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首页> 外文期刊>Science Advances >An auxin-regulable oscillatory circuit drives the root clock in Arabidopsis
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An auxin-regulable oscillatory circuit drives the root clock in Arabidopsis

机译:一种助长标记的振荡电路驱动拟南芥中的根时钟

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In Arabidopsis , the root clock regulates the spacing of lateral organs along the primary root through oscillating gene expression. The core molecular mechanism that drives the root clock periodicity and how it is modified by exogenous cues such as auxin and gravity remain unknown. We identified the key elements of the oscillator (AUXIN RESPONSE FACTOR 7, its auxin-sensitive inhibitor IAA18/POTENT, and auxin) that form a negative regulatory loop circuit in the oscillation zone. Through multilevel computer modeling fitted to experimental data, we explain how gene expression oscillations coordinate with cell division and growth to create the periodic pattern of organ spacing. Furthermore, gravistimulation experiments based on the model predictions show that external auxin stimuli can lead to entrainment of the root clock. Our work demonstrates the mechanism underlying a robust biological clock and how it can respond to external stimuli.
机译:在拟南芥中,根钟通过振荡基因表达调节沿着原子根的横向器官的间隔。 驱动根时钟周期性的核心分子机制及其如何由外源性线索修饰,例如养仑和重力仍然未知。 我们鉴定了在振荡区中形成负调节回路电路的振荡器(养蛋白响应因子7,其悬垂敏感抑制剂IAA18 /效率和助胎)的关键要素。 通过适用于实验数据的多级计算机建模,我们解释了基因表达振荡如何与细胞分裂和生长坐标,以产生器官间距的周期性模式。 此外,基于模型预测的重力仿真实验表明,外部助长刺激可以导致根时钟的夹带。 我们的作品展示了强大的生物钟潜在的机制以及它如何响应外部刺激。

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