首页> 外文期刊>The Plant Cell >Histone H3 Dynamics Reveal Domains with Distinct Proliferation Potential in the Arabidopsis Root
【24h】

Histone H3 Dynamics Reveal Domains with Distinct Proliferation Potential in the Arabidopsis Root

机译:组蛋白H3动力学揭示了拟南芥根中具有明显增殖潜能的域

获取原文
获取原文并翻译 | 示例
           

摘要

A coordinated transition from cell proliferation to differentiation is crucial for organogenesis. We found that extensive chromatin reorganization, shown here for histone H3 proteins, characterizes cell population dynamics in the root developmental compartments. The canonical H3.1 protein, incorporated during S-phase, is maintained at high levels in cells dividing at a high rate but is massively evicted in cells undergoing their last cell cycle before exit to differentiation. A similar pattern was observed in the quadruple mutant for the H3.1-encoding genes HTR1, HTR2, HTR3, and HTR9 (htr1,2,3,9), in which H3.1 is expressed only from the HTR13 gene. H3 eviction is a fast process occurring within the G2 phase of the last cell cycle, which is longer than G2 in earlier cell cycles. This longer G2 likely contributes to lower the H3.1/H3.3 ratio in cells leaving the root meristem. The high H3.1/H3.3 ratio and H3.1 eviction process also occurs in endocycling cells before differentiation, revealing a common principle of H3 eviction in the proliferating and endocycling domains of the root apex. Mutants in the H3.1 chaperone CAF-1 (fas1-4) maintain a pattern similar to that of wild-type roots. Our studies reveal that H3 incorporation and eviction dynamics identify cells with different cell division potential during organ patterning.
机译:从细胞增殖到分化的协调过渡对于器官发生至关重要。我们发现,此处所示的组蛋白H3蛋白的广泛染色质重组表征了根部发育区室中的细胞种群动态。在S期结合的典型H3.1蛋白在高分裂细胞中保持高水平,但在进入分化前的最后一个细胞周期的细胞中被大量驱逐。在四重突变体中,对于编码H3.1的基因HTR1,HTR2,HTR3和HTR​​9(htr1,2,3,9),观察到了类似的模式,其中H3.1仅从HTR13基因表达。 H3逐出是一个快速的过程,发生在最后一个细胞周期的G2阶段,比早期细胞周期的G2长。更长的G2可能有助于降低离开根分生组织的细胞中H3.1 / H3.3的比率。高H3.1 / H3.3比值和H3.1逐出过程也发生在分化之前的内循环细胞中,揭示了根尖增殖和内循环域中H3逐出的共同原理。 H3.1伴侣CAF-1(fas1-4)中的突变体维持与野生型根相似的模式。我们的研究表明,H3掺入和逐出动力学可确定器官构图过程中具有不同细胞分裂潜能的细胞。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号