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Iron and Phosphate Deficiency Regulators Concertedly Control Coumarin Profiles in Arabidopsis thaliana Roots During Iron Phosphate and Combined Deficiencies

机译:铁和磷酸盐缺乏调节剂在铁磷酸盐和联合缺乏症期间协调控制拟南芥根中的香豆素概况

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摘要

Plants face varying nutrient conditions, to which they have to adapt to. Adaptive responses are nutrient-specific and strategies to ensure supply and homeostasis for one nutrient might be opposite to another one, as shown for phosphate (Pi) and iron (Fe) deficiency responses, where many genes are regulated in an opposing manner. This was also observed on the metabolite levels. Whereas root and exudate levels of catechol-type coumarins, phenylpropanoid-derived 2-benzopyranones, which facilitate Fe acquisition, are elevated after Fe deficiency, they are decreased after Pi deficiency. Exposing plants to combined Pi and Fe deficiency showed that the generation of coumarin profiles in Arabidopsis thaliana roots by Pi deficiency considerably depends on the availability of Fe. Similarly, the effect of Fe deficiency on coumarin profiles is different at low compared to high Pi availability. These findings suggest a fine-tuning of coumarin profiles, which depends on Fe and Pi availability. T-DNA insertion lines exhibiting aberrant expression of genes involved in the regulation of Pi starvation responses (PHO1, PHR1, bHLH32, PHL1, SPX1) and Fe starvation responses (BRUTUS, PYE, bHLH104, FIT) were used to analyze the regulation of the generation of coumarin profiles in Arabidopsis thaliana roots by Pi, Fe, and combined Pi and Fe deficiency. The analysis revealed a role of several Fe-deficiency response regulators in the regulation of Fe and of Pi deficiency-induced coumarin profiles as well as for Pi deficiency response regulators in the regulation of Pi and of Fe deficiency-induced coumarin profiles. Additionally, the regulation of Fe deficiency-induced coumarin profiles by Fe deficiency response regulators is influenced by Pi availability. Conversely, regulation of Pi deficiency-induced coumarin profiles by Pi deficiency response regulators is modified by Fe availability.
机译:植物必须适应各种营养条件。适应性反应是特定于养分的,并且确保一种养分的供应和体内平衡的策略可能与另一种养分相反,如磷酸盐(Pi)和铁(Fe)缺乏响应所示,其中许多基因以相反的方式进行调控。在代谢物水平上也观察到了这一点。缺铁后儿茶酚型香豆素,苯丙氨酸衍生的2-苯并吡喃酮的根和分泌液水平升高,这些元素促进了铁的吸收,而铁缺乏后它们的含量降低了。将植物暴露于Pi和Fe的综合缺乏下表明,Pi缺乏在拟南芥根中生成香豆素的特征在很大程度上取决于Fe的可用性。同样,铁缺乏对香豆素特性的影响与磷的高利用率相比低。这些发现表明,香豆素的特性可以进行微调,这取决于铁和磷的可用性。 T-DNA插入系表现出参与Pi饥饿反应(PHO1,PHR1,bHLH32,PHL1,SPX1)和Fe饥饿反应(BRUTUS,PYE,bHLH104,FIT)调控基因异常表达的T-DNA插入系来分析Pi,Fe以及Pi和Fe缺乏综合导致拟南芥根中香豆素谱的产生。分析揭示了几种铁缺乏反应调节剂在调节Fe和Pi缺乏引起的香豆素谱中的作用,以及Pi缺乏应答调节剂在调节Pi和Fe缺乏引起的香豆素谱中的作用。另外,铁缺乏反应调节剂对铁缺乏诱导的香豆素谱的调节受Pi可用性的影响。相反地​​,铁缺乏反应调节剂对铁缺乏诱导的香豆素谱的调节被铁的有效性所修饰。

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