首页> 外文OA文献 >Measurement of Net Fluxes of Ammonium and Nitrate at the Surface of Barley Roots Using Ion-Selective Microelectrodes 1: II. Patterns of Uptake Along the Root Axis and Evaluation of the Microelectrode Flux Estimation Technique
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Measurement of Net Fluxes of Ammonium and Nitrate at the Surface of Barley Roots Using Ion-Selective Microelectrodes 1: II. Patterns of Uptake Along the Root Axis and Evaluation of the Microelectrode Flux Estimation Technique

机译:使用离子选择性微电极1:II测量大麦根表面的铵和硝酸盐净通量。沿根轴的吸收模式和微电极通量估算技术的评估

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摘要

Net fluxes of NH4+ and NO3− into roots of 7-day-old barley (Hordeum vulgare L. cv Prato) seedlings varied both with position along the root axis and with time. These variations were not consistent between replicate plants; different roots showed unique temporal and spatial patterns of uptake. Axial scans of NH4+ and NO3− net fluxes were conducted along the apical 7 centimeters of seminal roots of intact barley seedlings in solution culture using ion-selective microelectrodes in the unstirred layer immediately external to the root surface. Theoretically derived relationships between uptake and concentration gradients, combined with experimental observations of the conditions existing in our experimental system, permitted evaluation of the contribution of bulk water flow to ion movement in the unstirred layer, as well as a measure of the spatial resolution of the microelectrode flux estimation technique. Finally, a method was adopted to assess the accuracy of this technique.
机译:NH4 +和NO3-进入7日龄大麦幼苗根部的净通量随根轴位置和时间的变化而变化。这些差异在复制植物之间不一致。不同的根系表现出独特的吸收时空格局。使用离子选择微电极在紧邻根表面外部的未搅拌层中,沿溶液培养中完整大麦幼苗的精根的顶端7厘米对NH4 +和NO3-净通量进行轴向扫描。从理论上得出吸收和浓度梯度之间的关系,再结合对我们实验系统中存在条件的实验观察,可以评估大量水流对非搅拌层中离子运动的贡献,以及对空间分辨率的测量。微电极通量估算技术。最后,采用一种方法来评估该技术的准确性。

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