首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Reorganization of specific chromosomal domains and activation of silent genes in plant cells acquiring pluripotentiality.
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Reorganization of specific chromosomal domains and activation of silent genes in plant cells acquiring pluripotentiality.

机译:重组特定的染色体结构域并激活获得多能性的植物细胞中的沉默基因。

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The transition from leaf cells to protoplasts (plant cells devoid of cell walls) confers pluripotentiality coupled with chromatin reorganization. Here, we sought to identify remodeled chromosomal domains in Arabidopsis protoplasts by tracking DNA sequences undergoing changes in DNA methylation and by identifying up-regulated genes. We observed a reduction in DNA methylation at a pericentromeric region of chromosome 1, and up-regulation of several members of the NAC (NAM/ATAF1/CUC2) domain family, two of which are located near the telomeric region of chromosome 1. Fluorescence in situ hybridization (FISH) analysis demonstrated that both pericentromeric and telomeric subdomains underwent chromatin decondensation. This decondensation is subdomain-specific inasmuch as centromeric repeats remained largely unchanged, whereas the 18S rDNA underwent condensation. Within the pericentromeric subdomain, VIP1, a gene encoding a b-Zip nuclear protein required for Agrobacterium infectivity, was transcriptionally activated. Overexpression of this gene in tobacco resulted in growth retardation and inhibition of differentiation and shoot formation. Altogether, our data indicate that acquisition of pluripotentiality involves changes in DNA methylation pattern and reorganization of specific chromosomal subdomains. This change leads to activation of silent genes whose products are involved in acquisition or maintenance of pluripotentiality and/or the ensuing fate of the cell.
机译:从叶细胞到原生质体(没有细胞壁的植物细胞)的过渡赋予多能性并伴随着染色质重组。在这里,我们试图通过跟踪经历DNA甲基化变化的DNA序列并鉴定上调的基因来鉴定拟南芥原生质体中重塑的染色体结构域。我们观察到染色体1的着丝粒区域DNA甲基化的减少,以及NAC(NAM / ATAF1 / CUC2)域家族的几个成员的上调,其中两个位于染色体1的端粒区域附近。原位杂交(FISH)分析表明,着丝粒和端粒亚域都经历了染色质去缩合。这种脱缩是亚域特异性的,因为着丝粒重复基本上保持不变,而18S rDNA则发生了缩合。在着丝粒周围的亚结构域中,VIP1被转录激活,该基因编码农杆菌感染所需的b-Zip核蛋白。该基因在烟草中的过表达导致生长迟缓,并抑制分化和芽形成。总之,我们的数据表明,多能性的获得涉及DNA甲基化模式的改变和特定染色体亚结构域的重组。这种变化导致沉默基因的激活,其产物参与多能性的获得或维持和/或随后的细胞命运。

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