FORER A
J Cell Biol. 1965 Apr;25(1):SUPPL:95-117. doi: 10.1083/jcb.25.1.95.
Irradiation of the mitotic spindle in living Nephrotoma suturalis (Loew) spermatocytes with an ultraviolet microbeam of controlled dose produced a localized area of reduced birefringence in the spindle fibers. The birefringence was reduced only at the site irradiated, and only on the spindle fibers irradiated. Areas of reduced birefringence, whether produced during metaphase or during anaphase, immediately began to move toward the pole in the direction of the chromosomal fiber, even though the associated chromosomes did not necessarily move poleward. Both the poleward and the chromosomal sides of the area of reduced birefringence on each chromosomal fiber moved poleward with about the same, constant, velocity. On the average, the areas of reduced birefringence moved poleward with about the same velocities as did the chromosomes during anaphase. The area of reduced birefringence was interpreted as a region in which most, though not necessarily all, of the previously oriented material was disoriented by the irradiation. The poleward movement of the areas of reduced birefringence indicates that the spindle fibers are not static, nonchangeable structures. The poleward movement possibly represents the manner in which the birefringent spindle fibers normally become organized. All the experiments reported were on primary spermatocytes which completed the second meiotic division subsequent to the experimentation. Since both the irradiated and the control cells completed the two meiotic divisions, the movement and irradiation effects studied in the first division were nondegenerative.
用可控剂量的紫外微束照射活的缝斑黑大蚊(Loew)精母细胞的有丝分裂纺锤体,在纺锤体纤维中产生了一个双折射降低的局部区域。双折射仅在照射部位降低,且仅在被照射的纺锤体纤维上降低。双折射降低的区域,无论在中期还是后期产生,即使相关染色体不一定向极移动,也立即开始朝着染色体纤维的方向向极移动。每条染色体纤维上双折射降低区域的向极侧和染色体侧都以大致相同的恒定速度向极移动。平均而言,双折射降低区域向极移动的速度与后期染色体向极移动的速度大致相同。双折射降低区域被解释为这样一个区域,在该区域中,大部分(尽管不一定是全部)先前定向的物质因照射而失去定向。双折射降低区域的向极移动表明纺锤体纤维不是静态的、不可改变的结构。向极移动可能代表了双折射纺锤体纤维正常形成的方式。所有报道的实验都是在初级精母细胞上进行的,这些细胞在实验后完成了第二次减数分裂。由于照射细胞和对照细胞都完成了两次减数分裂,因此在第一次分裂中研究的移动和照射效应是非退化性的。