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Field-Based Metabolomics of Vitis vinifera L. Stems Provides New Insights for Genotype Discrimination and Polyphenol Metabolism Structuring

机译:葡萄干茎的基于场的代谢组学为基因型识别和多酚代谢构造提供了新的见解

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摘要

Grape accumulates numerous polyphenols with abundant health benefit and organoleptic properties that in planta act as key components of the plant defense system against diseases. Considerable advances have been made in the chemical characterization of wine metabolites particularly volatile and polyphenolic compounds. However, the metabotyping (metabolite-phenotype characterization) of grape varieties, from polyphenolic-rich vineyard by-product is unprecedented. As this composition might result from the complex interaction between genotype, environment and viticultural practices, a field experiment was setting up with uniform pedo-climatic factors and viticultural practices of growing vines to favor the genetic determinism of polyphenol expression. As a result, UPLC-MS-based targeted metabolomic analyses of grape stems from 8 Vitis vinifera L. cultivars allowed the determination of 42 polyphenols related to phenolic acids, flavonoids, procyanidins, and stilbenoids as resveratrol oligomers (degree of oligomerization 1–4). Using a partial least-square discriminant analysis approach, grape stem chemical profiles were discriminated according to their genotypic origin showing that polyphenol profile express a varietal signature. Furthermore, hierarchical clustering highlights various degree of polyphenol similarity between grape varieties that were in agreement with the genetic distance using clustering analyses of 22 microsatellite DNA markers. Metabolite correlation network suggested that several polyphenol subclasses were differently controlled. The present polyphenol metabotyping approach coupled to multivariate statistical analyses might assist grape selection programs to improve metabolites with both health-benefit potential and plant defense traits.
机译:葡萄积累了许多具有丰富健康益处和感官特性的多酚,这些多酚在植物中是植物防御疾病的重要组成部分。在葡萄酒代谢产物,特别是挥发性和多酚化合物的化学表征方面已经取得了相当大的进步。然而,来自富含多酚的葡萄园副产品的葡萄品种的亚型鉴定(代谢物表型表征)是前所未有的。由于这种成分可能是由于基因型,环境和葡萄栽培实践之间复杂的相互作用所致,因此正在建立一个统一的土壤气候因素和葡萄藤葡萄栽培实践的田间试验,以支持多酚表达的遗传确定性。结果,基于UPLC-MS的8个葡萄品种葡萄茎的目标代谢组学分析使得可以测定42种与酚酸,黄酮类,原花青素和类芪类有关的多酚,即白藜芦醇低聚物(低聚度1-4)。 。使用偏最小二乘判别分析方法,根据葡萄茎的化学型根据其基因型来源进行区分,表明多酚型表达了品种特征。此外,使用22种微卫星DNA标记的聚类分析,分层聚类突出显示了葡萄品种之间多酚相似的程度,这与遗传距离一致。代谢物相关网络表明,几种多酚亚类的控制不同。目前的多酚代谢物分型方法与多变量统计分析相结合,可能有助于葡萄选择程序改善具有健康效益潜力和植物防御性状的代谢产物。

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