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核仁相关染色质域在拟南芥热应激下得以维持,尽管核仁发生了重排。

Nucleolus-associated chromatin domains are maintained under heat stress, despite nucleolar reorganization in Arabidopsis thaliana.

机构信息

CNRS, LGDP UMR5096, Université de Perpignan, Perpignan, France.

UPVD, LGDP UMR5096, Université de Perpignan, Perpignan, France.

出版信息

J Plant Res. 2020 Jul;133(4):463-470. doi: 10.1007/s10265-020-01201-3. Epub 2020 May 5.

Abstract

Several layers of mechanisms participate in plant adaptation to heat-stress. For example, the plant metabolism switches from cell growth mode to stress adaptation mode. Ribosome biogenesis is one of the most energy costly pathways. That biogenesis process occurs in the nucleolus, the largest nuclear compartment, whose structure is highly dependent on this pathway. We used a nucleolar marker to track the structure of the nucleolus, and revealed a change in its sub-nucleolar distribution under heat stress. In addition, the nucleolus is implicated in other cellular processes, such as genome organization within the nucleus. However, our analyses of nucleolus-associated chromatin domains under heat stress did not reveal significant differences compared to the control plants, suggesting a lack of connection between two of the main functions of the nucleolus: ribosome biogenesis and nuclear organization.

摘要

几种机制层参与植物对热应激的适应。例如,植物代谢从细胞生长模式切换到应激适应模式。核糖体生物发生是最耗能的途径之一。该生物发生过程发生在核仁中,核仁是最大的核区室,其结构高度依赖于该途径。我们使用核仁标记物来跟踪核仁的结构,并揭示了在热应激下其亚核仁分布的变化。此外,核仁参与其他细胞过程,例如核内基因组组织。然而,我们对热应激下核仁相关染色质结构域的分析与对照植物相比没有显示出显著差异,这表明核仁的两个主要功能(核糖体生物发生和核组织)之间缺乏联系。

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