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首页> 外文期刊>Functional Plant Biology >Partial rootzone drying and deficit irrigation increase stomatal sensitivity to vapour pressure deficit in anisohydric grapevines
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Partial rootzone drying and deficit irrigation increase stomatal sensitivity to vapour pressure deficit in anisohydric grapevines

机译:局部根区干燥和亏缺灌溉增加了气孔对等渗葡萄藤中蒸气压亏缺的敏感性

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摘要

The aim of this study was to investigate howalternative irrigation strategies affected grapevine (Vitis vinifera L.) stomatal response to atmospheric vapour pressure de. cit (VPD). In two sites, application of partial rootzone drying (PRD) at 90-100% of crop evapotranspiration (ETc) increased stomatal sensitivity of Shiraz (Syrah) grapevines to high VPD compared with control vines irrigated with the same amount of water but applied on both sides of the vine. PRD significantly reduced vine water use (ESF) measured as sap flow and in dry conditions increased the depth of water uptake from the soil pro. le. In both experiments, PRD reduced vine water use by up to 50% at moderate VPD (similar to 3 kPa) compared with control vines irrigated at the same level. In the same vines, the response to PRD applied at 100% ETc and de. cit irrigation applied at 65% ETc was the same, increasing stomatal sensitivity to VPD and decreasing sap flow. Hydraulic signalling apparently did not play a role in changing stomatal sensitivity as there was no difference in stem water potentials between any of the treatment (PRD and DI) and control vines. This suggests that a long distance root-based chemical signal such as ABA may be responsible for the changes in stomatal behaviour. Shiraz grapevines have previously been classified as anisohydric-like, but application of PRD and DI increased stomatal closure in response to conditions of high evaporative demand making the vines behave in a more isohydric-like manner.
机译:这项研究的目的是调查替代灌溉策略如何影响葡萄(Vitis vinifera L.)气孔对大气蒸气压de的响应。 cit(VPD)。在两个地点,与相同灌溉量但在两个灌溉系统上都灌溉的对照藤本植物相比,在作物蒸散量(ETc)的90-100%处进行部分根区干燥(PRD)可以提高设拉子(Syrah)藤本植物对高VPD的气孔敏感性。藤的侧面。珠三角可显着减少葡萄树的水分利用(ESF)(以树液流量计),而在干燥条件下,则增加了土壤吸收水的深度。乐在两个实验中,与相同水平灌溉的对照葡萄藤相比,在中等VPD(约3 kPa)下,PRD最多可减少葡萄藤用水50%。在相同的葡萄树中,对PRD的反应适用于100%ETc和de。 ETc含量为65%时,灌溉量相同,增加了气孔对VPD的敏感性并减少了汁液流量。水力信号显然在改变气孔敏感性中不起作用,因为任何处理(PRD和DI)和对照藤之间的茎水势没有差异。这表明长距离的基于根的化学信号(例如ABA)可能是导致气孔行为变化的原因。设拉子(Shiraz)葡萄以前被归类为等渗水类,但是PRD和DI的使用增加了气孔封闭性,以应对高蒸发需求,使葡萄树表现出更类似等渗水的方式。

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