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Direct Measurement of Xylem Pressure in Leaves of Intact Maize Plants. A Test of the Cohesion-Tension Theory Taking Hydraulic Architecture into Consideration

机译:完整玉米植株叶片中木质部压力的直接测量。考虑水工建筑的内聚-张力理论测试

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摘要

The water relations of maize (Zea mays L. cv Helix) were documented in terms of hydraulic architecture and xylem pressure. A high-pressure flowmeter was used to characterize the hydraulic resistances of the root, stalk, and leaves. Xylem pressure measurements were made with a Scholander-Hammel pressure bomb and with a cell pressure probe. Evaporation rates were measured by gas exchange and by gravimetric measurements. Xylem pressure was altered by changing the light intensity, by controlling irrigation, or by gas pressure applied to the soil mass (using a root pressure bomb). Xylem pressure measured by the cell pressure probe and by the pressure bomb agreed over the entire measured range of 0 to −0.7 MPa. Experiments were consistent with the cohesion-tension theory. Xylem pressure changed rapidly and reversibly with changes in light intensity and root-bomb pressure. Increasing the root-bomb pressure increased the evaporation rate slightly when xylem pressure was negative and increased water flow rate through the shoots dramatically when xylem pressure was positive and guttation was observed. The hydraulic architecture model could predict all observed changes in water flow rate and xylem. We measured the cavitation threshold for oil- and water-filled pressure probes and provide some suggestions for improvement.
机译:玉米(Zea mays L. cv Helix)与水的关系根据水力结构和木质部压力进行了记录。使用高压流量计来表征根,茎和叶的水力阻力。用Scholander-Hammel压力弹和细胞压力探头进行木质部压力测量。通过气体交换和重量分析法测量蒸发速率。通过改变光照强度,控制灌溉或施加在土壤块体上的气压(使用根压炸弹)来改变木质部压力。由电池压力探针和压力弹测得的木质部压力在0至-0.7 MPa的整个测量范围内一致。实验与内聚张力理论一致。随着光强度和根炸弹压力的变化,木质部压力迅速而可逆地变化。当木质部压力为负时,根部炸弹压力的增加略有增加,而木质部压力为正并观察到有胶凝性时,通过根部的水流速率会急剧增加。水力建筑模型可以预测所有观察到的水流量和木质部的变化。我们测量了充油和注水压力探头的气穴阈值,并提供了一些改进建议。

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