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Severe drought stress is affecting selected primary metabolites, polyphenols, and volatile metabolites in grapevine leaves (Vitis vinifera cv. Pinot noir)

机译:严重的干旱胁迫正在影响葡萄叶片中的某些主要代谢物,多酚和挥发性代谢物(Vitis vinifera cv。Pinot Noir)

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Extreme weather conditions with prolonged dry periods and high temperatures as well as heavy rain events can severely influence grapevine physiology and grape quality. The present study evaluates the effects of severe drought stress on selected primary metabolites, polyphenols and volatile metabolites in grapevine leaves. Among the 11 primary metabolites, 13 polyphenols and 95 volatiles which were analyzed, a significant discrimination between control and stressed plants of 7 primary metabolites, 11 polyphenols and 46 volatile metabolites was observed. As single parameters are usually not specific enough for the discrimination of control and stressed plants, an unsupervised (PCA) and a supervised (PLS-DA) multivariate approach were applied to combine results from different metabolic groups. In a first step a selection of five metabolites, namely citric acid, glyceric acid, ribose, phenylacetaldehyde and 2-methylbutanal were used to establish a calibration model using PLS regression to predict the leaf water potential. The model was strong enough to assign a high number of plants correctly with a correlation of 0.83. The PLS-DA provides an interesting approach to combine data sets and to provide tools for the specific evaluation of physiological plant stresses. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:极端的气候条件,长时间的干旱和高温,以及大雨天气,可能严重影响葡萄的生理和葡萄品质。本研究评估了严重干旱胁迫对葡萄叶片中某些主要代谢物,多酚和挥发性代谢物的影响。在所分析的11种主要代谢产物中,有13种多酚和95种挥发物,观察到对照植物和受胁迫植物之间存在明显的区别,其中7种主要代谢产物,11种多酚和46种挥发性代谢物。由于单个参数通常不足以区分对照植物和受胁迫植物,因此采用了无监督(PCA)和有监督(PLS-DA)多元方法来合并来自不同代谢组的结果。第一步,选择五种代谢物,即柠檬酸,甘油酸,核糖,苯乙醛和2-甲基丁醛,使用PLS回归建立预测叶水势的校准模型。该模型足够强大,可以正确分配大量植物,相关系数为0.83。 PLS-DA提供了一种有趣的方法,可以组合数据集并提供用于特定评估植物生理胁迫的工具。 (C)2015 Elsevier Masson SAS。版权所有。

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