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白蚁鞭毛虫中的旋转运动和液膜

Rotary movements and fluid membranes in termite flagellates.

作者信息

Tamm S L, Tamm S

出版信息

J Cell Sci. 1976 May;20(3):619-38. doi: 10.1242/jcs.20.3.619.

Abstract

We previously described a remarkable type of cell motility that provided direct, visual evidence for the fluid nature of cell membranes. The movement involved continual, unidirectional rotation of one part of a protozoan, including the plasma membrane and cytoplasmic organelles, in relation to a neighbouring part. The cell membrane in the 'shear zone' appeared continuous with that of the rest of the cell. The rotary motor consisted, at least in part, of a non-contractile, microtubular axostyle which extended centrally through the cell. The protozoan was a devescovinid flagellate found in the hindgut of a Florida termite. In this paper, we have confirmed earlier reports of this type of motility in other kinds of devescovinids from Australian termites. By demonstrating continuity of the plasma membrane in the shear zone of the Australian devescovinids as well, we have obtained additional examples that provide direct, visual evidence for fluid membranes. A comparative analysis of rotational motility in various devescovinids revealed 2 different kinds of rotary mechanisms. Hyperdevescovina probably have an internal motor, in which one part of the cell exerts forces against another part, as in the Florida termite devescovinid. Devescovina species, on the other hand, have an external motor, in which flagellar and/or papillar movements exert forces against the surrounding medium. The structure of the axostyle in different devescovinids was compared, and its role in rotational motility discussed with respect to the behavioural data.

摘要

我们之前描述过一种非凡的细胞运动类型,它为细胞膜的流动性提供了直接的视觉证据。这种运动涉及原生动物的一部分(包括质膜和细胞质细胞器)相对于相邻部分持续单向旋转。“剪切区”的细胞膜似乎与细胞其余部分的细胞膜连续。旋转马达至少部分由一个非收缩性的微管轴柱组成,该轴柱从细胞中心穿过。这种原生动物是在佛罗里达白蚁后肠中发现的一种盘变形鞭毛虫。在本文中,我们证实了早期关于澳大利亚白蚁的其他种类盘变形鞭毛虫存在这种运动类型的报道。通过同样证明澳大利亚盘变形鞭毛虫剪切区质膜的连续性,我们获得了更多实例,为细胞膜的流动性提供了直接的视觉证据。对各种盘变形鞭毛虫旋转运动的比较分析揭示了两种不同的旋转机制。超盘变形虫可能具有内部马达,即细胞的一部分对另一部分施加力,就像佛罗里达白蚁的盘变形鞭毛虫那样。另一方面,盘变形虫属的物种具有外部马达,其中鞭毛和/或乳头状突起的运动对周围介质施加力。比较了不同盘变形鞭毛虫中轴柱的结构,并结合行为数据讨论了其在旋转运动中的作用。

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