首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Dedifferentiation of Arabidopsis thaliana cells is accompanied by a strong decrease in RNA polymerase II transcription activity and poly(A+) RNA and 25S rRNA eradication from the cytoplasm
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Dedifferentiation of Arabidopsis thaliana cells is accompanied by a strong decrease in RNA polymerase II transcription activity and poly(A+) RNA and 25S rRNA eradication from the cytoplasm

机译:拟南芥细胞去分化伴随着RNA聚合酶II转录活性的强烈降低以及从细胞质中消除poly(A +)RNA和25S rRNA

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摘要

The mechanisms of plant cell dedifferentiation and the acquisition of totipotency are poorly understood. One of the methods to induce the dedifferentiation process in plant cells is simple and requires the removal of the cell wall. After cell wall removal in protoplasts, large-scale chromatin decondensation is observed (Tessadori et al. in J Cell Sci 120:1200-1208, 2007). Here, we show that in Arabidopsis thaliana protoplasts, despite chromatin decondensation, RNA polymerase II transcriptional activity is reduced. The subsequent investigated stages displayed a clear decrease in the quantity of 25S ribosomal RNA (rRNA) first and then poly(A+) RNA, particularly in the cytoplasm. Therefore, the reduced transcription activity and the removal of these RNA transcripts from the cytoplasm is a crucial process in obtaining totipotency in plant cells. After the cytoplasm cleaning of transcripts derived from mesophyll cells, we observed the resynthesis of these RNAs. An increase in the amount of examined molecules to a level similar to that in differentiated mesophyll cells precedes the divisions of already undifferentiated cells. In this work, we show changes in RNA polymerase II transcription dynamics and the quantity of poly(A+) RNA and 25S rRNA during dedifferentiation and re-entry into the cell cycle.
机译:对植物细胞去分化和获得全能的机制了解甚少。在植物细胞中诱导去分化过程的方法之一是简单的,并且需要去除细胞壁。在原生质体中去除细胞壁后,观察到大规模的染色质去浓缩(Tessadori等人,J Cell Sci 120:1200-1208,2007)。在这里,我们显示了在拟南芥原生质体中,尽管染色质去缩合,但RNA聚合酶II的转录活性却降低了。随后的研究阶段显示,首先是25S核糖体RNA(rRNA)数量明显减少,然后是poly(A +)RNA,特别是在细胞质中。因此,降低的转录活性和从细胞质中去除这些RNA转录物是在植物细胞中获得全能的关键过程。在对来自叶肉细胞的转录本进行细胞质清洁后,我们观察到了这些RNA的重新合成。在已经分化的细胞分裂之前,被检查分子的数量增加到与分化的叶肉细胞相似的水平。在这项工作中,我们显示了在去分化和重新进入细胞周期过程中RNA聚合酶II转录动力学的变化以及poly(A +)RNA和25S rRNA的数量。

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