Institut für Cytologie der Universität, Ulrich-Haberland-Straße 61a, D-5300, Bonn 1, Federal Republic of Germany.
Planta. 1981 May;151(6):584-94. doi: 10.1007/BF00387438.
The importance of endoplasmic streaming in the synchronization of contraction activites in plasmodial strands of Physarum was investigated under experimental conditions allowing simultaneous observation of the endoplasmic flow in the middle part of a strand mounted as a trapeze and the measurement of isometric contraction activities of the arms of the trapeze, as well as of the activities of the strand portion connecting the arms. The correlation of longitudinal and radial contraction activities in different regions of a trapeze was examined. Whereas the arms and the middle part of a trapeze contract synchronously in a longitudinal direction (in-phase behaviour), an antiphase correlation appeared when comparing the longitudinal contraction activity of the arms and the radial activity of the middle part. This result is interpreted to mean that the middle part is able to perform isotonic contractions which induce radial dilatation of the strands. No clear-cut correlation between longitudinal and radial activities could be found when measuring simultaneously both activities in one and the same arm of a trapeze by combining tensiometry and cinematography. Protoplasmic shuttle streaming within a strand mounted as a trapeze is found to run regularly out of one arm through the middle part into the other arm, and vice versa. There is no correlation between the time points of streaming reversal and a certain stage of contraction cycles as presented by the contraction curves of the arms. However, there is a good correlation between the points of streaming reversal and the phase deviations of the longitudinal contraction activities of the arms. The importance of these phase deviations for the control of streaming reversal, i.e., for the generation of hydrostatic pressure differences in a system working with phase synchrony, is discussed. The role of endoplasmic streaming as a pacemaker for synchronization phenomena of contraction activities is stressed. The possibility is discussed that shuttle streaming of endoplasm acts as a mechanical coupling within the regulation phenomena resulting in spatial monorhythmicity.
在实验条件下研究了质膜流对变形体质膜丝收缩活动同步性的影响,这些实验条件允许同时观察到被安装成倒三角形的质膜丝中部的内质流,以及测量倒三角形臂的等长收缩活动和连接臂的质膜丝部分的活动。研究了不同区域的质膜丝的纵向和径向收缩活动之间的相关性。当臂和倒三角形的中部沿纵向同步收缩时(同相行为),当比较臂的纵向收缩活动和中部的径向活动时,出现了反相关系。这一结果表明,中部能够进行等张收缩,引起质膜丝的径向扩张。当通过张力测量和电影摄影术同时测量倒三角形一个臂上的两种活动时,没有发现纵向和径向活动之间有明显的相关性。在倒三角形臂上同时测量两种活动时,在一个臂上安装的质膜丝中的原生质穿梭流被发现定期从一个臂穿过中部进入另一个臂,反之亦然。在质膜丝中部的穿梭流反转时间点与臂的收缩曲线所呈现的收缩周期的某个阶段之间没有相关性。然而,在穿梭流反转时间点与臂的纵向收缩活动相位偏差之间存在很好的相关性。这些相位偏差对于控制穿梭流反转,即对于在相位同步工作的系统中产生静水压差的重要性,进行了讨论。强调了内质流作为收缩活动同步现象的起搏器的作用。讨论了穿梭流动的内质作为调节现象中的机械耦合的可能性,从而导致空间单节律性。