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Root hydraulic conductivity in three self-rooted and grafted table grape cultivars

机译:三种自生和嫁接食用葡萄品种的根系水力传导率

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Aim: Root hydraulic conductivity is one of the main factors that control water flow in the soil-plant system and ultimately affect crop irrigation requirements. This work sets out to estimate root water conductivity for three self-rooted or grafted table grape cultivars.Methods and results: We evaluated root water conductivity of the cultivars ‘Black Magic’, ‘Matilde’ and ‘Victoria’ grafted onto 1103 Paulsen rootstock or self-rooted. Measurements were performed on two-year-old table grapes grown in pots filled with pumice. Root water conductivity was determined by placing the pots in a pressure chamber and increasing pressures from 0.05 to 0.30 MPa, at intervals of 0.05 MPa. Plant growth in terms of shoot and root dry matter was also evaluated, as well as leaf and root area.Conclusion: Root water conductivity differed according to cultivar and grafting. The ‘Victoria’ cultivar had higher root water conductivity than the other two, which differed little between them. The grafted plants showed higher root water conductivity than the self-rooted plants, except the plants of the cultivar ‘Matilde’, whose root water conductivity for the grafted and self-rooted plants was almost the same. It was also observed that the higher root water conductivity in relation to cultivar and grafting changed with increasing water flux and was constant for high water flux.Significance and impact of the study: Estimation of root hydraulic conductivity helps to determine the water consumption of the cultivars investigated, whether self-rooted or grafted, as well as the amount of irrigation water to apply to vineyards.
机译:目的:根系水力传导率是控制土壤-植物系统中水流并最终影响作物灌溉需求的主要因素之一。这项工作着手估计三种自生或嫁接的鲜食葡萄品种的根系水分传导率。方法和结果:我们评估了嫁接到1103 Paulsen砧木或1103 Paulsen砧木或'Victoria'品种上的根系水分传导率。自我扎根。测量是在装满浮石的盆中生长的两年老食用葡萄进行的。通过将盆放置在压力室中并以0.05 MPa的间隔将压力从0.05 MPa增加到0.30 MPa,确定根系水的电导率。还根据茎和根的干物质以及叶和根的面积评估了植物的生长。结论:根水电导率因品种和嫁接而异。 “维多利亚”品种的根系水电导率高于其他两个品种,两者之间相差不大。嫁接后的植物显示出比自生根植物更高的根水电导率,但“ Matilde”品种的植株与接枝后和自生根植物的根水电导率几乎相同。还观察到与根系和嫁接有关的更高的根系水导率随水通量的增​​加而变化,并且对于高水通量是恒定的。研究的意义和影响:根系水力导流率的估算有助于确定品种的耗水量进行了调查,无论是自生根的还是嫁接的,以及用于葡萄园的灌溉水量。

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