Brown D L, Massalski A, Patenaude R
J Cell Biol. 1976 Apr;69(1):106-25. doi: 10.1083/jcb.69.1.106.
The organization of microtubular systems in the quadriflagellate unicell Polytomella agilis has been reconstructed by electron microscopy of serial sections, and the overall arrangement confirmed by immunofluorescent staining using antiserum directed against chick brain tubulin. The basal bodies of the four flagella are shown to be linked in two pairs of short fibers. Light microscopy of swimming cells indicates that the flagella beat in two synchronous pairs, with each pair exhibiting a breast-stroke-like motion. Two structurally distinct flagellar rootlets, one consisting of four microtubules in a 3 over 1 pattern and the other of a striated fiber over two microtubules, terminate between adjacent basal bodies. These rootlets diverge from the basal body region and extend toward the cell posterior, passing just beneath the plasma membrane. Near the anterior part of the cell, all eight rootlets serve as attachment sites for large numbers of cytoplasmic microtubules which occur in a single row around the circumference of the cell and closely parallel the cell shape. It is suggested that the flagellar rootless may function in controlling the patterning and the direction of cytoplasmic microtubule assembly. The occurrence of similar rootlet structures in other flagellates is briefly reviewed.
通过对四鞭毛单细胞敏捷多鞭藻微管系统的连续切片进行电子显微镜观察,重建了其微管系统的组织结构,并使用针对鸡脑微管蛋白的抗血清进行免疫荧光染色,证实了整体排列。四条鞭毛的基体通过两对短纤维相连。对游动细胞的光学显微镜观察表明,鞭毛以两对同步摆动,每对呈现类似蛙泳的运动。有两种结构不同的鞭毛根丝体,一种由呈3+1模式的四根微管组成,另一种是在两根微管上有一条横纹纤维,它们在相邻基体之间终止。这些根丝体从基体区域发散,向细胞后部延伸,刚好在质膜下方穿过。在细胞前部附近,所有八条根丝体作为大量细胞质微管的附着位点,这些微管在细胞周围呈单排排列,与细胞形状紧密平行。有人认为鞭毛根丝体可能在控制细胞质微管组装的模式和方向方面发挥作用。简要回顾了其他鞭毛虫中类似根丝体结构的存在情况。