Forman D S, Lynch K J, Smith R S
Brain Res. 1987 May 26;412(1):96-106. doi: 10.1016/0006-8993(87)91443-0.
Mitochondria in isolated motor axons from the walking legs of lobster were observed with differential interference contrast optics and video microscopic techniques. Movements of the mitochondria were analyzed in time-lapse videotape records. The mean velocity of transport in the retrograde direction (1.33 +/- 0.64 micron/s) was greater than the mean velocity of transport in the anterograde direction (0.72 +/- 0.26 micron/s). The mean lengths of the mitochondria moving in the retrograde and anterograde directions were only slightly different (6.9 microns and 5.5 microns, respectively). No correlation was found between mitochondrial length and average velocity or reciprocal velocity. The instantaneous velocities of mitochondria were distributed over a range of approximately 3 micron/s; both the anterograde and retrograde distributions contained a small proportion of values whose sign was opposite to the modal value. The variation in instantaneous velocity took place at frequencies close to 0.1 Hz. Some mitochondria displayed longitudinally oriented oscillatory movements of a similar low frequency. While the movement of most mitochondria was parallel to the axis of the axon, transverse deviations and complex circular paths were sometimes observed. Some mitochondria reversed their orientation and continued in the same direction, so that the end which had been the leading end became the trailing end. Many mitochondria immediately beneath the plasma membrane were stationary and adhered strongly to the plasma membrane when the axoplasmic structure was disrupted. In electron micrographs, fine strands connected peripheral mitochondria and the plasma membrane. These strands may anchor the stationary mitochondria to the plasma membrane.
利用微分干涉相差光学和视频显微镜技术观察了龙虾步足中分离出的运动轴突中的线粒体。通过延时录像记录分析线粒体的运动。逆向运输的平均速度(1.33±0.64微米/秒)大于顺向运输的平均速度(0.72±0.26微米/秒)。逆向和顺向运动的线粒体的平均长度仅略有不同(分别为6.9微米和5.5微米)。未发现线粒体长度与平均速度或倒数速度之间存在相关性。线粒体的瞬时速度分布在约3微米/秒的范围内;顺向和逆向分布中都有一小部分值的符号与模态值相反。瞬时速度的变化发生在接近0.1赫兹的频率处。一些线粒体表现出类似低频的纵向振荡运动。虽然大多数线粒体的运动与轴突轴平行,但有时会观察到横向偏差和复杂的圆形路径。一些线粒体改变其方向并继续沿相同方向移动,使得原来的前端变成了后端。当轴质结构被破坏时,许多紧邻质膜下方的线粒体是静止的,并与质膜紧密粘连。在电子显微照片中,细链连接着外周线粒体和质膜。这些链可能将静止的线粒体锚定在质膜上。