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Jasmonate-Induced Nicotine Formation in Tobacco is Mediated by Tobacco COI1 and JAZ Genes

机译:茉莉酸诱导的烟草中尼古丁形成受烟草COI1和JAZ基因介导

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Biosynthesis of many plant alkaloids is enhanced by endogenous accumulation and exogenous application of jasmonates, but the general and specific signaling components are not well understood. In Arabidopsis, jasmonate-induced ZIM-domain-containing (JAZ) proteins have recently been found to be critical transcriptional repressors linking CORONATINE INSENSTIVE1 (COI1)-mediated jasmonate perception and jasmonate-regulated transcriptional regulation. Insect herbivory on tobacco leaves activates the jasmonate signaling pathway, leading to up-regulation of nicotine biosynthesis genes in roots. We show here that roots of COI1-silenced tobacco plants are insensitive to growth inhibition by methyl jasmonate, and do not activate nicotine biosynthesis genes after jasmonate treatment or wounding of leaves. Tobacco JAZ proteins appeared to be rapidly degraded after jasmonate treatment, whereas a C-terminally truncated form lacking the conserved Jas motif did not. When the non-degradable JAZ forms were expressed in tobacco hairy roots, jasmonate induction of nicotine biosynthesis was strongly inhibited. Formation of tobacco alkaloids in jasmonate-elicited tobacco BY-2 cells was also effectively suppressed by the COI1 RNAi (RNA interference) construct and by the dominant-negative truncated JAZ constructs. In addition, jasmonate-mediated induction of nicotine biosynthesis genes was diminished by treatment with a proteasome inhibitor MG132. These results indicate that jasmonate-triggered, COI1-mediated degradation of JAZ repressors activates transcriptional regulation of nicotine biosynthesis genes in tobacco roots.
机译:茉莉酸酯的内源性积累和外源施用可增强许多植物生物碱的生物合成,但对一般和特定的信号传导成分尚不十分了解。在拟南芥中,最近发现茉莉酸诱导的含ZIM域的(JAZ)蛋白是连接冠状动脉麻痹素(CORONATINE INSENSTIVE1)(COI1)介导的茉莉酸酯知觉和茉莉酸酯调节的转录调控的关键转录阻遏物。烟草叶上的昆虫食草激活了茉莉酸酯信号传导途径,导致根中尼古丁生物合成基因的上调。我们在这里显示,COI1沉默的烟草植物的根部对茉莉酸甲酯的生长抑制不敏感,并且在茉莉酸处理或叶片受伤后不会激活尼古丁生物合成基因。茉莉酸酯处理后,烟草JAZ蛋白似乎迅速降解,而缺乏保守的Jas主题的C末端截短形式却没有。当不可降解的JAZ形式在烟草毛状根中表达时,茉莉酸诱导尼古丁生物合成的作用被强烈抑制。茉莉酸引起的烟草BY-2细胞中烟草生物碱的形成也可通过COI1 RNAi(RNA干扰)构建体和显性负性截短JAZ构建体有效抑制。此外,通过用蛋白酶体抑制剂MG132处理,减少了茉莉酸介导的烟碱生物合成基因的诱导。这些结果表明,茉莉酸酯触发的,COI1介导的JAZ阻遏物的降解激活了烟草根中尼古丁生物合成基因的转录调控。

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