Department of Agronomy, University of Florida, Gainesville, Florida 32611.
Plant Physiol. 1985 Sep;79(1):184-8. doi: 10.1104/pp.79.1.184.
The adsorption of water by thermocouple psychrometer assemblies is known to cause errors in the determination of water potential. Experiments were conducted to evaluate the effect of sample size and psychrometer chamber volume on measured water potentials of leaf discs, leaf segments, and sodium chloride solutions. Reasonable agreement was found between soybean (Glycine max L. Merr.) leaf water potentials measured on 5-millimeter radius leaf discs and large leaf segments. Results indicated that while errors due to adsorption may be significant when using small volumes of tissue, if sufficient tissue is used the errors are negligible. Because of the relationship between water potential and volume in plant tissue, the errors due to adsorption were larger with turgid tissue. Large psychrometers which were sealed into the sample chamber with latex tubing appeared to adsorb more water than those sealed with flexible plastic tubing. Estimates are provided of the amounts of water adsorbed by two different psychrometer assemblies and the amount of tissue sufficient for accurate measurements of leaf water potential with these assemblies. It is also demonstrated that water adsorption problems may have generated low water potential values which in prior studies have been attributed to large cut surface area to volume ratios.
众所周知,热电偶湿度计组件对水的吸附会导致水势测定出现误差。本实验旨在评估样品大小和湿度计腔室体积对叶片圆盘、叶片段和氯化钠溶液测量水势的影响。结果表明,对于 5 毫米半径的叶片圆盘和较大的叶片段,大豆叶片水势的测量值具有良好的一致性。实验结果表明,当使用小体积组织时,由于吸附引起的误差可能会很大,但如果使用足够的组织,则误差可以忽略不计。由于植物组织中的水势和体积之间存在关系,因此在肿胀组织中,由于吸附引起的误差更大。用乳胶管密封到样品室中的大型湿度计似乎比用柔性塑料管密封的湿度计吸附更多的水。本研究还提供了两种不同湿度计组件吸附的水量以及用这些组件准确测量叶片水势所需的足够组织量的估计值。实验结果还表明,先前研究中归因于较大的切割表面面积与体积比而导致的低水势值可能是由于水吸附问题引起的。