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Vine performance and wine composition of 'Chardonnay' in relation to organic soil amendment in Mediterranean environment

机译:“霞多丽”与地中海环境有机土修正有关的藤编性能和葡萄酒组成

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摘要

Preservation and improvement of soil organic matter content in vineyards are key goals of agroecosystem resilience against climate change and its negative effects on grapevine water status and vine physiology. There is still a lack of information on the effects of organic amendments on grapevine functions and yield performance. The following research was carried out during the 2016 season in a commercial Chardonnay' vineyard located in Apulia region according to a randomized block design, where one factor of fertilization (commercial composted municipal solid organic wastes) was tested. Treatments were: no fertilized control vines (NFC), moderate fertilized vines (Dl) at rate of 1 kg vine1 of organic amendment (4.3 t ha-1, at the rate of 86 kg N hal), high fertilized vines (D2) at rate of 1.5 kg vine1 (6.61 ha~(-1), 132 kg N ha~(-1)). The leaf gas exchange during growing season did not show significant differences in terms of net CC_ assimilation, stomatal conductance, transpiration and water useefficiency. However, lower leaf temperature on Dl and D2 vines was measured. Vines fertilized with organic amendment showed a better water status during the warmest summer days since organic compounds improve the soil-water holding capacity. Monthly field measurements of the greenness of the leaves (SPAD index) revealed the highest green color intensity of leaves by D2 treatments (+11%) to be related to the highest nitrogen amount. Compared to unfertilized vines, D2 vines (high amendment dose) determined a significant increase in yield per vine (+21%) in relation to the highest cluster weight. At harvest, grapes had the same chemical composition with no differences in term of sugar content and pH, while an increment of titratable acidity on Dl and D2 vines was noted. Wines of different treatments have shown similar chemical parameters (alcohol content, titratable acidity and pH). Our preliminary results indicated that application of a high level of soil organic amendment on 'Chardonnay' vines increased grapevines yield while improving soil properties (soil organic content and water retention), contrasting summer drought effect on vines in a Mediterranean environment.
机译:葡萄园中土壤有机质含量的保存和改善是农业生物系统恢复力对气候变化的关键目标及其对葡萄水状况和葡萄生理学的负面影响。仍然缺乏有关有机修改对葡萄藤功能和产量性能影响的信息。根据随机块设计,在普利亚地区的商业霞多丽的葡萄园中进行了以下研究,其中测试了一个受精的一个因素(商业堆肥市固体有机废物)。治疗方法:NO受精控制藤(NFC),适度施肥藤(DL)的有机修正率为1千克vine1(4.3 t HA-1,以86千克NAL的速度),高施肥藤(D2) 1.5千克vine1的速率(6.61 ha〜(-1),132 kg n ha〜(-1))。在生长季节期间的叶片气体交换并未显示出净CC_同化,气孔电导,蒸腾和水使用效率方面的显着差异。但是,测量D1和D2叶片上的下叶温度。由于有机化合物改善了土壤 - 水持续能力,在最温暖的夏季,含有有机修正案受精的葡萄葡萄藤在最温暖的夏季,含有更好的水位。叶片绿色的月度域测量(SPAD指数)通过D2处理(+ 11%)呈现出最高的绿色强度(+ 11%)与最高氮素量有关。与未受精的葡萄藤相比,D2葡萄藤(高修正剂量)确定了与最高簇重量相关的每葡萄屈服(+ 21%)的显着增加。在收获时,葡萄具有相同的化学成分,糖含量和pH没有差异,而N1和D2叶片的可滴定性酸度的增量较高。不同治疗的葡萄酒显示了类似的化学参数(酒精含量,可滴定酸度和pH)。我们的初步结果表明,在“霞多丽的葡萄藤上高水平的土壤有机修正案”增加了葡萄园产量,同时改善了土壤性质(土壤有机含量和水保留),对比地中海环境对葡萄藤的影响。

著录项

  • 来源
    《Acta Horticulturae》 |2018年第1217期|共7页
  • 作者单位

    CREA Research Centre for Viticulture and Enology Via Casamassima n. 148 Turi (BA) Italy;

    CREA Research Centre for Viticulture and Enology Via Casamassima n. 148 Turi (BA) Italy;

    CREA Research Centre for Viticulture and Enology Via Casamassima n. 148 Turi (BA) Italy;

    CREA Research Centre for Viticulture and Enology Via Casamassima n. 148 Turi (BA) Italy;

    CREA Research Centre for Viticulture and Enology Via Casamassima n. 148 Turi (BA) Italy;

    CREA Research Centre for Viticulture and Enology Via Casamassima n. 148 Turi (BA) Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 园艺;
  • 关键词

    grapevine; organic matter; water status; leaf gas exchange; stem water potential;

    机译:葡萄树;有机物;水状况;叶片气体交换;茎水潜力;

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