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首页> 外文期刊>American journal of enology & viticulture >Influence of Interannual Meteorological Variability on Yeast Content and Composition in Sangiovese Grapes
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Influence of Interannual Meteorological Variability on Yeast Content and Composition in Sangiovese Grapes

机译:年际气象变化对桑娇维塞葡萄酵母含量和组成的影响

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Kloeckera apiculata and Candida zemplinina represent almost the totality of non-Saccharomyces yeasts in grape and fresh musts. These yeasts can accumulate secondary metabolites that are commonly known to increase the aromatic complexity of wine; thus, variations in their total number and ratio may lead to changes in wine taste and flavor. These variations are determined by numerous variables, including climate conditions and viticultural practices that can affect the environment of the yeasts and, in turn, their quantity and composition. This may consequently give rise to changes in the final sensory characteristics of a wine. This work assessed the long-term relationship (1997-2012) between yeast quantity and composition and the main meteorological variables (air temperature, relative humidity, and rainfall) in a Sangiovese vineyard located at the Brunello di Montalcino Wine Consortium (Tuscany). Results indicated that weather conditions 25 to 30 days before harvesting were correlated with total yeasts, particularly rainfall and relative humidity (r ~0.8). Moreover, K. apiculata and C. zemplinina were found to be correlated with temperature 10 days before grape harvest at the same time as leaf pulling (r = -0.66 and r = 0.52, respectively). These results suggest that both climate and management may affect microbial community and its composition.
机译:Kloeckera apiculata和Candida zemplinina几乎代表了葡萄和新鲜葡萄汁中非酵母菌的总数。这些酵母可以积累次级代谢产物,这些代谢产物通常会增加葡萄酒的芳香性。因此,其总数和比例的变化可能会导致葡萄酒口味和风味的变化。这些变化取决于众多变量,包括气候条件和可能影响酵母环境的葡萄栽培实践,进而影响酵母的数量和组成。因此,这可能导致葡萄酒的最终感官特性发生变化。这项工作评估了位于布鲁诺·迪·蒙塔尔奇诺葡萄酒集团(托斯卡纳)的桑娇维塞葡萄园中酵母菌数量和组成与主要气象变量(气温,相对湿度和降雨量)之间的长期关系(1997-2012年)。结果表明,收获前25至30天的天气状况与酵母总数有关,尤其是降雨量和相对湿度(r〜0.8)。此外,还发现K. apiculata和C. zemplinina与葡萄采摘前10天与拔叶同时与温度相关(分别为r = -0.66和r = 0.52)。这些结果表明,气候和管理都可能影响微生物群落及其组成。

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