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Ph1位点是确保特定的体细胞和减数分裂着丝粒关联所必需的。

The Ph1 locus is needed to ensure specific somatic and meiotic centromere association.

作者信息

Martinez-Perez E, Shaw P, Moore G

机构信息

John Innes Centre, Norwich Research Park, Colney, UK.

出版信息

Nature. 2001 May 10;411(6834):204-7. doi: 10.1038/35075597.

Abstract

The correct pairing and segregation of chromosomes during meiosis is essential for genetic stability and subsequent fertility. This is more difficult to achieve in polyploid species, such as wheat, because they possess more than one diploid set of similar chromosomes. In wheat, the Ph1 locus ensures correct homologue pairing and recombination. Although clustering of telomeres into a bouquet early in meiosis has been suggested to facilitate homologue pairing, centromeres associate in pairs in polyploid cereals early during floral development. We can now extend this observation to root development. Here we show that the Ph1 locus acts both meiotically and somatically by reducing non-homologous centromere associations. This has the effect of promoting true homologous association when centromeres are induced to associate. In fact, non-homologously associated centromeres separate at the beginning of meiosis in the presence, but not the absence, of Ph1. This permits the correction of homologue association during the telomere-bouquet stage in meiosis. We conclude that the Ph1 locus is not responsible for the induction of centromere association, but rather for its specificity.

摘要

减数分裂过程中染色体的正确配对和分离对于遗传稳定性及后续的育性至关重要。在多倍体物种中,如小麦,这一过程更难实现,因为它们拥有不止一套相似的二倍体染色体。在小麦中,Ph1位点确保同源染色体的正确配对和重组。尽管有研究表明,减数分裂早期端粒聚集成花束状有助于同源染色体配对,但在多倍体谷物中,着丝粒在花发育早期就成对结合。现在我们可以将这一观察结果扩展到根的发育过程。我们在此表明,Ph1位点通过减少非同源着丝粒的结合,在减数分裂和体细胞中均发挥作用。当着丝粒被诱导结合时,这具有促进真正同源结合的作用。事实上,在有Ph1存在但无Ph1缺失的情况下,非同源结合的着丝粒在减数分裂开始时分离。这使得在减数分裂的端粒花束阶段能够校正同源染色体的结合。我们得出结论,Ph1位点并非负责诱导着丝粒结合,而是负责其特异性。

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