首页> 外文期刊>American journal of enology & viticulture >Influence of water deficit stress on leaf area development and transpiration of Sangiovese grapevines grown in pots.
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Influence of water deficit stress on leaf area development and transpiration of Sangiovese grapevines grown in pots.

机译:缺水胁迫对盆栽桑娇维塞葡萄叶面积发育和蒸腾作用的影响。

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摘要

A stable, conservative variable is needed to describe the level of water-deficit stress to which grapevines are subjected. In agronomic crops, a function based on the amount of transpirable water stored in the soil has been found to provide such stable functions. This initial study examined whether this approach could be used to describe the response of transpiration rate and leaf area development rate in grapevines. The soil in which four-year-old grapevines (Vitis vinifera L. cv. Sangiovese) were growing was allowed to dry over several days. Both transpiration rate, which is assumed to be proportional to the gas exchange capability of the plant, and leaf area development rate did not decrease until the fraction of the transpirable soil water (FTSW) declined to about 0.35. Below 0.35 FTSW there was a continuous decline in each process until they were zero at FTSW=0. The overall behaviour of the plants to the drying soil was well described by logistic equations based on FTSW.
机译:需要一个稳定,保守的变量来描述葡萄所面临的缺水胁迫水平。在农作物中,已经发现基于存储在土壤中的蒸腾水量的功能可以提供这种稳定的功能。这项初始研究检验了这种方法是否可以用来描述葡萄的蒸腾速率和叶面积发育速率的响应。使生长了四岁的葡萄树(Vitis vinifera L. cv。Sangiovese)的土壤干燥几天。直到与植物的气体交换能力成正比的蒸腾速率和叶面积发育速率都没有降低,直到可蒸腾的土壤水(FTSW)的比例下降到大约0.35为止。低于0.35 FTSW,每个过程都会持续下降,直到在FTSW = 0时为零。通过基于FTSW的逻辑方程,可以很好地描述植物对干燥土壤的总体行为。

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