首页> 美国卫生研究院文献>Plant Physiology >Natural Variation in Monoterpene Synthesis in Kiwifruit: Transcriptional Regulation of Terpene Synthases by NAC and ETHYLENE-INSENSITIVE3-Like Transcription Factors
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Natural Variation in Monoterpene Synthesis in Kiwifruit: Transcriptional Regulation of Terpene Synthases by NAC and ETHYLENE-INSENSITIVE3-Like Transcription Factors

机译:猕猴桃中单萜合成的自然变化:NAC和类似乙烯的不敏感3-转录因子对萜烯合酶的转录调控

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摘要

Two kiwifruit (Actinidia) species with contrasting terpene profiles were compared to understand the regulation of fruit monoterpene production. High rates of terpinolene production in ripe Actinidia arguta fruit were correlated with increasing gene and protein expression of A. arguta terpene synthase1 (AaTPS1) and correlated with an increase in transcript levels of the 2-C-methyl-d-erythritol 4-phosphate pathway enzyme 1-deoxy-d-xylulose-5-phosphate synthase (DXS). Actinidia chinensis terpene synthase1 (AcTPS1) was identified as part of an array of eight tandemly duplicated genes, and AcTPS1 expression and terpene production were observed only at low levels in developing fruit. Transient overexpression of DXS in Nicotiana benthamiana leaves elevated monoterpene synthesis by AaTPS1 more than 100-fold, indicating that DXS is likely to be the key step in regulating 2-C-methyl-d-erythritol 4-phosphate substrate flux in kiwifruit. Comparative promoter analysis identified potential NAC (for no apical meristem [NAM], Arabidopsis transcription activation factor [ATAF], and cup-shaped cotyledon [CUC])-domain transcription factor) and ETHYLENE-INSENSITIVE3-like transcription factor (TF) binding sites in the AaTPS1 promoter, and cloned members of both TF classes were able to activate the AaTPS1 promoter in transient assays. Electrophoretic mobility shift assays showed that AaNAC2, AaNAC3, and AaNAC4 bind a 28-bp fragment of the proximal NAC binding site in the AaTPS1 promoter but not the A. chinensis AcTPS1 promoter, where the NAC binding site was mutated. Activation could be restored by reintroducing multiple repeats of the 12-bp NAC core-binding motif. The absence of NAC transcriptional activation in ripe A. chinensis fruit can account for the low accumulation of AcTPS1 transcript, protein, and monoterpene volatiles in this species. These results indicate the importance of NAC TFs in controlling monoterpene production and other traits in ripening fruits.
机译:比较了两种具有不同萜烯特征的奇异果(猕猴桃),以了解水果单萜生产的调控。成熟的猕猴桃果实中萜品油的高产率与拟南芥萜烯合酶1(AaTPS1)的基因和蛋白质表达增加有关,并且与2-C-甲基-d-赤藓糖醇4-磷酸途径的转录水平增加有关酶1-脱氧-d-木酮糖-5-磷酸合成酶(DXS)。猕猴桃萜烯合酶1(AcTPS1)被鉴定为八个串联重复基因阵列的一部分,并且在发育中的果实中仅在低水平观察到AcTPS1表达和萜烯产生。 DXS在烟草中的瞬时过表达使AaTPS1将单萜的合成提高了100倍以上,这表明DXS可能是调节猕猴桃中2-C-甲基-d-赤藓糖醇4-磷酸酯底物通量的关键步骤。比较启动子分析确定了潜在的NAC(无顶端分生组织[NAM],拟南芥转录激活因子[ATAF]和杯状子叶[CUC])域转录因子)和类似ETHETHENE-INSENSITIVE3的转录因子(TF)结合位点在瞬时测定中,两个TF类的克隆成员都能够激活AaTPS1启动子。电泳迁移率迁移分析表明,AaNAC2,AaNAC3和AaNAC4结合AaTPS1启动子中近端NAC结合位点的28 bp片段,而不结合中华曲霉AcTPS1启动子(其中NAC结合位点发生突变)。可以通过重新引入12 bp NAC核心结合基序的多个重复来恢复激活。在成熟的中华曲霉果实中没有NAC转录激活可以解释该物种中AcTPS1转录本,蛋白质和单萜挥发物的低积累。这些结果表明,NAC TFs在控制成熟果实中的单萜生产和其他性状方面很重要。

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