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Errors in the Measurement of Root Pressure and Exudation Volume Flow Rate Caused by Damage during the Transfer of Unsupported Roots between Solutions

机译:溶液之间无支撑的根转移过程中损坏引起的根压和渗出体积流量测量误差

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摘要

Plants of Zea mays were grown with their roots confined to growing tubes, consisting of cylindrical or spherical glass tubes fitted at the bottom with a stopcock. Nutrient solution was circulated past the roots, and when a plant was 21 to 25 days old, the stopcock was closed, the root excised from the plant and connected to an apparatus which measured root pressure and exudation volume flow rate. The stopcock was opened and solution was again circulated through the growing tube without dropping the level of the liquid bathing the root in the process. Measurements of pressure and flow rate were made continuously during a period in which the solution was replaced, first by draining and refilling the tube in situ, and second by replacing the growing tube with a beaker of solution. Both these manipulations caused at least temporary and frequently permanent drops in root pressure and flow rate. Plants were also grown in cylindrical tubes with a support medium of either glass beads or Raschig rings which filled the growing tubes. It is shown that the solution bathing these roots could be repeatedly replaced by draining and refilling with no visible effect on the measurements. It is recommended, therefore, that in future, support be provided for the roots of all experimental plants grown by solution culture.
机译:Zea mays植物的根部被限制在生长管中,该管由在底部装有旋塞的圆柱形或球形玻璃管组成。将营养液循环通过根部,当植物长至21至25天时,关闭旋塞阀,将根部从植物中切下,并连接至测量根部压力和分泌液体积流量的设备。打开旋塞阀,使溶液再次通过生长管循环,而不会降低该过程中浸入根部的液体的水平。在更换溶液的过程中,连续进行压力和流速的测量,首先是通过就地排空并重新填充试管,其次是用溶液烧杯替换正在生长的试管。这两种操作都至少导致根部压力和流速至少暂时和经常下降。还使植物在带有玻璃珠或拉西环(Raschig ring)的支持培养基的圆柱形管中生长,该培养基充满生长管。结果表明,浸没这些根部的溶液可以通过排水和重新填充而被重复替换,而对测量结果没有明显影响。因此,建议将来为所有通过溶液培养生长的实验植物的根提供支持。

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