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Involvement of the leaf-specific multidrug and toxic compound extrusion (MATE) transporter Nt-JAT2 in vacuolar sequestration of nicotine in Nicotiana tabacum

机译:叶特异性多药和有毒化合物挤压(maTE)转运蛋白Nt-JaT2参与烟草烟碱液泡的隔离

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摘要

Alkaloids play a key role in higher plant defense against pathogens and herbivores. Following its biosynthesis in root tissues, nicotine, the major alkaloid of Nicotiana species, is translocated via xylem transport toward the accumulation sites, leaf vacuoles. Our transcriptome analysis of methyl jasmonate-treated tobacco BY-2 cells identified several multidrug and toxic compound extrusion (MATE) transporter genes. In this study, we characterized a MATE gene, Nicotiana tabacum jasmonate-inducible alkaloid transporter 2 (Nt-JAT2), which encodes a protein that has 32% amino acid identity with Nt-JAT1. Nt-JAT2 mRNA is expressed at a very low steady state level in whole plants, but is rapidly upregulated by methyl jasmonate treatment in a leaf-specific manner. To characterize the function of Nt-JAT2, yeast cells were used as the host organism in a cellular transport assay. Nt-JAT2 was localized at the plasma membrane in yeast cells. When incubated in nicotine-containing medium, the nicotine content in Nt-JAT2-expressing cells was significantly lower than in control yeast. Nt-JAT2-expressing cells also showed lower content of other alkaloids like anabasine and anatabine, but not of flavonoids, suggesting that Nt-JAT2 transports various alkaloids including nicotine. Fluorescence assays in BY-2 cells showed that Nt-JAT2-GFP was localized to the tonoplast. These findings indicate that Nt-JAT2 is involved in nicotine sequestration in leaf vacuoles following the translocation of nicotine from root tissues.
机译:生物碱在高等植物对病原体和草食动物的防御中起着关键作用。在根部组织中进行生物合成后,尼古丁是烟草种的主要生物碱,通过木质部转运向积累部位叶泡转移。我们对茉莉酸甲酯处理的烟草BY-2细胞的转录组分析确定了几种多药和有毒化合物挤出(MATE)转运蛋白基因。在这项研究中,我们表征了一个MATE基因,烟草茉莉酸酯诱导的生物碱转运蛋白2(Nt-JAT2),其编码的蛋白质与Nt-JAT1具有32%的氨基酸同一性。 Nt-JAT2 mRNA在整个植物中以非常低的稳态水平表达,但通过茉莉酸甲酯处理以叶特异性方式迅速上调。为了表征Nt-JAT2的功能,在细胞转运测定中将酵母细胞用作宿主生物。 Nt-JAT2位于酵母细胞的质膜上。当在含尼古丁的培养基中孵育时,表达Nt-JAT2的细胞中的尼古丁含量明显低于对照酵母。表达Nt-JAT2的细胞还显示出较低的其他生物碱含量,如金刚烷胺和阿那他滨,但不是黄酮类化合物,这表明Nt-JAT2可以转运包括烟碱在内的各种生物碱。 BY-2细胞中的荧光检测表明Nt-JAT2-GFP位于液泡膜中。这些发现表明Nt-JAT2在烟碱从根组织中移位后参与叶泡中的烟碱隔离。

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