Staves M P, Wayne R, Leopold A C
Section of Plant Biology and Boyce Thompson Institute, Cornell University, Ithaca, New York, USA.
Protoplasma. 1995;188:38-48. doi: 10.1007/BF01276794.
Gravity induces a polarity of cytoplasmic streaming in vertically-oriented internodal cells of characean algae. The motive force that powers cytoplasmic streaming is generated at the ectoplasmic/endoplasmic interface. The velocity of streaming, which is about 100 micrometers/s at this interface, decreases with distance from the interface on either side of the cell to 0 micrometers/s near the middle. Therefore, when discussing streaming velocity it is necessary to specify the tangential plane through the cell in which streaming is being measured. This is easily done with a moderate resolution light microscope (which has a lateral resolution of 0.6 micrometers and a depth of field of 1.4 micrometers), but is obscured when using any low resolution technique, such as low magnification light microscopy or laser Doppler spectroscopy. In addition, the effect of gravity on the polarity of cytoplasmic streaming declines with increasing physiological age of isolated cells. Using a classical mechanical analysis, we show that the effect of gravity on the polarity of cytoplasmic streaming cannot result from the effect of gravity acting directly on individual cytoplasmic particles. We suggest that gravity may best be perceived by the entire cell at the plasma membrane-extracellular matrix junction.
重力在轮藻垂直定向的节间细胞中诱导细胞质流动的极性。驱动细胞质流动的动力产生于外质/内质界面。在此界面处,流动速度约为100微米/秒,从细胞两侧的界面开始,随着与界面距离的增加,流动速度逐渐降低至细胞中部附近的0微米/秒。因此,在讨论流动速度时,有必要指定测量流动的穿过细胞的切平面。使用中等分辨率的光学显微镜(横向分辨率为0.6微米,景深为1.4微米)很容易做到这一点,但在使用任何低分辨率技术时,如低倍光学显微镜或激光多普勒光谱法,这一点就会变得模糊不清。此外,随着分离细胞生理年龄的增加,重力对细胞质流动极性的影响会下降。通过经典的力学分析,我们表明重力对细胞质流动极性的影响并非直接作用于单个细胞质颗粒的重力效应所致。我们认为,重力可能在质膜-细胞外基质交界处被整个细胞最佳感知。