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Unequal segregation of parental chromosomes in embryonic stem cell hybrids

机译:胚胎干细胞杂种中父母染色体的不平等分离

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Chromosome segregation was studied in 14 intra- and 20 inter-specific hybrid clones generated by fusion of Mus musculus embryonic stem (ES) cells with fibroblasts or splenocytes of DD/c mice or Mus caroli. As a control for in vitro evolution of tetraploid karyotype we used a set of hybrid clones obtained by fusion of ES cells (D3) with ES cells (TgTP6.3). Identification of the parental chromosomes in the clones was performed by microsatellite analysis and in situ hybridization with labeled species-specific probes. Both analyses have revealed three types of clones: (i) stable tetraploid, observed only for ES x ES cell hybrids; (ii) bilateral loss of chromosomes of both ES and somatic partners; (iii) unilateral segregation of chromosomes of the somatic partner. Observed unilateral segregation was extensive in ES-splenocyte cell hybrids, but lower in ES-fibroblast hybrid clones. Developmental state of the somatic partner is presumably responsible for directional chromosome loss. Nonrandom segregation implies that initial differences in the parental homologous chromosomes were not immediately equalized implying at least transient persistence of the differentiated epigenotype.
机译:在14个种内和20个种间杂种克隆中研究了染色体的分离,这些克隆是由小家鼠胚胎干细胞(ES)与DD / c小鼠或家鼠的成纤维细胞或脾细胞融合而产生的。作为体外四倍体核型进化的对照,我们使用了一组通过ES细胞(D3)与ES细胞(TgTP6.3)融合获得的杂交克隆。通过微卫星分析和与标记的物种特异性探针的原位杂交来鉴定克隆中的亲代染色体。两种分析都揭示了三种类型的克隆:(i)稳定的四倍体,仅在ES x ES细胞杂种中观察到; (ii)ES和体细胞伴侣的双侧染色体丢失; (iii)单方面分离体伴侣的染色体。观察到的单侧分离在ES-脾细胞混合细胞中广泛存在,但在ES-成纤维细胞杂合细胞中较低。体细胞伴侣的发育状态大概是定向染色体丢失的原因。非随机隔离意味着亲本同源染色体中的初始差异没有立即相等,这意味着至少有短暂的持久性分化了表型。

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