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活体家蟋蟀精母细胞中前期染色体的运动及其与前中期、后期和颗粒运动的关系。

Prophase chromosome movements in living house cricket spermatocytes and their relationship to prometaphase, anaphase and granule movements.

作者信息

Rickards G K

出版信息

Chromosoma. 1975;49(4):407-55. doi: 10.1007/BF00285133.

Abstract

Chromosome and granule movements in meiotic prophase and prometaphase have been studied by time-lapse cinemicrography in live spermatocytes of the house cricket, Acheta domesticus. Chromosome movements in prophase cells, up to one hour or more before breakdown of the nuclear envelope, are described. These movements are frequent but saltatory; are based mostly at chromosome ends but also at kinetochores; occur in very intimate association with the inside of the nuclear envelope; are directed towards and away from the extranuclear centres (centrioles); tend weakly to accumulate bivalents round the two centres and reach a velocity of 0.65 micron/sec. Saltatory movements in granules associated with extranuclear asters are remarkably similar to basic characteristics to the intranuclear chromosome movements. Surprisingly, the chromosome movements (and those granules) are reversably blocked by colcemid (but not lumi-colcemid), and yet occur in the apparent absence of an intranuclear envelope. However, kinetochore movements in very early prometaphase are similar in velocity and other respects to prophase movements; later prometaphase movements are clearly slower, and those of anaphase very much slower still. -The prophase movements suggest a two component model for motion: a non-microtubule, linear force producer together withrotubules with a skeletal, orientational role. Arguably, both these components are also necessary for chromosome movements in prometaphase and anaphase.

摘要

通过延时电影显微摄影技术,对家蟋蟀(Acheta domesticus)活精母细胞减数分裂前期和前中期的染色体及颗粒运动进行了研究。本文描述了前期细胞在核膜破裂前一小时或更长时间内的染色体运动。这些运动频繁但呈跳跃式;主要发生在染色体末端,但也发生在着丝粒处;与核膜内部紧密相连;朝向和远离核外中心(中心粒);倾向于使二价体在两个中心周围微弱地聚集,并达到0.65微米/秒的速度。与核外星体相关的颗粒的跳跃运动在基本特征上与核内染色体运动非常相似。令人惊讶的是,染色体运动(以及那些颗粒)可被秋水仙酰胺(但不能被光秋水仙酰胺)可逆性阻断,然而在明显没有核内膜的情况下仍会发生。不过,极早期前中期的着丝粒运动在速度和其他方面与前期运动相似;后期前中期运动明显较慢,而后期运动则更慢得多。前期运动提示了一种运动的双组分模型:一种非微管的线性力产生器以及具有骨架定向作用的微管。可以说,这两个组分对于前中期和后期的染色体运动也是必需的。

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