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首页> 外文期刊>Plant, Cell & Environment >A de novo synthesis citrate transporter, Vigna umbellata multidrug and toxic compound extrusion, implicates in Al-activated citrate efflux in rice bean (Vigna umbellata) root apex.
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A de novo synthesis citrate transporter, Vigna umbellata multidrug and toxic compound extrusion, implicates in Al-activated citrate efflux in rice bean (Vigna umbellata) root apex.

机译:de novo 合成柠檬酸盐转运蛋白 Vigna umbellata 多药和有毒化合物挤出,与稻豆中的Al活化柠檬酸盐外排有关( Vigna umbellata )根尖。

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摘要

Al-activated organic acid anion efflux from roots is an important Al resistance mechanism in plants. We have conducted homologous cloning and isolated Vigna umbellata multidrug and toxic compound extrusion (VuMATE), a gene encoding a de novo citrate transporter from rice bean. Al treatment up-regulated VuMATE expression in the root apex, but neither in the mature root region nor in the leaf. The degree of up-regulation of VuMATE was both partially Al concentration and time dependent, consistent with the delay in the onset of the Al-induced citrate efflux in rice bean roots. While La3+ moderately induced VuMATE expression, Cd2+ and Cu2+ did not induce the expression. Electrophysiological analysis of Xenopus oocytes expressing VuMATE indicated this transporter can mediate significant anion efflux across the plasma membrane. [14C]citrate efflux experiments in oocytes demonstrated that VuMATE is a H+-dependent citrate transporter. In addition, expression of VuMATE in transgenic tomato resulted in increased Al resistance, which correlated with an enhanced citrate efflux. Taken together, these findings suggest that VuMATE is a functional homolog of the known citrate transporters in sorghum, barley, maize and Arabidopsis. The similarities and differences of all the known citrate transporters associated with Al stress in the MATE family are also discussed.
机译:根部的铝活化有机酸阴离子流出是植物中重要的铝抗性机制。我们已经进行了同源克隆,并从稻豆中分离了 Vigna umbellata 多药和有毒化合物挤压( VuMATE )基因,该基因编码柠檬酸转运蛋白。 。铝处理上调了根尖 VuMATE 的表达,但既不在成熟根区也不在叶中。 VuMATE 的上调程度与铝的浓度和时间有关,这与铝诱导的水稻豆根中柠檬酸盐外排的延迟有关。 La 3 + 适度诱导了 VuMATE 的表达,而Cd 2 + 和Cu 2 + 均未诱导表达。表达VuMATE的非洲爪蟾卵母细胞的电生理分析表明,该转运蛋白可以介导整个质膜的显着阴离子流出。 [ 14 C]柠檬酸盐在卵母细胞中的外排实验表明,VuMATE是依赖H + 的柠檬酸盐转运蛋白。另外,VuMATE在转基因番茄中的表达导致铝抗性增加,这与柠檬酸盐外排增强有关。综上所述,这些发现表明,VuMATE是高粱,大麦,玉米和拟南芥中已知柠檬酸盐转运蛋白的功能同源物。还讨论了与MATE家族中与Al胁迫相关的所有已知柠檬酸盐转运蛋白的异同。

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