酿酒葡萄成熟:气候影响及提高葡萄酒品质的分析方法综述

M. Rouxinol, M. Martins, J. M. Barroso, A. Rato
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引用次数: 0

摘要

红葡萄酒葡萄对许多地区的经济都有重要影响,无论是葡萄酒质量还是其丰富的酚类化合物,都有许多健康益处。在过去的几年里,气候发生了很大的变化,这极大地影响了葡萄多酚成分和葡萄酒的品质。在这篇综述中,我们将揭示气候在葡萄发育中的重要性,包括物理和化学,用于评估葡萄品质的不同方法,利用近红外光谱的有趣的新方法,以及葡萄和红葡萄酒由于其高酚含量而具有的功能特性。气候影响葡萄中酚类化合物的发育,即花青素的生物合成。在成熟过程中,酚类化合物的化学成分发生了变化,因此,跟踪这些关键化合物的积累是必要的。这些信息对于帮助生产者选择最佳收获日期至关重要,因为多酚等特定化合物负责葡萄酒的颜色,味道和口感,直接影响葡萄酒的质量。使用不同的方法来评估葡萄和葡萄酒的质量参数,可以用来提供必要的信息,以创建每个品种的化学特征,以制定校准方法。随着时间的推移,许多可靠的校准模型已经开发出来,因此在葡萄成熟过程中,近红外光谱似乎是一种可靠的方法,可以为生产者提供质量参数的实时信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wine Grapes Ripening: A Review on Climate Effect and Analytical Approach to Increase Wine Quality
Red wine grapes have an important impact on the economy of many regions, both for wine quality and for their richness in phenolic compounds, which have many health benefits. Climate has been changing substantially in the last years, which affects greatly grape polyphenolic composition and wine quality. In this review, we will unveil the importance of climate in grape development, both physically and chemically, the different methodologies used to evaluate grape quality, the interesting new approaches using NIR spectroscopy, and the functional properties of grapes and red wine, due to their high phenolic content. Climate has an impact in the development of phenolic compounds in grapes, namely in the anthocyanins biosynthesis. The phenolic chemical composition changes during maturation, therefore, it is essential to keep on track the accumulation of these key compounds. This information is crucial to help producers choose the best harvest date since specific compounds like polyphenols are responsible for the color, taste, and mouthfeel of wines, which directly affects wine quality. The usage of different methodologies to assess quality parameters in grapes and wine, can be used to provide essential information to create the chemical profile of each variety to develop calibration methods. NIR spectroscopy seems to be a reliable method to be used in vineyards during grape maturation to provide real time information on quality parameters to producers since many reliable calibration models have been developed over time.
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