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在活体状态下并借助电子显微镜对黑腹果蝇精母细胞前中期的动粒微管和染色体运动进行研究。

Kinetochore microtubules and chromosome movement during prometaphase in Drosophila melanogaster spermatocytes studied in life and with the electron microscope.

作者信息

Church K, Lin H P

出版信息

Chromosoma. 1985;92(4):273-82. doi: 10.1007/BF00329810.

Abstract

Prometaphase I chromosome behavior was examined in wild-type Drosophila melanogaster primary spermatocytes. Cine analysis of live cells reveals that bivalents exhibit complex motions that include (1) transient bipolar orientations, (2) simultaneous reorientation of homologous kinetochores, (3) movements not parallel to the spindle axis, and (4) movement along the nuclear membrane. --Kinetochores and kinetochore microtubule have been analyzed for bivalents previously studied in life. The results suggest that most chromosome motions (complex though they may be) can be explained by poleward forces acting on or through kinetochore microtubules that span the distance between the kinetochore and the vicinity of a pole. The results also suggest that the majority of short kinetochore microtubules may be remnants of previous microtubule-mediated associations between a kinetochore and a pole.

摘要

在野生型黑腹果蝇初级精母细胞中观察了前中期I染色体的行为。对活细胞的电影分析表明,二价体表现出复杂的运动,包括:(1)短暂的双极取向;(2)同源动粒的同时重新取向;(3)不平行于纺锤体轴的运动;(4)沿核膜的运动。——之前已对生活状态下研究的二价体的动粒和动粒微管进行了分析。结果表明,大多数染色体运动(尽管可能很复杂)可以用作用于跨越动粒和极附近距离的动粒微管或通过动粒微管起作用的向极力来解释。结果还表明,大多数短动粒微管可能是先前动粒与极之间微管介导的关联的残余物。

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