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Assessment of frost damage in mycorrhizal and non-mycorrhizal roots of Scots pine seedlings using classification analysis of their electrical impedance spectra

机译:利用其电阻抗谱的分类分析评估苏格兰松幼苗菌根和非菌根的冻害

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摘要

We present a novel non-destructive method for the classification of root systems with different degrees of freezing injuries based on the measurement of electrical impedance spectra (EIS). Roots of Scots pine (Pinus sylvestris L.) seedlings, raised in perlite with nutrient solution, were colonized by Hebeloma sp. or Suillus luteus or left non-mycorrhizal, and exposed to a series of low temperatures (5, -5, -12 and -18 A degrees C) after cultivation with and without cold acclimation regimes. In EIS measurements, we ran a small-amplitude electric current to the root system at 44 frequencies between 5 Hz and 100 kHz through electrodes set in the stem and in perlite at the bottom of the container. The normalized (Euclidian) electrical impedance spectra were classified using the CLAFIC-method (CLAss-Featuring Information Compression) that is based on a subspace method with two variants where the longest projection vector defines the sample class. The current delivery through the root system was affected by freezing injuries in the roots. The most remarkable change, indicating the threshold for cold tolerance, took place between -5 and -12 A degrees C for non-acclimated and between -12 and -18 A degrees C for cold acclimated roots. No difference was found between the mycorrhizal treatments in the response to the freezing temperatures. The results on the effects of both the low-temperature exposure and mycorrhizas agree with freezing damage assessments done by other methods.
机译:我们基于电阻抗谱(EIS)的测量,提出了一种用于分类具有不同程度冻伤程度的根系的新型非破坏性方法。用营养液在珍珠岩中养育的苏格兰松树(Pinus sylvestris L.)幼苗的根被Hebeloma sp。定殖。或黄褐色牛肝菌或无菌根,在有和没有冷驯化条件下培养后暴露于一系列低温(5,-5,-12和-18 A摄氏度)。在EIS测量中,我们通过设置在容器底部茎和珍珠岩中的电极以5 Hz至100 kHz之间的44个频率向根系统传递小振幅电流。使用基于子空间方法的CLAFIC方法(CLAss特征信息压缩)对归一化的(欧几里德)电阻抗光谱进行分类,该方法具有两个变体,其中最长的投影矢量定义了样本类别。当前通过根系统传递的根受到冻伤的影响。最显着的变化表明了耐寒性的阈值,发生在未适应的-5至-12 A摄氏度和未适应的根在-12至-18 A摄氏度之间。菌根治疗之间对冷冻温度的反应没有发现差异。低温暴露和菌根效果的结果与通过其他方法进行的冻害评估一致。

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