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首页> 外文期刊>HortTechnology >Relationship between soil and plant water status in wine grapes under various water deficit regimes.
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Relationship between soil and plant water status in wine grapes under various water deficit regimes.

机译:不同水分亏缺状况下酿酒葡萄土壤与植物水分状况之间的关系。

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摘要

Limited water supply in arid and semiarid Mediterranean environments demands improving irrigation efficiency. The purpose of this study was to determine a functional relationship between soil water availability and wine grape (Vitis vinifera) water status to determine a threshold value of soil matric potential to trigger irrigation. Seasonal trends of soil water potential, leaf water potential, and stomatal conductance (gS) of 'Tempranillo' wine grape were determined in two deficit irrigation treatments replenishing 45% and 30% of the reference evapotranspiration, and in a third non-irrigated treatment during 2001 and 2002. Soil water potential was measured with granular matrix soil moisture sensors placed at 0.3 m ( Psi 0.3), 0.6 m ( Psi 0.6), and 1.2 m ( Psi 1.2) depths. The sensors at 0.3 m depth quickly responded to irrigation by increasing Psi 0.3 levels. At the Psi 0.6 m depth, Psi 0.6 progressively decreased, showing significant differences between T1 and the rest of the treatments, while no significant differences in Psi 1.2 were found. All relationships between profile soil matric potential and leaf water potential and gS were highly correlated. After integrating our data with previous studies, we suggest a whole profile soil water potential value of -0.12 MPa as threshold to trigger irrigation and avoid severe water stress during berry growth.
机译:在干旱和半干旱的地中海环境中,有限的水供应要求提高灌溉效率。这项研究的目的是确定土壤可用水量与酿酒葡萄( Vitis vinifera )水分状况之间的函数关系,从而确定触发灌溉的土壤基质潜力阈值。在分别补充45%和30的两种亏缺灌溉处理中确定了'Tempranillo'酿酒葡萄的土壤水势,叶片水势和气孔导度( g S )的季节性趋势和2001年至2002年第三次非灌溉处理中的参考蒸散量的百分比。用位于0.3 m(Psi 0.3 ),0.6 m(Psi的颗粒状土壤水分传感器)测量土壤水势 0.6 )和1.2 m(Psi 1.2 )深度。 0.3 m深度的传感器通过增加Psi 0.3 的水平快速响应灌溉。在Psi 0.6 m深度处,Psi 0.6 逐渐降低,显示T1与其余处理之间存在显着差异,而在Psi 1.2 中则没有显着差异。剖面土壤基质势与叶水势与 g S 之间的所有关系都高度相关。将我们的数据与以前的研究进行整合后,我们建议将-0.12 MPa的整体土壤水势值作为触发灌溉并避免浆果生长过程中严重水分胁迫的阈值。

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