首页> 外文OA文献 >Phosphate Availability Alters Lateral Root Development in Arabidopsis by Modulating Auxin Sensitivity via a Mechanism Involving the TIR1 Auxin Receptor[C][W][OA]
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Phosphate Availability Alters Lateral Root Development in Arabidopsis by Modulating Auxin Sensitivity via a Mechanism Involving the TIR1 Auxin Receptor[C][W][OA]

机译:磷的有效性通过涉及TIR1生长素受体的机制调节生长素敏感性来改变拟南芥的侧根发育[C] [W] [OA]

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摘要

The survival of plants, as sessile organisms, depends on a series of postembryonic developmental events that determine the final architecture of plants and allow them to contend with a continuously changing environment. Modulation of cell differentiation and organ formation by environmental signals has not been studied in detail. Here, we report that alterations in the pattern of lateral root (LR) formation and emergence in response to phosphate (Pi) availability is mediated by changes in auxin sensitivity in Arabidopsis thaliana roots. These changes alter the expression of auxin-responsive genes and stimulate pericycle cells to proliferate. Modulation of auxin sensitivity by Pi was found to depend on the auxin receptor TRANSPORT INHIBITOR RESPONSE1 (TIR1) and the transcription factor AUXIN RESPONSE FACTOR19 (ARF19). We determined that Pi deprivation increases the expression of TIR1 in Arabidopsis seedlings and causes AUXIN/INDOLE-3-ACETIC ACID (AUX/IAA) auxin response repressors to be degraded. Based on our results, we propose a model in which auxin sensitivity is enhanced in Pi-deprived plants by an increased expression of TIR1, which accelerates the degradation of AUX/IAA proteins, thereby unshackling ARF transcription factors that activate/repress genes involved in LR formation and emergence.
机译:作为无柄生物,植物的生存取决于一系列胚后发育事件,这些事件决定了植物的最终结构,并使它们能够适应不断变化的环境。尚未详细研究环境信号对细胞分化和器官形成的调节。在这里,我们报道,拟南芥根中生长素敏感性的变化介导了侧根(LR)的形成和对磷酸盐(Pi)的响应的模式的改变。这些变化改变了生长素应答基因的表达,并刺激了周细胞的增殖。发现Pi对植物生长素敏感性的调节取决于植物生长素受体运输抑制剂响应(TIR1)和转录因子AUXIN响应因子19(ARF19)。我们确定Pi剥夺增加拟南芥幼苗中TIR1的表达,并导致AUXIN / INDOLE-3-乙酸(AUX / IAA)生长素反应阻遏物被降解。根据我们的研究结果,我们提出了一个模型,其中在Pi剥夺的植物中,通过增加TIR1的表达来增强植物生长素的敏感性,从而加速AUX / IAA蛋白的降解,从而释放激活/抑制LR相关基因的ARF转录因子形成和出现。

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