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首页> 外文期刊>Scientia horticulturae >Terroir aspects of grape quality in a cool climate wine region: relationship between water deficit, vegetative growth and berry sugar concentration.
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Terroir aspects of grape quality in a cool climate wine region: relationship between water deficit, vegetative growth and berry sugar concentration.

机译:气候凉爽的葡萄酒产区的风土特性:水分亏缺,营养生长和浆果糖浓度之间的关系。

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Gas-exchange, water relations, vegetative growth and berry sugar concentration of the Kekfrankos grapevine were studied at two growing sites in Eger Wine district, Hungary (Eger-Kolyukteto - non-stressed, flat vineyard and Eger-Nagyeged hill - water stressed, steep slope vineyard). At the hilly site predawn water potentials and stomatal conductance indicated mild to moderate water stress. As a result, stomatal regulation caused restricted carbon assimilation per unit leaf area. Interestingly, comparing the two sites, lower assimilation rate was accompanied by higher fruit sugar concentration. Water deficit also reduced the yield and the relative proportion of larger berries within bunches. However, in each berry weight category (I: <1g, II: 1.01-1.25g, III: 1.26-1.5g, IV: 1.51-1.75g, V: 1.76-2g, VI: >2.01g) there was a higher sugar concentration at the water stressed vineyard irrespective of berry size. Therefore, berry size was not the only factor that could influence berry sugar concentration. Water deficit also resulted in decreased leaf area per shoot and thus, modification in canopy architecture. Although, there was a higher leaf area for 1 kg fruit at the flat vineyard compared to the hilly site, differences in "sink-source" relations and light interception of the canopy between the sites resulted in different yield sugar concentration.
机译:在匈牙利埃格尔葡萄酒区的两个生长地点研究了Kekfrankos葡萄的气体交换,水关系,营养生长和浆果糖浓度(埃格尔-科柳克托(Eger-Kolyukteto-无压力,平坦的葡萄园和埃格尔-纳吉格山(Eger-Nagyeged hill)-水分紧张,陡峭坡葡萄园)。在丘陵地带,黎明前的水势和气孔导度表明轻度至中度的水分胁迫。结果,气孔调节导致单位叶片面积的碳同化受到限制。有趣的是,比较这两个位点,同化率越低,果糖浓度越高。缺水还降低了产量和束中较大浆果的相对比例。但是,在每个浆果重量类别中(I:<1g,​​II:1.01-1.25g,III:1.26-1.5g,IV:1.51-1.75g,V:1.76-2g,VI:> 2.01g)无论浆果大小如何,水胁迫下的葡萄园中糖的浓度都不同。因此,浆果大小并不是影响浆果糖浓度的唯一因素。水分亏缺还导致每枝叶面积减少,因此改变了冠层结构。尽管与丘陵地带相比,平坦葡萄园中的1公斤水果的叶面积更大,但两个地点之间的“库-源”关系和冠层的光截留差异导致了不同的糖浓度。

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