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Induction of Terpene Biosynthesis in Berries of Microvine Transformed with VvDXS1 Alleles

机译: VvDXS1 等位基因转化的小葡萄浆果中萜烯生物合成的诱导

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Terpenoids, especially monoterpenes, are major aroma-impact compounds in grape and wine. Previous studies highlighted a key regulatory role for grapevine 1-deoxy-D-xylulose 5-phosphate synthase 1 (VvDXS1), the first enzyme of the methylerythritol phosphate pathway for isoprenoid precursor biosynthesis. Here, the parallel analysis of VvDXS1 genotype and terpene concentration in a germplasm collection demonstrated that VvDXS1 sequence has a very high predictive value for the accumulation of monoterpenes and also has an influence on sesquiterpene levels. A metabolic engineering approach was applied by expressing distinct VvDXS1 alleles in the grapevine model system “microvine” and assessing the effects on downstream pathways at transcriptional and metabolic level in different organs and fruit developmental stages. The underlying goal was to investigate two potential perturbation mechanisms, the former based on a significant over-expression of the wild-type (neutral) VvDXS1 allele and the latter on the ex-novo expression of an enzyme with increased catalytic efficiency from the mutated (muscat) VvDXS1 allele. The integration of the two VvDXS1 alleles in distinct microvine lines was found to alter the expression of several terpenoid biosynthetic genes, as assayed through an ad hoc developed TaqMan array based on cDNA libraries of four aromatic cultivars. In particular, enhanced transcription of monoterpene, sesquiterpene and carotenoid pathway genes was observed. The accumulation of monoterpenes in ripe berries was higher in the transformed microvines compared to control plants. This effect is predominantly attributed to the improved activity of the VvDXS1 enzyme coded by the muscat allele, whereas the up-regulation of VvDXS1 plays a secondary role in the increase of monoterpenes.
机译:萜类化合物,尤其是单萜类,是葡萄和葡萄酒中主要的香气影响化合物。先前的研究强调了葡萄1-脱氧-D-木酮糖5-磷酸合酶1(VvDXS1)的关键调节作用,这是异戊二烯前体生物合成中甲基赤藓糖醇磷酸途径的第一个酶。在这里,对VvDXS1基因型和种质中萜烯浓度的平行分析表明,VvDXS1序列对于单萜的积累具有非常高的预测价值,并且对倍半萜烯的含量也有影响。通过在葡萄模型系统“ microvine”中表达不同的VvDXS1等位基因并评估转录在不同器官和果实发育阶段在转录和代谢水平上对下游途径的影响,应用了代谢工程方法。潜在的目标是研究两种潜在的干扰机制,前者基于野生型(中性)VvDXS1等位基因的显着过表达,而后者基于酶的新表达,且突变后的催化效率提高。 muscat)VvDXS1等位基因。通过基于四个芳香品种的cDNA文库通过临时开发的TaqMan阵列检测,发现两个VvDXS1等位基因在不同的微葡萄系中的整合改变了几种萜类生物合成基因的表达。特别地,观察到单萜,倍半萜和类胡萝卜素途径基因的转录增强。与对照植物相比,转化的微葡萄藤中成熟的浆果中单萜的积累更高。这种效果主要归因于麝香猫等位基因编码的VvDXS1酶活性的提高,而VvDXS1的上调在单萜的增加中起次要作用。

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