Naranjo Tomás
Departamento de Genética, Facultad de Biología, Universidad Complutense, Madrid, Spain.
Cytogenet Genome Res. 2014;143(1-3):60-8. doi: 10.1159/000363524. Epub 2014 Jun 21.
Migration of the telomere of the short arm of rye chromosome 5R (5RS) during bouquet organization is dependent on the conformation that this chromosome adopts in its intact, submetacentric, or truncated, metacentric, form. In order to establish whether the telomere migration dependence on chromosome conformation is a common feature of all rye chromosomes, the behavior of the telomeres of 2 other rye chromosomes, 1R and 6R, with apparent differences in the arm ratio, has been studied at the bouquet stage and compared with that of 5R. The presence of subtelomeric heterochromatic chromomeres in both arms of 1R and 6R, which were visualized by FISH, revealed the position of the adjacent telomeres in the bouquet. While the end of the long arms of both chromosomes was, with some exceptions, always included in the telomere cluster, the end of the short arms failed to migrate to the telomere pole. Disturbed telomere migration was more often observed in the short arm of the submetacentric chromosome 6R than in the short arm of the almost metacentric chromosome 1R. Thus, the chromosomal conformation effect on telomere mobility is a common feature of all rye chromosomes. Incomplete telomere clustering is followed by failure of synapsis and chiasma formation in chromosomes 5R and 6R. Chromosome arm 1RS, which carries the NOR, completes synapsis earlier than 5RS or 6RS, facilitated by the nucleolar fusion that occurs during early zygotene.
黑麦5R染色体短臂(5RS)端粒在花束形成过程中的迁移取决于该染色体所呈现的完整亚中着丝粒形式或截短的中着丝粒形式的构象。为了确定端粒迁移对染色体构象的依赖性是否是所有黑麦染色体的共同特征,研究了另外两条黑麦染色体1R和6R的端粒在花束期的行为,这两条染色体的臂比明显不同,并与5R染色体的端粒行为进行了比较。通过荧光原位杂交(FISH)观察到1R和6R染色体的两条臂上均存在亚端粒异染色质染色粒,从而揭示了花束中相邻端粒的位置。虽然两条染色体长臂的末端除了一些例外情况外,总是包含在端粒簇中,但短臂的末端未能迁移到端粒极。在亚中着丝粒染色体6R的短臂中比在近中着丝粒染色体1R的短臂中更常观察到端粒迁移受到干扰。因此,染色体构象对端粒移动性的影响是所有黑麦染色体的共同特征。端粒聚类不完全之后,5R和6R染色体的联会和交叉形成失败。携带核仁组织区(NOR)的1RS染色体臂比5RS或6RS更早完成联会,这在早偶线期发生的核仁融合的促进下得以实现。