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首页> 外文期刊>Journal of Plant Physiology >Copper excess reduces nitrate uptake by Arabidopsis roots with specific effects on gene expression
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Copper excess reduces nitrate uptake by Arabidopsis roots with specific effects on gene expression

机译:铜过量通过拟南芥根部减少硝酸盐吸收,具有对基因表达的特异性影响

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摘要

Nitrate uptake by plants is mediated by specific transport proteins in roots (NRTs), which are also dependent on the activity of proton pumps that energize the reaction. Nitrogen (N) metabolism in plants is sensitive to copper (Cu) toxicity conditions. To understand how Cu affects the uptake and assimilation processes, this study assesses the inhibitory effects of elevated Cu levels on the expression of genes related to N absorption, transport and assimilation in roots of Arabidopsis. Plants were grown hydroponically for 45 days, being exposed to a range of Cu concentrations in the last 72 h or alternatively exposed to 5.0 mu MA Cu for the last 15 days. High Cu levels decreased the uptake and accumulation of N in plants. It down-regulated the expression of genes encoding nitrate reductase (NR1), low-affinity nitrate transporters (NRT1 family) and bZIP transcription factors (TGA1 and TGA4) that regulate the expression of nitrate transporters. Cu toxicity also specifically down-regulated the plasma membrane proton pump, AHA2, whilst having little effect on AHAI and AHA5. In contrast, there was an up-regulation of high-affinity nitrate transporters from the NRT2 family when exposed to medium level of Cu excess, but this was insufficient for restoring N absorption by roots to control levels. These results demonstrate that plants display specific responses to Cu toxicity, modulating the expression of particular genes related to nitrate uptake, such as low-affinity nitrate transporters and proton pumps.
机译:植物的硝酸盐摄取是由根(NRTS)中的特异性转运蛋白介导的,这也取决于质子泵的活性来激励反应。植物中的氮气(N)代谢对铜(Cu)毒性条件敏感。要了解Cu如何影响摄取和同化过程,该研究评估u升高水平对拟南芥根系中NA吸收,运输和同化相关的基因表达的抑制作用。将植物生长在水贫化45天,在最后72小时内暴露于一系列Cu浓度,或者在过去15天中接触到5.0μmU。高Cu水平降低了植物中N的吸收和积累。下调编码硝酸还原酶(NR1),低亲和力硝酸盐转运蛋白(NRT1家族)和BZIP转录因子(TGA1和TGA4)的基因的表达,调节硝酸盐转运蛋白的表达。 Cu毒性还特别是下调血浆膜质子泵AHA2,同时对AAI和AHA5几乎没有影响。相反,当暴露于Cu过量的中等水平时,从NRT2家族的高亲和力硝酸盐转运蛋白有上调,但这对于通过根部恢复N吸收来控制水平不足。这些结果表明,植物显示对Cu毒性的特异性反应,调节与硝酸盐摄取有关的特定基因的表达,例如低亲和力硝酸盐转运蛋白和质子泵。

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