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首页> 外文期刊>Cell Reports >Single-Cell Telomere-Length Quantification Couples Telomere Length to Meristem Activity and Stem Cell Development in Arabidopsis
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Single-Cell Telomere-Length Quantification Couples Telomere Length to Meristem Activity and Stem Cell Development in Arabidopsis

机译:单细胞端粒长度定量耦合拟南芥端粒长度与分生组织活性和干细胞发育。

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Telomeres are specialized nucleoprotein caps that protect chromosome ends assuring cell division. Single-cell telomere quantification in animals established a critical role for telomerase in stem cells, yet, in plants, telomere-length quantification has been reported only at the organ level. Here, a quantitative analysis of telomere length of single cells in Arabidopsis root apex uncovered a heterogeneous telomere-length distribution of different cell lineages showing the longest telomeres at the stem cells. The defects in meristem and stem cell renewal observed in tert mutants demonstrate that telomere lengthening by TERT sets a replicative limit in the root meristem. Conversely, the long telomeres of the columella cells and the premature stem cell differentiation plt1,2 mutants suggest that differentiation can prevent telomere erosion. Overall, our results indicate that telomere dynamics are coupled to meristem activity and continuous growth, disclosing a critical association between telomere length, stem cell function, and the extended lifespan of plants.
机译:端粒是专门的核蛋白帽,可保护染色体末端以确保细胞分裂。动物中的单细胞端粒定量建立了端粒酶在干细胞中的关键作用,然而,在植物中,端粒长度的定量仅在器官水平报道。在这里,对拟南芥根尖中单个细胞的端粒长度进行定量分析,发现不同细胞谱系的端粒长度异质分布,表明干细胞中端粒最长。在tert突变体中观察到的分生组织和干细胞更新的缺陷表明,通过TERT延长端粒延长了根分生组织的复制极限。相反,小肠细胞的长端粒和过早的干细胞分化plt1,2突变体表明分化可以防止端粒侵蚀。总的来说,我们的结果表明端粒动力学与分生组织活性和持续生长有关,揭示了端粒长度,干细胞功能和植物寿命之间的关键联系。

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