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LjMATE1: a citrate transporter responsible for iron supply to the nodule infection zone of Lotus japonicus.

机译:LjMATE1:柠檬酸盐转运蛋白,负责向日本莲的根瘤感染区提供铁。

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摘要

Symbiotic nitrogen fixation by intracellular rhizobia within legume root nodules requires the exchange of nutrients between host plant cells and their resident bacteria. While exchanged molecules imply nitrogen compounds, carbohydrates and also various minerals, knowledge of the molecular basis of plant transporters that mediate those metabolite exchanges is still limited. In this study, we have shown that a multidrug and toxic compound extrusion (MATE) protein, LjMATE1, is specifically induced during nodule formation, which nearly paralleled nodule maturation, in a model legume Lotus japonicus. Reporter gene experiments indicated that the expression of LjMATE1 was restricted to the infection zone of nodules. To characterize the transport function of LjMATE1, we conducted a biochemical analysis using a heterologous expression system, Xenopus oocytes, and found that LjMATE1 is a specific transporter for citrate. The physiological role of LjMATE1 was analyzed after generation of L. japonicus RNA interference (RNAi) lines. One RNAi knock-down line revealed limited growth under nitrogen-deficient conditions with inoculation of rhizobia compared with the controls (the wild type and an RNAi line in which LjMATE1 was not suppressed). It was noteworthy that Fe localization was clearly altered in nodule tissues of the knock-down line. These results strongly suggest that LjMATE1 is a nodule-specific transporter that assists the translocation of Fe from the root to nodules by providing citrate.
机译:豆科植物根瘤内细胞内根瘤菌对共生氮的固定作用需要宿主植物细胞与其驻留细菌之间交换营养。虽然交换的分子暗示着氮化合物,碳水化合物以及各种矿物质,但是介导这些代谢物交换的植物转运蛋白的分子基础的知识仍然有限。在这项研究中,我们已经表明,在豆科植物莲model模型中,在结节形成过程中特别诱导了多药和有毒化合物挤压(MATE)蛋白LjMATE1。记者基因实验表明,LjMATE1的表达仅限于结节的感染区。为了表征LjMATE1的转运功能,我们使用异源表达系统非洲爪蟾卵母细胞进行了生化分析,发现LjMATE1是柠檬酸盐的特异性转运蛋白。 LjMATE1的生理作用被分析后产生了日本血吸虫RNA干扰(RNAi)系。与对照相比(与野生型和不抑制LjMATE1的RNAi系相比),一个RNAi敲除系显示在根瘤菌接种下在缺氮条件下生长有限。值得注意的是,在敲除线的根瘤组织中铁的定位明显改变。这些结果强烈表明,LjMATE1是一种结节特异性转运蛋白,通过提供柠檬酸盐来协助Fe从根向结节的转运。

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