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Urea retranslocation from senescing Arabidopsis leaves is promoted by DUR3-mediated urea retrieval from leaf apoplast

机译:DUR3介导的从叶片质外体中回收的尿素促进了衰老的拟南芥叶片中的尿素重定位

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摘要

In plants, urea derives either from root uptake or protein degradation. Although large quantities of urea are released during senescence, urea is mainly seen as a short-lived nitrogen (N) catabolite serving urease-mediated hydrolysis to ammonium. Here, we investigated the roles of DUR3 and of urea in N remobilization. During natural leaf senescence urea concentrations and DUR3 transcript levels showed a parallel increase with senescence markers like ORE1 in a plant age- and leaf age-dependent manner. Deletion of DUR3 decreased urea accumulation in leaves, whereas the fraction of urea lost to the leaf apoplast was enhanced. Under natural and N deficiency-induced senescence DUR3 promoter activity was highest in the vasculature, but was also found in surrounding bundle sheath and mesophyll cells. An analysis of petiole exudates from wild-type leaves revealed that N from urea accounted for >13% of amino acid N. Urea export from senescent leaves further increased in ureG-2 deletion mutants lacking urease activity. In the dur3 ureG double insertion line the absence of DUR3 reduced urea export from leaf petioles. These results indicate that urea can serve as an early metabolic marker for leaf senescence, and that DUR3-mediated urea retrieval contributes to the retranslocation of N from urea during leaf senescence.
机译:在植物中,尿素来源于根吸收或蛋白质降解。尽管在衰老过程中会释放大量尿素,但尿素主要被视为是短命的氮(N)分解代谢产物,可用于尿素酶介导的水解成铵的过程。在这里,我们研究了DUR3和尿素在N固定中的作用。在自然叶片衰老过程中,尿素浓度和DUR3转录水平与衰老标记(如ORE1)呈植物年龄和叶片年龄依赖性的平行增长。删除DUR3减少了尿素在叶片中的积累,而增加了损失到叶片质外体中的尿素的比例。在自然和氮缺乏诱导的衰老下,DUR3启动子活性在脉管系统中最高,但在周围的束鞘和叶肉细胞中也发现。对野生型叶片叶柄分泌物的分析表明,尿素中的氮占氨基酸N的> 13%。衰老叶片中的尿素出口在缺乏脲酶活性的ureG-2缺失突变体中进一步增加。在dur3®ureG双插入生产线中,DUR3的缺乏减少了叶柄中尿素的出口。这些结果表明,尿素可以作为叶片衰老的早期代谢标记,而DUR3介导的尿素回收有助于叶片衰老过程中N从尿素中重新定位。

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