纤毛虫形态发生过程中纤毛吸收和膜修复

Maria Mulisch , Klaus Hausmann
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引用次数: 6

摘要

在本研究中,介绍了无柄异养纤毛虫Eufolliculina uhligi纤毛吸收的两个过程。(1) 在划分之前,E。uhligi吸收其口腔器具。这是通过单个纤毛的轴突结合到细胞质中,并通过形成一个大液泡发生的,口腔的膜纤毛被包裹在液泡中。液泡内的纤毛不断被吸收。几分钟后,这个液泡分裂成几个较小的液泡,这些液泡积聚在鸦片中。它们的特征是膜的逐渐层压和折叠;液泡内的纤毛退化。讨论了消化液泡的形态异同。(2) 运动性群集细胞向固着细胞的转化包括lorica分泌以及前膜纤毛的吸收。lorica物质是通过胞吐作用分泌的。囊泡膜结合到质膜中。纤毛通过轴突的回缩或通过与质膜的横向融合而被吸收。使用阳离子化铁蛋白作为外源标记物,研究了额外质膜的命运。可以证明,在纤毛吸收和胞吐的部位,质膜是通过包被的凹坑内吞回收的。内分泌学不局限于附体囊,也发生在相邻肺泡之间的隔膜处。内化的膜作为小泡和/或扁平的池从细胞的外围向中心移动。在应用铁蛋白1小时后,没有观察到这些膜元件与次级溶酶体的融合。讨论了内化膜的进一步命运。
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Ciliary resorption and membrane retrieval during morphogenesis in the ciliateEufolliculina uhligi

In this study, two processes of ciliary resorption in the sessile heterotrich ciliateEufolliculina uhligi are presented. (1) Prior to division,E. uhligi resorbs its oral apparatus. This occurs by the incorporation of axonemes of single cilia into the cytoplasm, and by the formation of a large vacuole, in which the membranellar cilia of the buccal cavity are enclosed. The cilia inside the vacuole are continuously resorbed. After some minutes, this vacuole divides into several smaller ones which accumulate in the opisthe. They are characterized by a progressive lamination and infolding of their membrane; the cilia inside the vacuole degenerate. Morphological similarities and dissimilarities to digestive vacuoles are discussed. (2) Transformation of the motile swarmer into the sessile cell includes lorica secretion as well as resorption of the anterior membraneller cilia. The lorica material is secreted by exocytosis. The vesicular membrane is incorporated into the plasma membrane. The cilia are resorbed by retraction of the axonemes or by lateral fusion with the plasmalemma. The fate of the additional plasma membrane has been studied using cationized ferritin as an exogeneous marker. It could be demonstrated, that at the sites of ciliary resorption and exocytosis plasma membrane is retrieved endocytotically via coated pits. Endocytosis is not restricted to the parasomal sacs, but also occurs at the septae between adjacent alveoli. The internalized membrane moves as small vesicles and/or flattened cisternae from the periphery toward the center of the cell. No fusion of these membraneous elements with secondary lysosomes has been observed 1 h after application of ferritin. The further fate of the internalized membrane is discussed.

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