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Water stress thresholds for regulated deficit irrigation in pistachio trees: Rootstock influence and effects on yield quality

机译:开心果中受管制缺陷灌溉的水力胁迫阈值:砧木影响和对产量质量的影响

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摘要

The response of "Kerman" pistachio trees budded on three different rootstocks (Pistacia terebinthus, Pista-cia atlantica and Pistacia integerrima) to regulated deficit irrigation (RDI) in shallow soils was studied for3 years. The trees were either fully irrigated (C treatment) or subjected to deficit irrigation during Stage IIof fruit growth with two water stress thresholds (T1 and T2). The irrigation scheduling for fully-irrigatedtrees and water-stressed trees was managed by means of midday stem water potential (?stem) measure-ments. The use of direct measurements of the water status allowed estimating accurately the irrigationrequirements for pistachio trees, with water reductions ranging from 46 to 205 mm in fully-irrigatedtrees. The combination of the ?stemuse and the RDI regime saved 43?70% in T1 and 48?73% in T2 ofwater compared to the calculated crop evapotranspiration (ETc) for fully irrigated treatment (C).Deficit irrigation during Stage II significantly reduced the vegetative growth of the trees. Yield and fruitquality were not affected by any irrigation regime, except during the first year of the study. Thus, theresults indicate that full irrigation scheduling and RDI can be achieved successfully using ?stemtool onpistachio trees growing in shallow soils. A ?stemthreshold of ?1.5 MPa during stage II (T1) was suggestedfor RDI scheduling, as it did not reduce the yield or the production value. However a ?stemthresholdof ?2.0 MPa (T2) resulted in a significant reduction and an extensive delay in the recovery of stomatalconductance (gl),with negative effects on long-term pistachio production.P. integerrima showed a weaker capacity of adaptation to the study conditions compared to P. atlanticaand P. terebinthus, having a tendency to get more stressed and to produce a lower quality crop.
机译:研究了在三种不同砧木(Pistacia Terebinthus,Pista-CIA atlantica和Pistacia Attegersica和Pistacia Integerrima)对浅层缺陷灌溉(RDI)的响应进行了三年。在IIF的果实生长期间,树木完全灌溉(C治疗)或进行缺陷灌溉,果实生长有两种水胁迫阈值(T1和T2)。通过午间茎水势(茎干)测量来管理全灌溉和耐水树的灌溉调度。使用水状态的直接测量允许准确估计开心果树的灌溉措施,水减少在全灌溉诊断中的46至205毫米。 T2的T2在T2的T2中保存43. 7.7%的组合,与计算出的作物蒸散(C)相比,T2的蒸馏液(c)。在阶段II期间的灌溉,显着降低了树木的植物生长。除了在研究的第一年期间,产量和成果不受任何灌溉制度的影响。因此,结果表明,可以成功地使用灌溉调度和RDI,使用浅层落下的茎秆onpistachio树。 a?Δ1.5MPa在阶段II(T1)中的终点(T1),因为RDI调度,因为它没有降低产量或生产价值。然而,a?stemthresholdof?2.0 mpa(t2)导致对气孔导电(gl)的回收率显着降低和广泛的延迟,对长期开心果生产的负面影响。与P.Atlanticaand P. Terebinthus相比,IntemerRima表现出对研究条件的适应能力较弱,其倾向于更加紧张并产生较低的品质作物。

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