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Cell Cycle Progression in the Pericycle Is Not Sufficient for SOLITARY ROOT/IAA14-Mediated Lateral Root Initiation in Arabidopsis thaliana

机译:拟南芥中的SOLOTARY ROOT / IAA14介导的侧向根起始在周周中的细胞周期进展不足。

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摘要

To study the mechanisms behind auxin-induced cell division, lateral root initiation was used as a model system. By means of microarray analysis, genome-wide transcriptional changes were monitored during the early steps of lateral root initiation. Inclusion of the dominant auxin signaling mutant solitary root1 (slr1) identified genes involved in lateral root initiation that act downstream of the auxin/indole-3-acetic acid (AUX/IAA) signaling pathway. Interestingly, key components of the cell cycle machinery were strongly defective in slr1, suggesting a direct link between AUX/IAA signaling and core cell cycle regulation. However, induction of the cell cycle in the mutant background by overexpression of the D-type cyclin (CYCD3;1) was able to trigger complete rounds of cell division in the pericycle that did not result in lateral root formation. Therefore, lateral root initiation can only take place when cell cycle activation is accompanied by cell fate respecification of pericycle cells. The microarray data also yielded evidence for the existence of both negative and positive feedback mechanisms that regulate auxin homeostasis and signal transduction in the pericycle, thereby fine-tuning the process of lateral root initiation.
机译:为了研究植物生长素诱导的细胞分裂的机制,将侧根起始用作模型系统。通过微阵列分析,在侧根起始的早期步骤中监测了全基因组的转录变化。包括主导的生长素信号突变体孤根1(slr1)确定参与侧向根启动的基因,这些基因在生长素/吲哚-3-乙酸(AUX / IAA)信号传导途径的下游起作用。有趣的是,细胞周期机制的关键组件在slr1中存在严重缺陷,这表明AUX / IAA信号与核心细胞周期调控之间存在直接联系。但是,通过过表达D型细胞周期蛋白(CYCD3; 1)诱导突变体背景中的细胞周期能够触发周生周期中完整的细胞分裂,这不会导致侧根形成。因此,仅当细胞周期激活伴随着周细胞的细胞命运重新指定时,才能发生侧向根起始。微阵列数据还提供了在周周期中调节生长素稳态和信号转导的负反馈和正反馈机制的存在的证据,从而微调了侧根的起始过程。

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