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A novel translocation event leads to a recombinant stable chromosome with interrupted centromeric domains in rice

机译:一种新的易位事件导致水稻中具有中断着丝粒结构域的重组稳定染色体

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摘要

Rice (Oryza sativa L.) centromeres are composed of 155-bp satellite repeats (CentO), centromere-specific retrotransposon (CRR), and a variety of other repeats. Previous studies have shown that CentO and CRR elements are both parts of the functional centromere/kinetochore complex. In this study, a naturally occurring karyotype rearrangement involving a reciprocal translocation between chromosomes 9 and 11 in an indica rice Zhongxian 3037 has been identified. The recombinant centromere in Chr11L·9L has two CentO tandem arrays, separated by a long array of 5S rDNAs. Chromatin immunoprecipitation and immunostaining showed that centromere-specific histone H3 (cenH3) variant was bound to the two flanking CentO arrays, but not to the 5S rDNAs residing between the CentO repeats. No obvious difference was detected in H3K4me2 and H3K9ac modification of the 5S rDNAs between the wild type and the mutant. Therefore, the translocation results in a recombinant stable chromosome with interrupted centromeric domains. A lack of cenH3 binding in 5S rDNA sequences residing within the centromeric core suggests that not all centromeric sequences confer centromere identity in rice.
机译:水稻(Oryza sativa L.)着丝粒由155 bp卫星重复序列(CentO),着丝粒特异性逆转录转座子(CRR)以及多种其他重复序列组成。先前的研究表明,CentO和CRR元素都是功能着丝粒/线粒体复合体的一部分。在这项研究中,已经确定了involving稻中线3037中染色体9和11之间相互易位的自然发生的核型重排。 Chr11L·9L中的重组着丝粒具有两个CentO串联阵列,由5S rDNA的长阵列隔开。染色质免疫沉淀和免疫染色显示着丝粒特异性组蛋白H3(cenH3)变体与两个侧翼CentO阵列结合,但不与CentO重复序列之间的5S rDNA结合。野生型和突变型之间的5S rDNA的H3K4me2和H3K9ac修饰没有发现明显差异。因此,易位导致具有中断的着丝粒结构域的重组稳定染色体。在着丝粒核心内的5S rDNA序列中缺乏cenH3结合,表明并非所有着丝粒序列都赋予水稻着丝粒身份。

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