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Water relations and photosynthesis as criteria for adequate irrigation management in 'Tahiti' lime trees

机译:水关系和光合作用作为“大溪地” lime树适当灌溉管理的标准

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Irrigation scheduling based on soil moisture status is one of the most useful methods because of its practicality and low cost. The effects of available soil water depletion on evapotranspiration (ETc), transpiration (E), leaf water potential at predawn (psiP) and midday (psiM), stomatal conductance (gs) and net CO2 assimilation (A) in lime 'Tahiti' trees (Citrus latifolia) were evaluated to improve irrigation schedule and minimize water use without causing water stress. The trees were spaced 7 ´ 4 m and drip-irrigated by four drippers with the available soil water content (AWC) depleted by suspension of irrigation (40 days). Leaf water potential was measured on a pressure chamber (psiP and psiM) and leaf gas exchange was measured by infrared gas analyzer (E, gs and A). Evapotranspiration was determined with the aid of weighing lysimeter. Water soil content and potential (psiS) were monitored with TDR probes and tensiometers, respectively, installed at 0.3, 0.6 and 0.9 m depths. Meteorological variables were monitored with an automatic weather station in the experimental area. The threshold AWC level for the onset of ETc decline was 43%, and 60% for gs, A, E and Y P. Also, psiP was more sensitive to AWC than psiM, and is therefore a better tool for irrigation. When AWC was around 60%, values of psiP and psis were -0.62 MPa and -48.8 kPa, respectively.
机译:基于土壤水分状况的灌溉调度由于其实用性和低成本而成为最有用的方法之一。有效土壤水分消耗对石灰“大溪地”树木中蒸散量(ETc),蒸腾量(E),黎明前(psiP)和中午时的叶片水势(psiM),气孔导度(gs)和净CO 2同化(A)的影响对柑桔(Citrus latifolia)进行了评估,以改善灌溉进度并最大程度地减少用水量,而不会引起水胁迫。树木之间的间距为7´4 m,并用四个滴头滴灌,其中可利用的土壤水含量(AWC)通过暂停灌溉而耗尽(40天)。在压力室(psiP和psiM)上测量叶片水势,并通过红外气体分析仪(E,gs和A)测量叶片气体交换。蒸发蒸腾通过称重溶渗仪测定。使用分别安装在0.3、0.6和0.9 m深度的TDR探针和张力计监测水土壤含量和电势(psiS)。气象变量在实验区域内通过自动气象站进行监控。 ETc开始下降的阈值AWC水平为43%,gs,A,E和Y P的阈值AWC水平为60%。而且,psiP对AWC的敏感性高于psiM,因此是灌溉的较好工具。当AWC约为60%时,psiP和psis的值分别为-0.62 MPa和-48.8 kPa。

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