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AUX1 Promotes Lateral Root Formation by Facilitating Indole-3-Acetic Acid Distribution between Sink and Source Tissues in the Arabidopsis Seedling

机译:AUX1通过促进拟南芥幼苗的水槽和源组织之间的吲哚-3-乙酸分布促进侧根形成

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摘要

Arabidopsis root architecture is regulated by shoot-derived signals such as nitrate and auxin. We report that mutations in the putative auxin influx carrier AUX1 modify root architecture as a result of the disruption in hormone transport between indole-3-acetic acid (IAA) source and sink tissues. Gas chromatography–selected reaction monitoring–mass spectrometry measurements revealed that the aux1 mutant exhibited altered IAA distribution in young leaf and root tissues, the major IAA source and sink organs, respectively, in the developing seedling. Expression studies using the auxin-inducible reporter IAA2::uidA revealed that AUX1 facilitates IAA loading into the leaf vascular transport system. AUX1 also facilitates IAA unloading in the primary root apex and developing lateral root primordium. Exogenous application of the synthetic auxin 1-naphthylacetic acid is able to rescue the aux1 lateral root phenotype, implying that root auxin levels are suboptimal for lateral root primordium initiation in the mutant.
机译:拟南芥的根系结构受芽衍生信号(例如硝酸盐和生长素)的调节。我们报告说,推定的植物生长素流入载体AUX1中的突变修饰了根系结构,这是由于吲哚-3-乙酸(IAA)源和汇组织之间的激素转运受到破坏。气相色谱法-选择反应监测-质谱法测量表明,aux1突变体在发育中的幼苗中,分别在年轻的叶和根组织(IAA的主要来源和汇聚器官)中显示出IAA分布的变化。使用生长素诱导型报告基因IAA2 :: uidA进行的表达研究表明,AUX1促进IAA加载到叶片血管运输系统中。 AUX1还可促进IAA在主根尖的卸载和侧根原基的发育。合成生长素1-萘乙酸的外源应用能够挽救aux1侧向根表型,这意味着该突变体中根生长素水平对于侧向根原基启动而言是次优的。

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