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Micromanipulation studies of chromosome movement. I. Chromosome-spindle attachment and the mechanical properties of chromosomal spindle fibers

机译:染色体运动的显微操作研究。 I.染色体纺锤体的附着和染色体纺锤体纤维的机械性能

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摘要

We have used micromanipulation to study the attachment of chromosomes to the spindle and the mechanical properties of the chromosomal spindle fibers. Individual chromosomes can be displaced about the periphery of the spindle, in the plane of the metaphase plate, without altering the structure of the spindle or the positions of the nonmanipulated chromosomes. From mid-prometaphase through the onset of anaphase, chromosomes resist displacement toward either spindle pole, or beyond the spindle periphery. In anaphase a chromosome can be displaced either toward its spindle pole or laterally, beyond the periphery of the spindle; however, the chromosome resists displacement away from the spindle pole. When an anaphase half-bivalent is displaced toward its spindle pole, it stops migrating until the nonmanipulated half- bivalents reach a similar distance from the pole. The manipulated half- bivalent then resumes its poleward migration at the normal anaphase rate. No evidence was found for mechanical attachments between separating half-bivalents in anaphase. Our observations demonstrate that chromosomes are individually anchored to the spindle by fibers which connect the kinetochores of the chromosomes to the spindle poles. These fibers are flexible, much less extensible than the chromosomes, and are to pivot about their attachment points. While the fibers are able to support a tensile force sufficient to stretch a chromosome, they buckle when subjected to a compressive force. Preliminary evidence suggests that the mechanical attachment fibers detected with micromanipulation correspond to the birefringent chromosomal spindle fibers observed with polarization microscopy.
机译:我们已经使用显微操作来研究染色体对纺锤体的附着以及染色体纺锤体纤维的机械性能。单个染色体可以在中期板的平面内绕纺锤体的外围移动,而不会改变纺锤体的结构或未操纵的染色体的位置。从中期前期到后期,染色体阻止向纺锤极或纺锤体外围的位移。在后期,染色体可以朝着它的纺锤极或向侧面移动,超出纺锤的外围。但是,染色体可以抵抗远离主轴的位移。当一后期半二价朝着它的主轴移动时,它会停止迁移,直到未操纵的半二价与磁极的距离相似。然后,被操纵的半二价以正常的后期速率恢复其极移。没有证据表明分离后期的二价半价之间存在机械连接。我们的观察结果表明,染色体是通过纤维分别锚固在纺锤体上的,这些纤维将染色体的动臂连接到纺锤体的极点。这些纤维具有柔韧性,比染色体的延伸性差得多,并且可以绕其附着点旋转。虽然纤维能够支撑足以拉伸染色体的拉力,但它们在受到压缩力时会弯曲。初步证据表明,通过显微操作检测到的机械附着纤维与通过偏振显微镜观察到的双折射染色体纺锤纤维相对应。

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