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气候条件和土壤特性对赤霞珠葡萄果实生长及花色苷谱的影响。

Effects of climatic conditions and soil properties on Cabernet Sauvignon berry growth and anthocyanin profiles.

作者信息

Cheng Guo, He Yan-Nan, Yue Tai-Xin, Wang Jun, Zhang Zhen-Wen

机构信息

College of Enology, Northwest A&F University, Yangling 712100, Shaanxi, China.

Center for Viticulture and Enology, College of Food Science & Nutritional Engineering, China Agricultural University, Beijing 100083, China.

出版信息

Molecules. 2014 Sep 2;19(9):13683-703. doi: 10.3390/molecules190913683.

Abstract

Climatic conditions and soil type have significant influence on grape ripening and wine quality. The reported study was conducted in two "Cabernet Sauvignon (Vitis vinifera L.V)" vineyards located in Xinjiang, a semiarid wine-producing region of China during two vintages (2011 and 2012). The results indicate that soil and climate affected berry growth and anthocyanin profiles. These two localities were within a distance of 5 km from each other and had soils of different physical and chemical composition. For each vineyard, the differences of anthocyanin concentrations, and parameters concerning berry growth and composition between the two years could be explained by different climatic conditions. Soil effect was studied by investigation of differences in berry composition and anthocyanin profiles between the two vineyards in the same year, which could be explained mainly by the different soil properties, vine water and nitrogen status. Specifically, the soils with less water and organic matter produced looser clusters, heavier berry skins and higher TSS, which contributed to the excellent performance of grapes. Compared with 2011, the increases in anthocyanin concentrations for each vineyard in 2012 could be attributed to smaller number of extreme temperature (>35 °C) days and rainfall, lower vine water status and N level. The explanation for higher anthocyanin concentrations in grape skins from the soils with less water and organic matter could be the vine status differences, lighter berry weight and heavier skin weight at harvest. In particular, grapes from the soils with less water and organic matter had higher levels of 3'5'-substituded, O-methylated and acylated anthocyanins, which represented a positive characteristic conferring more stable pigmentation to the corresponding wine in the future. The present work clarifies the effects of climate and soil on berry growth and anthocyanin profiles, thus providing guidance for production of high-quality wine grapes in different regions.

摘要

气候条件和土壤类型对葡萄成熟及葡萄酒品质有显著影响。本报告的研究在位于中国半干旱葡萄酒产区新疆的两个“赤霞珠(Vitis vinifera L.V)”葡萄园进行,历时两个年份(2011年和2012年)。结果表明,土壤和气候影响了浆果生长及花色苷谱。这两个地点相距5公里以内,土壤的物理和化学组成不同。对于每个葡萄园,两年间花色苷浓度的差异以及浆果生长和组成的参数差异可由不同的气候条件来解释。通过调查同一年两个葡萄园之间浆果组成和花色苷谱的差异来研究土壤效应,这主要可由不同的土壤性质、葡萄藤水分和氮素状况来解释。具体而言,水分和有机质含量较少的土壤产生的果穗较松散、浆果表皮较重且总可溶性固形物含量较高,这有助于葡萄表现出色。与2011年相比,2012年每个葡萄园花色苷浓度的增加可归因于极端温度(>35°C)天数和降雨量减少、葡萄藤水分状况和氮素水平降低。对于来自水分和有机质含量较少的土壤的葡萄皮中花色苷浓度较高的解释可能是葡萄藤状况差异、收获时浆果重量较轻和表皮重量较重。特别是,来自水分和有机质含量较少的土壤的葡萄含有较高水平的3'5'-取代、O-甲基化和酰化花色苷,这是一个积极特征,可为未来相应葡萄酒赋予更稳定的色素沉着。本研究阐明了气候和土壤对浆果生长及花色苷谱的影响,从而为不同地区优质酿酒葡萄的生产提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83c6/6271934/b29069ccc78b/molecules-19-13683-g001.jpg

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