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首页> 外文期刊>The Plant Cell >A duplicated NUCLEOLIN gene with antagonistic activity is required for chromatin organization of silent 45S rDNA in Arabidopsis.
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A duplicated NUCLEOLIN gene with antagonistic activity is required for chromatin organization of silent 45S rDNA in Arabidopsis.

机译:拟南芥中沉默45S rDNA的染色质组织需要复制的具有拮抗活性的NUCLEOLIN基因。

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摘要

In plants as well as in animals, hundreds to thousands of 45S rRNA gene copies localize in Nucleolus Organizer Regions (NORs), and the activation or repression of specific sets of rDNA depends on epigenetic mechanisms. Previously, we reported that the Arabidopsis thaliana nucleolin protein NUC1, an abundant and evolutionarily conserved nucleolar protein in eukaryotic organisms, is required for maintaining DNA methylation levels and for controlling the expression of specific rDNA variants in Arabidopsis. Interestingly, in contrast with animal or yeast cells, plants contain a second nucleolin gene. Here, we report that Arabidopsis NUC1 and NUC2 nucleolin genes are both required for plant growth and survival and that NUC2 disruption represses flowering. However, these genes seem to be functionally antagonistic. In contrast with NUC1, disruption of NUC2 induces CG hypermethylation of rDNA and NOR association with the nucleolus. Moreover, NUC2 loss of function triggers major changes in rDNA spatial organization, expression, and transgenerational stability. Our analyses indicate that silencing of specific rRNA genes is mostly determined by the active or repressed state of the NORs and that nucleolin proteins play a key role in the developmental control of this process.
机译:在植物以及动物中,成百上千的45S rRNA基因拷贝位于核仁组织区(NORs)中,特定rDNA集的激活或抑制取决于表观遗传机制。以前,我们报道了拟南芥核仁蛋白NUC1是真核生物中丰富且进化保守的核仁蛋白,是维持DNA甲基化水平和控制拟南芥中特定rDNA变体表达所必需的。有趣的是,与动物或酵母细胞相反,植物含有第二个核仁素基因。在这里,我们报告拟南芥NUC1和NUC2核仁素基因都是植物生长和存活所必需的,并且NUC2破坏抑制开花。然而,这些基因似乎在功能上是拮抗的。与NUC1相反,NUC2的破坏诱导rDNA的CG超甲基化以及与核仁的NOR缔合。此外,NUC2功能丧失会触发rDNA空间组织,表达和跨代稳定性的重大变化。我们的分析表明,特定rRNA基因的沉默主要由NOR的活性或受阻状态决定,而核仁蛋白在该过程的发育控制中起关键作用。

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