Costantini Laura, Kappel Christian D, Trenti Massimiliano, Battilana Juri, Emanuelli Francesco, Sordo Maddalena, Moretto Marco, Camps Céline, Larcher Roberto, Delrot Serge, Grando Maria S
Grapevine Genetics and Breeding Unit, Genomics and Biology of Fruit Crop Department, Research and Innovation Centre, Fondazione Edmund MachSan Michele all'Adige, Italy.
UMR Ecophysiology and Grape Functional Genomics, Institut des Sciences de la Vigne et du Vin, University of BordeauxVillenave d'Ornon, France.
Front Plant Sci. 2017 May 16;8:780. doi: 10.3389/fpls.2017.00780. eCollection 2017.
Monoterpenes confer typical floral notes to "Muscat" grapevine varieties and, to a lesser extent, to other aromatic non-Muscat varieties. Previous studies have led to the identification and functional characterization of some enzymes and genes in this pathway. However, the underlying genetic map is still far from being complete. For example, the specific steps of monoterpene metabolism and its regulation are largely unknown. With the aim of identifying new candidates for the missing links, we applied an integrative functional genomics approach based on the targeted metabolic and genome-wide transcript profiling of Moscato Bianco ripening berries. In particular, gas chromatography-mass spectrometry analysis of free and bound terpenoid compounds was combined with microarray analysis in the skins of berries collected at five developmental stages from pre- to over-ripening. Differentially expressed metabolites and probes were identified in the pairwise comparison between time points by using the early stage as a reference. Metabolic and transcriptomic data were integrated through pairwise correlation and clustering approaches to discover genes linked with particular metabolites or groups of metabolites. These candidate transcripts were further checked for co-localization with quantitative trait loci (QTLs) affecting aromatic compounds. Our findings provide insights into the biological networks of grapevine secondary metabolism, both at the catalytic and regulatory levels. Examples include a nudix hydrolase as component of a terpene synthase-independent pathway for monoterpene biosynthesis, genes potentially involved in monoterpene metabolism (cytochrome P450 hydroxylases, epoxide hydrolases, glucosyltransferases), transport (vesicle-associated proteins, ABCG transporters, glutathione S-transferases, amino acid permeases), and transcriptional control (transcription factors of the ERF, MYB and NAC families, intermediates in light- and circadian cycle-mediated regulation with supporting evidence from the literature and additional regulatory genes with a previously unreported association to monoterpene accumulation).
单萜赋予“麝香”葡萄品种典型的花香,在较小程度上也赋予其他非麝香芳香品种。先前的研究已导致该途径中一些酶和基因的鉴定及功能表征。然而,潜在的遗传图谱仍远未完整。例如,单萜代谢的具体步骤及其调控在很大程度上尚不清楚。为了识别缺失环节的新候选基因,我们基于对白比诺成熟浆果的靶向代谢和全基因组转录谱分析,应用了一种综合功能基因组学方法。具体而言,将游离和结合萜类化合物的气相色谱 - 质谱分析与在从转色前期到过熟期的五个发育阶段收集的浆果果皮中的微阵列分析相结合。通过以早期阶段为参照,在时间点之间的成对比较中鉴定出差异表达的代谢物和探针。通过成对相关性和聚类方法整合代谢组学和转录组学数据,以发现与特定代谢物或代谢物组相关的基因。进一步检查这些候选转录本与影响芳香化合物的数量性状位点(QTL)的共定位情况。我们的研究结果在催化和调控水平上为葡萄次生代谢的生物网络提供了见解。实例包括一种核苷二磷酸连接酶水解酶,它是单萜生物合成中不依赖萜烯合酶途径的组成部分;可能参与单萜代谢的基因(细胞色素P450羟化酶、环氧化物水解酶、糖基转移酶)、转运(囊泡相关蛋白、ABCG转运蛋白、谷胱甘肽S - 转移酶、氨基酸通透酶)以及转录调控(ERF、MYB和NAC家族的转录因子、光和昼夜节律介导调控中的中间体,有文献支持证据以及与单萜积累有先前未报道关联的其他调控基因)。