Chromosome segregation from cell hybrids. II. Do differences in parental cell growth rates and phase times determine direction of loss?

J. Graves, J. M. Wrigley
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引用次数: 2

Abstract

The hypothesis that the direction of chromosome segregation in cell hybrids is determined by the interaction of parent cell cycles, or S-phase times, predicts that the segregant parent will always be the one with the longer cycle, or the longer S phase, and that late replicating chromosomes will be more frequently lost. We have tested this hypothesis by studying cell cycle parameters of mouse, Chinese hamster, and platypus parent cells and by observing chromosome loss and replication patterns in hybrids between them. Two types of hybrids have been studied: mouse-hamster hybrids showed gradual segregation, in one or other direction, of 10-60% chromosomes, while rodent-platypus hybrids (which could be selected under conditions optimal for either parent cell) showed rapid and extreme segregation of platypus chromosomes. We found no correlation between the direction of segregation and the relative lengths of parental cycle times, or phase times, nor between sequence of replication and frequency with which segregant chromosomes are lost. We therefore conclude that the direction and extent of segregation is not directly determined by the interaction of parental cycle or phase times.
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杂种细胞的染色体分离。2亲代细胞生长速率和相时间的差异决定了损失的方向吗?
假设杂交细胞中染色体分离的方向是由亲本细胞周期或S期时间的相互作用决定的,该假设预测分离的亲本总是具有较长的周期或较长的S期,并且后期复制的染色体将更频繁地丢失。我们通过研究小鼠、中国仓鼠和鸭嘴兽亲本细胞的细胞周期参数,以及观察它们之间杂交的染色体丢失和复制模式来验证这一假设。研究了两种类型的杂交种:小鼠-仓鼠杂交种显示出10-60%的染色体在一个或另一个方向上逐渐分离,而啮齿动物-鸭嘴兽杂交种(可以在任何一个亲本细胞的最佳条件下选择)显示出鸭嘴兽染色体的快速和极端分离。我们发现分离方向与亲本周期时间或相时间的相对长度之间没有相关性,复制序列与分离染色体丢失的频率之间也没有相关性。因此,我们得出结论,分离的方向和程度不是由亲本周期或相时间的相互作用直接决定的。
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