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首页> 外文期刊>The Plant Cell >miR390, Arabidopsis TAS3 tasiRNAs, and Their AUXIN RESPONSE FACTOR Targets Define an Autoregulatory Network Quantitatively Regulating Lateral Root Growth
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miR390, Arabidopsis TAS3 tasiRNAs, and Their AUXIN RESPONSE FACTOR Targets Define an Autoregulatory Network Quantitatively Regulating Lateral Root Growth

机译:miR390,拟南芥TAS3 tasiRNA及其AUXIN反应因子靶标定义了定量调控侧根生长的自调控网络

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Plants adapt to different environmental conditions by constantly forming new organs in response to morphogenetic signals. Lateral roots branch from the main root in response to local auxin maxima. How a local auxin maximum translates into a robust pattern of gene activation ensuring the proper growth of the newly formed lateral root is largely unknown. Here, we demonstrate that miR390, TAS3-derived trans-acting short-interfering RNAs (tasiRNAs), and AUXIN RESPONSE FACTORS (ARFs) form an auxin-responsive regulatory network controlling lateral root growth. Spatial expression analysis using reporter gene fusions, tasi/miRNA sensors, and mutant analysis showed that miR390 is specifically expressed at the sites of lateral root initiation where it triggers the biogenesis of tasiRNAs. These tasiRNAs inhibit ARF2, ARF3, and ARF4, thus releasing repression of lateral root growth. In addition, ARF2, ARF3, and ARF4 affect auxin-induced miR390 accumulation. Positive and negative feedback regulation of miR390 by ARF2, ARF3, and ARF4 thus ensures the proper definition of the miR390 expression pattern. This regulatory network maintains ARF expression in a concentration range optimal for specifying the timing of lateral root growth, a function similar to its activity during leaf development. These results also show how small regulatory RNAs integrate with auxin signaling to quantitatively regulate organ growth during development.
机译:植物通过响应形态发生信号不断形成新器官来适应不同的环境条件。响应于局部生长素最大值,侧根从主根分支。局部植物生长素最大值如何转化为基因激活的可靠模式,以确保新形成的侧根的正确生长在很大程度上尚不清楚。在这里,我们证明了miR390,TAS3衍生的反式短干扰RNA(tasiRNA)和AUXIN响应因子(ARF)形成了生长素响应性调控网络,可控制侧根生长。使用报道基因融合蛋白,tasi / miRNA传感器和突变分析的空间表达分析表明,miR390在侧向根部起始位点特异性表达,在那里它触发了tasiRNA的生物发生。这些tasiRNA抑制ARF2,ARF3和ARF4,从而释放对侧根生长的抑制。此外,ARF2,ARF3和ARF4影响生长素诱导的miR390积累。因此,ARF2,ARF3和ARF4对miR390的正负反馈调节可确保正确定义miR390表达模式。该调节网络将ARF表达保持在一个最佳浓度范围内,该浓度范围可用于确定侧根生长的时机,该功能类似于其在叶片发育过程中的活性。这些结果还表明,小型调节性RNA如何与生长素信号传导整合,从而在发育过程中定量调节器官的生长。

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