首页> 外文期刊>The Plant Cell >Arabidopsis ASA1 Is Important for Jasmonate-Mediated Regulation of Auxin Biosynthesis and Transport during Lateral Root Formation.
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Arabidopsis ASA1 Is Important for Jasmonate-Mediated Regulation of Auxin Biosynthesis and Transport during Lateral Root Formation.

机译:拟南芥ASA1对于茉莉酸介导的侧根形成过程中生长素生物合成和运输的调控很重要。

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Plant roots show an impressive degree of plasticity in adapting their branching patterns to ever-changing growth conditions. An important mechanism underlying this adaptation ability is the interaction between hormonal and developmental signals. Here, we analyze the interaction of jasmonate with auxin to regulate lateral root (LR) formation through characterization of an Arabidopsis thaliana mutant, jasmonate-induced defective lateral root1 (jdl1/asa1-1). We demonstrate that, whereas exogenous jasmonate promotes LR formation in wild-type plants, it represses LR formation in jdl1/asa1-1. JDL1 encodes the auxin biosynthetic gene ANTHRANILATE SYNTHASE l1 (ASA1), which is required for jasmonate-induced auxin biosynthesis. Jasmonate elevates local auxin accumulation in the basal meristem of wild-type roots but reduces local auxin accumulation in the basal meristem of mutant roots, suggesting that, in addition to activating ASA1-dependent auxin biosynthesis, jasmonate also affects auxin transport. Indeed, jasmonate modifies the expression of auxin transport genes in an ASA1-dependent manner. We further provide evidence showing that the action mechanism of jasmonate to regulate LR formation through ASA1 differs from that of ethylene. Our results highlight the importance of ASA1 in jasmonate-induced auxin biosynthesis and reveal a role for jasmonate in the attenuation of auxin transport in the root and the fine-tuning of local auxin distribution in the root basal meristem.
机译:在适应不断变化的生长条件下,植物根部表现出令人印象深刻的可塑性。这种适应能力的重要机制是激素和发育信号之间的相互作用。在这里,我们分析了茉莉酸与植物生长素的相互作用,通过拟南芥突变体,茉莉酸诱导的缺陷侧根1(jdl1 / asa1-1)的表征来调节侧根(LR)的形成。我们证明,尽管外源茉莉酸酯促进野生型植物中的LR形成,但它抑制jdl1 / asa1-1中的LR形成。 JDL1编码植物生长素生物合成基因ANTHRANILATE SYNTHASE 11(ASA1),这是茉莉酸酯诱导的植物生长素生物合成所必需的。茉莉酸增加了野生型根的基础分生组织中的局部生长素积累,但减少了突变根的基础分生组织中的局部生长素积累,这表明,除了激活ASA1依赖性植物生长素的生物合成外,茉莉酸酯还影响植物生长素的运输。确实,茉莉酸酯以依赖于ASA1的方式修饰了生长素转运基因的表达。我们进一步提供的证据表明,茉莉酸酯通过ASA1调节LR形成的作用机制与乙烯不同。我们的结果突出了ASA1在茉莉酸诱导的植物生长素生物合成中的重要性,并揭示了茉莉酸在减弱植物生长素在根中的运输和微调植物生长素在根基分生组织中的作用。

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