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Clustered Transcription Factor Genes Regulate Nicotine Biosynthesis in Tobacco

机译:簇状转录因子基因调节烟草中尼古丁的生物合成

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Tobacco (Nicotiana tabacum) synthesizes nicotine and related pyridine alkaloids in the root, and their synthesis increases upon herbivory on the leaf via a jasmonate-mediated signaling cascade. Regulatory NIC loci that positively regulate nicotine biosynthesis have been genetically identified, and their mutant alleles have been used to breed low-nicotine tobacco varieties. Here, we report that the NIC2 locus, originally called locus B, comprises clustered transcription factor genes of an ethylene response factor (ERF) subfamily; in the nic2 mutant, at least seven ERF genes are deleted altogether. Overexpression, suppression, and dominant repression experiments using transgenic tobacco roots showed both functional redundancy and divergence among the NIC2-locus ERF genes. These transcription factors recognized a GCC-box element in the promoter of a nicotine pathway gene and specifically activated all known structural genes in the pathway. The NIC2-locus ERF genes are expressed in the root and upregulated by jasmonate with kinetics that are distinct among the members. Thus, gene duplication events generated a cluster of highly homologous transcription factor genes with transcriptional and functional diversity. The NIC2-locus ERFs are close homologs of ORCA3, a jasmonate-responsive transcriptional activator of indole alkaloid biosynthesis in Catharanthus roseus, indicating that the NIC2/ORCA3 ERF subfamily was recruited independently to regulate jasmonate-inducible secondary metabolism in distinct plant lineages.
机译:烟草(烟草(Nicotiana tabacum))在根部合成尼古丁和相关的吡啶生物碱,并且通过茉莉花酸酯介导的信号级联反应在叶上食草时其合成增加。遗传上已经确定了可正向调节尼古丁生物合成的调节性NIC基因座,其突变等位基因已用于育种低烟碱烟草品种。在这里,我们报告NIC2基因座,最初称为基因座B,包含乙烯反应因子(ERF)亚家族的簇状转录因子基因。在nic2突变体中,至少七个ERF基因被完全删除。使用转基因烟草根的过表达,抑制和显性抑制实验表明,NIC2-基因座ERF基因之间既有功能冗余又有差异。这些转录因子识别尼古丁途径基因启动子中的GCC-box元件,并特异性激活途径中所有已知的结构基因。 NIC2-基因座ERF基因在根中表达,并被茉莉酸酯上调,其动力学在成员之间是不同的。因此,基因复制事件产生了具有转录和功能多样性的高度同源的转录因子基因簇。 NIC2-基因座ERF与长春花中吲哚生物碱的茉莉酸酯响应转录激活因子ORCA3密切相关,表明NIC2 / ORCA3 ERF亚家族是独立招募的,以调节不同植物谱系中茉莉酸酯诱导的二次代谢。

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