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The ATM-dependent DNA damage response acts as an upstream trigger for compensation in the fas1 mutation during Arabidopsis leaf development

机译:ATM依赖的DNA损伤反应是拟南芥叶片发育过程中fas1突变补偿的上游触发因素

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摘要

During leaf development, a decrease in cell number often triggers an increase in cell size. This phenomenon, called compensation, suggests that some system coordinates cell proliferation and cell expansion, but how this is mediated at the molecular level is still unclear. The fugu2 mutants in Arabidopsis (Arabidopsis thaliana) exhibit typical compensation phenotypes. Here, we report that the FUGU2 gene encodes FASCIATA1 (FAS1), the p150 subunit of Chromatin Assembly Factor1. To uncover how the fas1 mutation induces compensation, we performed microarray analyses and found that many genes involved in the DNA damage response are up-regulated in fas1. Our genetic analysis further showed that activation of the DNA damage response and the accompanying decrease of cell number in fas1 depend on ATAXIA TELANGIECTASIA MUTATED (ATM) but not on ATM AND RAD3 RELATED. Kinematic analysis suggested that the delay in the cell cycle leads to a decrease in cell number in fas1 and that loss of ATM partially restores this phenotype. Consistently, both cell size phenotypes and high ploidy phenotypes of fas1 are also suppressed by atm, supporting that the ATM-dependent DNA damage response leads to these phenotypes. Altogether, these data suggest that the ATM-dependent DNA damage response acts as an upstream trigger in fas1 to delay the cell cycle and promote entry into the endocycle, resulting in compensated cell expansion.
机译:在叶片发育过程中,细胞数量的减少通常会触发细胞大小的增加。这种称为补偿的现象表明,某些系统可以协调细胞增殖和细胞扩增,但是在分子水平上如何介导这一点仍不清楚。拟南芥(Arabidopsis thaliana)中的fugu2突变体表现出典型的补偿表型。在这里,我们报告FUGU2基因编码染色质组装因子1的p150亚基FASCIATA1(FAS1)。为了揭示fas1突变如何诱导补偿,我们进行了微阵列分析,发现fas1中上调了DNA损伤反应的许多基因。我们的遗传分析进一步表明,fas1中DNA损伤反应的激活和伴随的细胞数量减少取决于ATAXIA TELANGIECTASIA MUTATED(ATM),而不取决于ATM和RAD3相关。运动学分析表明,细胞周期的延迟导致fas1中细胞数量的减少,而ATM的丧失部分恢复了该表型。一致地,atm也抑制了fas1的细胞大小表型和高倍性表型,这表明ATM依赖性DNA损伤反应导致了这些表型。总而言之,这些数据表明,依赖于ATM的DNA损伤反应在fas1中起上游触发作用,以延迟细胞周期并促进进入内周期,从而导致补偿的细胞扩增。

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