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The relation between the chromosome size gradient and the sequence of DNA replication in rye

机译:黑麦染色体大小梯度与DNA复制序列的关系

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摘要

In eukaryotes there is a gradient in chromomere size along the chromosome which is particularly common in plants. The relation between this gradient and the sequence of DNA replication was studied in rye. The sequence of DNA replication along the chromosome follows the chromomere size gradient. Larger chromomeres not only replicate later but also require more time for replication than smaller ones. It is the chromomere size that determines the duration of replication and not the physical length of the chromosome region. The chromomere gradient is also a gradient of DNA amount. The more DNA present in the chromomeres of a given region, the longer time they take to replicate. The results extend the rule of late chromosome replication in heterochromatin, established for whole chromosomes or chromosome regions, demonstrating its validity for single chromomeres. The chromomere size gradient not only discloses a system of structural order in the chromosomes of eukaryotes but also represents a system of replicating order in these chromosomes. The replication pattern is well fixed and is not easily disturbed by rearrangements as shown by the pattern of replication of the large iso-chromosomes of rye. In the process of evolution, rearrangements which would disrupt too much the ordered pattern of replication would not be favoured by selection at the molecular level. This phenomenon would tend to preserve efficiently given original gene sequences which would remain relatively unaltered throughout evolution.
机译:在真核生物中,染色体上染色体的大小存在梯度,这在植物中尤为常见。在黑麦中研究了该梯度与DNA复制序列之间的关系。沿着染色体的DNA复制序列遵循染色体大小梯度。较大的发色团不仅复制较晚,而且比较小的发色团需要更多的时间进行复制。是染色体的大小决定复制的持续时间,而不是染色体区域的物理长度。染色体异构体梯度也是DNA量的梯度。给定区域的染色体中存在的DNA越多,复制所需的时间就越长。结果扩展了异染色质中晚期染色体复制的规则,该规则适用于整个染色体或染色体区域,证明了其对单个染色体的有效性。染色体的大小梯度不仅揭示了真核生物染色体中结构顺序的系统,而且代表了这些染色体中复制顺序的系统。复制模式固定良好,不容易受到重排的干扰,如黑麦大同工型的复制模式所示。在进化的过程中,分子水平上的选择将不利于重排,而重排会破坏太多的有序复制模式。在给定原始基因序列的情况下,这种现象将倾向于有效地保存,而这些基因序列在整个进化过程中都保持相对不变。

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