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猕猴染色体中DNA复制的序列:用于人类与猿类系统发育比较的外类群。

Sequence of DNA replication in Macaca fuscata chromosomes: an outgroup for phylogenetic comparison between man and apes.

作者信息

Stanyon R, Romagno D, Wienberg J, Maurer U

机构信息

Institute of Physical Anthropology, University of Genova, Italy.

出版信息

Genetica. 1990;80(1):45-52. doi: 10.1007/BF00120119.

Abstract

The relative replication times of every band in the standardized 300 band G-band idiogram of the chromosomes of the Japanese macaque are presented, and compared to the human sequence. Many chromosomes thought to be homologous between Macaca fuscata and man on the basis of standard chromosome banding and gene mapping show a conservation of the replication sequence. Other supposed chromosomal homologies between these two species show no good correspondence, and the replication sequence data suggest that these chromosomes have been subject to complex rearrangements. The replication sequence data also point to possible additional chromosomal homologies between man and M. fuscata. Asynchrony in replication time between homologues from the same cell may also be evolutionarily conserved, because these species share a number of asynchronous homologous bands. Replication band sequence data can provide significant information for comparative cytogenetics. However, usually only the full replication R- or G-band pattern has been used for interspecific comparisons. The dynamic sequence data presented here determine the replication time of every band in the karyotype, and provide a quantitatively and qualitatively more sensitive tool to characterize chromosomes. Such data could provide valuable new information on which to make phylogenetic reconstructions, and shed light on the relationship between chromosome change and evolutionary process. Finally, the M. fuscata replication sequence presented here will provide a necessary foundation for future comparisons between apes and man.

摘要

本文给出了日本猕猴染色体标准化300条带G带核型图中各条带的相对复制时间,并与人类序列进行了比较。基于标准染色体带型和基因定位,许多被认为在猕猴和人类之间同源的染色体显示出复制序列的保守性。这两个物种之间其他假定的染色体同源性则没有很好的对应关系,复制序列数据表明这些染色体经历了复杂的重排。复制序列数据还指出了人类和猕猴之间可能存在的其他染色体同源性。来自同一细胞的同源染色体之间复制时间的异步性在进化上也可能是保守的,因为这些物种共享一些异步同源带。复制带序列数据可为比较细胞遗传学提供重要信息。然而,通常只有完整的复制R带或G带模式用于种间比较。本文给出的动态序列数据确定了核型中每条带的复制时间,并提供了一种在定量和定性上更敏感的工具来表征染色体。这些数据可为系统发育重建提供有价值的新信息,并阐明染色体变化与进化过程之间的关系。最后,本文给出的猕猴复制序列将为未来猿类和人类之间的比较提供必要的基础。

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