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细胞杂种中的染色体分离。IV. 种间细胞杂种早期分离染色体组的运动和位置

Chromosome segregation from cell hybrids. IV. Movement and position of segregant set chromosomes in early-phase interspecific cell hybrids.

作者信息

Zelesco P A, Graves J A

机构信息

Department of Genetics and Human Variation, La Trobe University, Bundoora, Victoria, Australia.

出版信息

J Cell Sci. 1988 Jan;89 ( Pt 1):49-56. doi: 10.1242/jcs.89.1.49.

Abstract

We searched for evidence of aberrant movement or position of segregant set chromosomes in C-banded and G-11-banded early-phase hamster-mouse and hamster-human cell hybrids that had been prepared with minimal disruption. No evidence was obtained for an increased frequency of multipolar mitosis, delayed or precocious metaphase congression or anaphase segregation, or for exclusion of chromosomes from the daughter nuclei. However, in hamster-human hybrids, segregant set (human) chromosomes were observed to assume a central position within a ring of hamster chromosomes on the metaphase plate. Such non-random positioning may imply that the centromeres of segregant chromosomes make aberrant, or simply less efficient, attachments to the spindle in hybrid cells. This aberrant position may perhaps result indirectly in chromosome loss by interfering with the normal processes of replication, repair or transcription.

摘要

我们在经过最小程度干扰制备的C带和G-11带早期仓鼠-小鼠及仓鼠-人类细胞杂种中,寻找分离染色体组染色体异常移动或位置的证据。未获得多极有丝分裂频率增加、中期聚集延迟或早熟、后期分离异常,或染色体从子核中排除的证据。然而,在仓鼠-人类杂种中,观察到分离染色体组(人类)染色体在中期板上位于仓鼠染色体环的中央位置。这种非随机定位可能意味着分离染色体的着丝粒在杂种细胞中与纺锤体形成异常或效率较低的附着。这种异常位置可能通过干扰复制、修复或转录的正常过程间接导致染色体丢失。

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