首页> 外文期刊>Journal of Agricultural and Food Chemistry >Transcriptomics Integrated with Free and Bound Terpenoid Aroma Profiling during “Shine Muscat” (Vitis labrusca × V. vinifera) Grape Berry Development Reveals Coordinate Regulation of MEP Pathway and Terpene Synthase Gene Expression
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Transcriptomics Integrated with Free and Bound Terpenoid Aroma Profiling during “Shine Muscat” (Vitis labrusca × V. vinifera) Grape Berry Development Reveals Coordinate Regulation of MEP Pathway and Terpene Synthase Gene Expression

机译:在“闪亮马斯喀特”(抗炎马云×V.Vinifera)葡萄贝里开发期间,转录组合与自由和结合的三萜类香气谱分析揭示了MEP途径和萜烯合酶基因表达的坐标调节

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Terpenes and their derivatives are important biomarkers of grape quality as they contribute to the flavor and aroma of grapes. However, the molecular basis of terpene biosynthesis throughout the grapevine phenological developmental cycle remains elusive. Our current study investigates the free and bound terpene biosynthesis of berries at different phenological stages from preveraison to harvest. Detailed gene expression (transcriptomics) analysis, terpenoid volatile production by gas chromatography–mass spectrometry (GC–MS), and in planta transient expression were employed. Our results show that concentrations of most individual terpenes at different stages are distinctive and increase from preveraison to the veraison stage followed by a decrease from veraison to maturity. The combined transcriptomic analysis and terpene profiling revealed that 22 genes belonging to the MEP pathway and multiple classes of transcription factor family members including bHLH and several hormone biosynthesis- or signaling-related genes likely participate in the regulation of terpenoid biosynthesis according to their specific expression patterns in berries. Quantitative real-time polymerase chain expression analysis of 8 key differentially expressed genes in MEP pathways and further 12 randomly selected genes was performed during 8 sampling stages and validated the RNA-seq-derived expression profiles. To further confirm the function of a subset of the differentially expressed genes, we investigated the effects of combined overexpression of 1-deoxy-d-xylulose-5-phosphate synthase (VvDXS1-LOC100249323 ), 1-deoxy-d-xylulose-5-phosphate reductoisomerase (VvDXR-LOC100248516 ), and terpene synthase (VvTPS56-LOC100266449 ) on the production of terpenes by transient overexpression in Nicotiana benthamiana leaves. The overall developmental patterns of total terpenes and gene expression profiles will help guide the functional analyses of further candidate genes important for terpene biosynthesis of grape as well as identifying the master transcriptional and hormonal regulators of this pathway in the future.
机译:萜烯及其衍生物是葡萄品质的重要生物标志物,因为它们有助于葡萄的风味和香气。然而,在整个葡萄物候发育周期中,萜烯生物合成的分子基础仍然难以捉摸。我们目前的研究调查了浆果从成熟到收获的不同物候阶段的游离和结合萜烯生物合成。采用了详细的基因表达(转录组学)分析、气相色谱-质谱(GC-MS)测定的萜类挥发物产生,以及在植物中的瞬时表达。我们的研究结果表明,大多数萜烯类化合物在不同时期的浓度是不同的,从成熟期到成熟期都有所增加,然后从成熟期到成熟期都有所下降。结合转录组学分析和萜烯分析发现,22个属于MEP途径的基因和多种转录因子家族成员,包括bHLH和几种激素生物合成或信号相关基因,可能根据其在浆果中的特定表达模式参与萜类生物合成的调节。在8个采样阶段对MEP途径中的8个关键差异表达基因和另外12个随机选择的基因进行实时定量聚合酶链表达分析,并验证RNA-seq衍生的表达谱。为了进一步确认差异表达基因子集的功能,我们研究了1-脱氧-d-木酮糖-5-磷酸合酶(VvDXS1-LOC100249323)、1-脱氧-d-木酮糖-5-磷酸还原异构酶(VvDXR-LOC100248516)联合过表达的影响,以及萜烯合成酶(VvTPS56-LOC100266449)对通过在烟草叶片中瞬时过表达产生萜烯的影响。总萜烯的总体发育模式和基因表达谱将有助于指导对葡萄萜烯生物合成重要的进一步候选基因的功能分析,并在未来确定该途径的主要转录和激素调节因子。

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