Viticulture Department, Instituto Murciano de Investigación y Desarrollo Agrario y Alimentario (IMIDA), c/mayor s/n, 30150, La Alberca, Murcia, Spain.
J Exp Bot. 2012 Jun;63(11):4071-83. doi: 10.1093/jxb/ers088. Epub 2012 Mar 26.
Different spatial distributions of soil moisture were imposed on field-grown grapevines by applying the same irrigation volumes to the entire (DI; deficit irrigation) or part of the (PRD; partial root zone drying) root zone. Five treatments were applied: controls irrigated at 60% ETc (crop evapotranspiration) for the whole season (308 mm year(-1)); DI-1 and PRD-1 that received the same irrigation as controls before fruit set, 30% ETc from fruit set to harvest and 45% ETc post-harvest (192 mm year(-1)); and DI-2 and PRD-2 that were the same, except that 15% ETc was applied from fruit set to harvest (142 mm year(-1)). Compared with DI-1, PRD-1 maintained higher leaf area post-veraison and increased root water uptake, whole-plant hydraulic conductance, leaf transpiration, stomatal conductance, and photosynthesis, but decreased intrinsic gas exchange efficiency without causing differences in leaf xylem abscisic acid (ABA) concentration. Compared with DI-2, PRD-2 increased leaf xylem ABA concentration and decreased root water uptake, whole-plant hydraulic conductance, leaf transpiration, stomatal conductance, and photosynthesis, mainly at the beginning of PRD cycles. Distinctive PRD effects (e.g. greater stomatal closure) depended on the volumetric soil water content of the wet root zone, as predicted from a model of root-to-shoot ABA signalling.
通过向整个(DI;亏缺灌溉)或部分(PRD;部分根区干燥)根区施加相同的灌溉量,对田间生长的葡萄施加不同的土壤水分空间分布。应用了五种处理方法:对照处理在整个季节以 60% 的作物蒸发蒸腾量(ETc)进行灌溉(308 毫米/年);DI-1 和 PRD-1 在果实开始前与对照处理接受相同的灌溉,从果实开始到收获时为 30%ETc,收获后为 45%ETc(192 毫米/年);DI-2 和 PRD-2 相同,不同之处在于从果实开始到收获时施加 15%ETc(142 毫米/年)。与 DI-1 相比,PRD-1 在果实转色后保持较高的叶面积,并增加根系水分吸收、整株水力导度、叶片蒸腾、气孔导度和光合作用,但降低了内在气体交换效率,而不会导致叶片木质部脱落酸(ABA)浓度的差异。与 DI-2 相比,PRD-2 增加了叶片木质部 ABA 浓度,降低了根系水分吸收、整株水力导度、叶片蒸腾、气孔导度和光合作用,主要在 PRD 循环开始时。PRD 的独特效应(例如更大的气孔关闭)取决于湿润根区的体积土壤水分含量,这是根据根到茎 ABA 信号的模型预测的。