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首页> 外文期刊>Journal of Agricultural Science >Above Ground Drip Application Practices Alter Water Productivity of Malbec Grapevines under Sustained Deficit
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Above Ground Drip Application Practices Alter Water Productivity of Malbec Grapevines under Sustained Deficit

机译:持续滴灌下地上滴灌实践改变了马尔贝克葡萄的水分生产率

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摘要

An objective of this study was to identify above ground drip application practices for winegrape that increase water productivity and mitigate water deficit-associated loss of yield. The influence of irrigation frequency on water productivity under two severities of sustained deficit irrigation was evaluated in field grown Malbec grapevines (Vitis vinifera L.) over three growing seasons. A weekly amount of water was delivered in a single irrigation event (1X) or apportioned into thirds and delivered in three irrigation events per week (3X). The least severe deficit (STD) had a 3-yr average maximum duty cycle (ratio of irrigation duration to irrigation interval) of 0.3, and vines irrigated 3X relative to 1X had higher water productivity each year due to a decrease in pruning weight. The most severe deficit (STD50) had a 3-yr average maximum duty cycle of 0.02 and vines irrigated 1X relative to 3X had higher water productivity due to a reduction in pruning weight in 2012 and an increase in yield in 2013. The fruit produced from vines irrigated at the frequency with highest water productivity under each deficit severity contained a lower concentration of anthocyanins. While treatment combinations did not alleviate a water-stress associated reduction in yield, results provided new information about grapevine water use efficiency that can be used to select combinations of irrigation frequencies and duty cycles with potential for increasing water productivity.
机译:这项研究的目的是确定用于葡萄柚的地上滴灌实践,该实践可提高水分生产率并减轻与水分亏缺相关的产量损失。在三个生长季节的田间种植的马尔贝克葡萄(Vitis vinifera L.)中,评估了两种严重持续灌溉条件下灌溉频率对水分生产率的影响。每周一次的灌溉事件(1X)或每周分配的水量分成三分,每周进行三个灌溉事件(3X)。最不严重的赤字(STD)具有3年的平均最大占空比(灌溉持续时间与灌溉间隔的比率)为0.3,并且由于修剪重量的减少,每年用3倍于1倍灌溉的葡萄藤的水分生产率更高。最严重的赤字(STD50)的3年平均最大占空比为0.02,而2012年的修剪重量减少和2013年的产量增加,相对于3X而言,灌溉1X的葡萄具有更高的水生产率。在每种亏缺严重程度下,以最高水分生产率生产的频率灌溉的藤蔓所含花青素浓度较低。虽然处理组合并不能减轻与水分胁迫相关的产量下降,但结果提供了有关葡萄用水效率的新信息,可用于选择灌溉频率和占空比的组合,以提高水的生产力。

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