化中的作用。用11种不同的凝集素筛选分离出的孵化膜,以确定哪些凝集素对孵化膜糖缀合物具有特异性;刀豆球蛋白A(Con A)、西非单叶豆凝集素(GS II)、菜豆凝集素(LCA)和麦胚凝集素(WGA)与孵化膜结合。利用WGA和LCA对产卵后不同时间点固定的切片卵子进行异硫氰酸荧光素(FITC) - 凝集素研究,显示出不同的标记模式。在光学显微镜水平获得的数据表明,WGA对致密小泡和孵化膜的外部具有特异性,而LCA对环状小泡和孵化膜的内部表现出特异性。在超微结构水平,可见金 - LCA标记与含有环形结构的扁平囊泡成分、环状小泡以及完全形成的孵化膜的内层相关。这些数据表明:1)环状小泡由含有环形结构的扁平囊泡成分融合形成;2)两种类型的皮质小泡在化学性质上是异质的;3)每种类型小泡的成分对孵化膜的不同组成部分(外层和内层)有贡献。

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