Weyers Jonathan D B, Johansen Liv G
Department of Biological Sciences, University of Dundee, Dundee, Tayside DD1 4HN, UK.
New Phytol. 1985 Sep;101(1):109-115. doi: 10.1111/j.1469-8137.1985.tb02820.x.
The potential of low viscosity silicone-based impression material for measuring stomatal aperture on intact leaves was investigated. It was found that the probability of successful replication of Commelina communis L. stomata depended on the width of the stomatal pores. The wider pores in a sample were more likely to be measured, so the resulting estimated mean was an overestimate of the true mean. This bias in estimates of stomatal aperture from impressions was studied and quantified. A transformation is described which was used to adjust apparent aperture measurements from impressions to give more accurate estimates of stomatal apertures on intact leaves of C. communis. Maximum absolute errors due to the bias usually occurred at apparent apertures on impressions of between 2 and 5 μm but were proportionally greatest below 3μm, where they often exceeded 40%. At a given aperture, the error depended upon the dispersion of the stomatal apertures about their mean and was greatest when this was large.
研究了低粘度硅基印模材料用于测量完整叶片气孔孔径的潜力。发现鸭跖草气孔成功复制的概率取决于气孔孔的宽度。样本中较宽的气孔更有可能被测量,因此得到的估计平均值高估了真实平均值。对印模气孔孔径估计中的这种偏差进行了研究和量化。描述了一种变换方法,该方法用于调整印模的表观孔径测量值,以便更准确地估计鸭跖草完整叶片上的气孔孔径。偏差导致的最大绝对误差通常出现在印模表观孔径为2至5μm之间,但在3μm以下时比例最大,此时误差经常超过40%。在给定孔径下,误差取决于气孔孔径围绕其平均值的离散程度,当离散程度较大时误差最大。