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Concurrent Comparisons of Stomatal Behavior Water Status and Evaporation of Maize in Soil at High or Low Water Potential

机译:高水势或低水势下土壤气孔行为水分状况和玉米蒸发的同时比较

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摘要

Concurrent measurements of evaporation, leaf conductance, irradiance, leaf water potential, and osmotic potential of maize (Zea mays L. cv. Pa602A) in soil at either high or low soil water potential were compared at several hours on two consecutive days in July. Hourly evaporation, measured on two weighing lysimeters, was similar until 1000 hours Eastern Standard Time, but thereafter evaporation from the maize in the dry soil was always less than that in the wet soil; before noon it was 62% and by midafternoon, only 35% of that in the wet soil. The leaf water potential, measured with a pressure chamber, was between −1.2 and −2.5 bars and between −6.8 and −8 bars at sunrise (about 0530 hours Eastern Standard Time) in the plants in the wet and dry soil, respectively, but decreased quickly to between −8 and −13 bars in the plants in the wet soil and to less than −15 bars in the plants in the dry soil by 1100 to 1230 hours Eastern Standard Time. At this time, the leaf conductance of all leaves was less than 0.1 cm sec−1 in the maize in the dry soil, whereas the conductance was 0.3 to 0.4 cm sec−1 in the leaves near the top of the canopy in the wet soil. The osmotic potential, measured with a vapor pressure osmometer, also decreased during the morning but to a smaller degree than leaf water potential, so that by 1100 to 1230 hours Eastern Standard Time the leaf turgor potential was 1 to 2 bars in all plants. Thereafter, leaf turgor potential increased, particularly in the plants in soil at a high water potential, whereas leaf water potential continued to decrease even in the maize leaves with partly closed stomata. Evidently maize can have values of leaf conductance differing 3- to 4- fold at the same leaf turgor potential, which suggests that stomata do not respond primarily to bulk leaf turgor potential. Evidence for some osmotic adjustment in the plants at low soil water potential is presented. Although the degree of stomatal closure in the maize in dry soil did not prevent further development of stress, it did decrease evaporation in proportion to the decrease in canopy conductance.
机译:在7月连续两天的几个小时内,比较了土壤高水势或低水势下玉米(Zea mays L. cv。Pa602A)的蒸发,叶片电导,辐照度,叶片水势和渗透势的同时测量。在东部标准时间1000小时之前,在两个称重测力计上测得的每小时蒸发量是相似的,但此后在干燥土壤中从玉米的蒸发总是要比在潮湿土壤中的少。中午之前是62%,到中午时分,只有35%在潮湿的土壤中。在潮湿和干燥土壤中的植物上,在日出(东部标准时间约0530小时)时,用压力室测量的叶片水势分别在-1.2和-2.5 bar之间和在-6.8和-8 bar之间,但是到东部标准时间1100至1230小时,在潮湿土壤中的植物中迅速下降到-8至-13 bar,而在干燥土壤中的植物中下降至-15 bar以下。此时,在干燥土壤中的玉米中,所有叶片的电导率均小于0.1 cm sec -1 ,而电导率为0.3到0.4 cm sec -1 >在潮湿土壤中冠层顶部附近的叶子中。用蒸汽渗透压计测得的渗透势在早晨也有所降低,但程度小于叶片水势,因此在东部标准时间1100至1230小时,所有植物的叶片膨胀势为1-2 bar。此后,叶片膨大势增加,特别是在高水势的土壤中的植物中,而即使在具有部分闭合气孔的玉米叶片中,叶片水势也继续降低。显然,在相同的叶片膨大势下,玉米的叶片电导值可能会变化3到4倍,这表明气孔对叶片膨大的势头没有主要反应。提出了在土壤水势低的植物中进行渗透调节的证据。尽管玉米在干燥土壤中的气孔闭合程度不能阻止胁迫的进一步发展,但它确实与冠层电导率的降低成比例地减少了蒸发。

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