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宽叶蝇子草Y染色体上的微卫星积累

Microsatellite accumulation on the Y chromosome in Silene latifolia.

作者信息

Kubat Zdenek, Hobza Roman, Vyskot Boris, Kejnovsky Eduard

机构信息

Laboratory of Plant Developmental Genetics, Institute of Biophysics, Academy of Sciences of the Czech Republic, Brno, Czech Republic.

出版信息

Genome. 2008 May;51(5):350-6. doi: 10.1139/G08-024.

Abstract

The dioecious plant Silene latifolia possesses evolutionarily young sex chromosomes, and so serves as a model system to study the early stages of sex chromosome evolution. Sex chromosomes often differ distinctly from autosomes in both their structure and their patterns of evolution. The S. latifolia Y chromosome is particularly unique owing to its large size, which contrasts with the size of smaller, degenerate mammalian Y chromosomes. It is thought that the suppression of recombination on the S. latifolia Y chromosome could have resulted in the accumulation of repetitive sequences that account for its large size. Here we used fluorescence in situ hybridization (FISH) to study the chromosomal distribution of various microsatellites in S. latifolia including all possible mono-, di-, and tri-nucleotides. Our results demonstrate that a majority of microsatellites are accumulated on the q arm of the Y chromosome, which stopped recombining relatively recently and has had less time to accumulate repetitive DNA sequences compared with the p arm. Based on these results we can speculate that microsatellites have accumulated in regions that predate the genome expansion, supporting the view that the accumulation of repetitive DNA sequences occurred prior to, not because of, the degeneration of genes.

摘要

雌雄异株植物宽叶蝇子草拥有进化上较年轻的性染色体,因此是研究性染色体进化早期阶段的一个模型系统。性染色体在结构和进化模式上通常与常染色体有明显差异。宽叶蝇子草的Y染色体特别独特,因为它体积很大,这与较小的、退化的哺乳动物Y染色体的大小形成对比。据认为,宽叶蝇子草Y染色体上重组的抑制可能导致了重复序列的积累,这就是其体积大的原因。在这里,我们使用荧光原位杂交(FISH)来研究宽叶蝇子草中各种微卫星的染色体分布,包括所有可能的单核苷酸、二核苷酸和三核苷酸。我们的结果表明,大多数微卫星积累在Y染色体的长臂上,该长臂相对较晚停止重组,与短臂相比,积累重复DNA序列的时间较少。基于这些结果,我们可以推测微卫星在基因组扩张之前的区域就已经积累,这支持了重复DNA序列的积累发生在基因退化之前而不是因为基因退化的观点。

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