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Cover Crop Short-Term Effects on Soil NO3 --N Availability, Nitrogen Nutritional Status, Yield, and Must Quality in a Calcareous Vineyard of the AOC Rioja, Spain

机译:覆盖作物对西班牙AOC里奥哈钙质葡萄园土壤NO3 --N有效性,氮营养状况,产量和必须品质的短期影响

摘要

Cover crop use in vineyards can affect both vine vigor and must and wine quality because of the competition for soil nutrients and water. Our objective was to study the short-term effects of a cover crop on the nitrate (NO3 -)-nitrogen (N) availability throughout the grapevine vegetative cycle, the grapevine and cover crop N uptake, and the yield and must quality. By short-term effects we mean the first crop cycle after planting the cover crop. The experiment was set in 2009 on a cv. Tempranillo vineyard planted in a Oxyaquic Xerorthent soil. The soil had not been fertilized with N since 2000, and two types of soil management were studied: (1) conventional tillage (CT) and (2) barley (Hordeum vulgare L.) cover crop (B). Soil samples were taken in March (bud break), June (bloom), July (setting), and August (veraison) of 2009, and the extractable NO3 --N was determined. At bloom and veraison, N contents in both blade and petiole were determined. At bloom the grapevine N uptake was estimated using the aerial parts (leaves, shoots, and bunches), and for the cover crop N uptake was determined. Total yield, bunch, and shoot weight as well as must anthocyanin and polyphenol contents were determined. Soil NO3 --N availability decreased in the cover crop from June until August, with the reduction being similar to the cover crop N uptake. Also N contents in both petiole and blade decreased in the cover crop at veraison. Regarding must quality, the cover crop increased the anthocyanin content. The reduction of soil NO3 --N availability throughout the vegetative cycle of grapevine caused a reduction in both N nutritional status and grapevine vigor, and therefore cover crops could affect must quality in the first harvest after the cover crop was sown. © 2013 Copyright Taylor & Francis Group, LLC.
机译:由于争夺土壤养分和水分,在葡萄园中使用遮盖作物会影响藤本植物的活力和葡萄汁的品质。我们的目标是研究覆盖作物对整个葡萄植物营养循环,硝酸盐和覆盖作物对氮的吸收以及产量和必需品质对硝酸盐(NO3-)-氮(N)有效性的短期影响。短期效应是指种植遮盖作物后的第一个作物周期。该实验于2009年在简历上进行。 Tempranillo葡萄园种植在Oxyaquic Xerorthent土壤中。自2000年以来,从未对土壤施氮,对土壤管理的两种类型进行了研究:(1)传统耕作(CT)和(2)大麦(Hordeum vulgare L.)覆盖作物(B)。在2009年的3月(预算中断),6月(开花),7月(设置)和8月(验证)取样土壤样品,并确定了可提取的NO3--N。在开花和确证时,测定叶片和叶柄中的N含量。在开花时,使用地上部分(叶子,枝条和束)估算葡萄的N吸收,并确定覆盖作物的N吸收。确定总产量,束和枝条重量以及花色苷和多酚含量。从6月到8月,覆盖作物的土壤NO3-N利用率下降,与覆盖作物的N吸收相似。覆盖期作物的叶柄和叶片中的N含量也均在下降。对于必须质量,覆盖作物增加了花青素含量。在整个葡萄生长周期中,土壤NO3-N含量的减少导致N营养状况和葡萄活力的下降,因此,覆盖作物可能会影响覆盖作物播种后第一季的品质。 ©2013泰勒和弗朗西斯集团有限公司版权所有。

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