ITACA - Institute of Information and Communication Technologies, Research Group ICT against Climate Change, Universitat Politècnica De València , València, Spain.
Plant Signal Behav. 2020 Oct 2;15(10):1795580. doi: 10.1080/15592324.2020.1795580. Epub 2020 Jul 20.
Electric potential differences in living plants are explained by theories based on sap flow. In order to acquire more advanced knowledge about the spatial distribution of these electric potential measures in trees, this research aims to analyze electrical signals in a population of Aleppo pines ( Mill.) in a representative Mediterranean forest ecosystem. The specific research objective is to assess some of the most significant factors that influence the distribution pattern of those electric signals: tree age, measurement type and electrode placement. The research has been conducted in representative forest stands, obtaining measurements of different representative trees. After a statistical evaluation of the obtained results, the main conclusions of our research are: A.Tree maturity influences directly on electric potential. B.Maximum electrical signals can be measured in young pines showing values of 0.6 V and 0.6 µA for voltage and current, respectively. C.The distribution patterns of both voltage and short-circuit current depending on electrode placement are uniform.
活植物中的电势差可以用基于液流的理论来解释。为了获得关于树木中这些电势测量值的空间分布的更先进的知识,本研究旨在分析代表地中海森林生态系统的一片黎巴嫩油松(Mill.)种群中的电信号。具体的研究目标是评估一些影响这些电信号分布模式的最重要因素:树龄、测量类型和电极放置。该研究是在有代表性的森林林分中进行的,获得了不同代表性树木的测量值。对获得的结果进行了统计评估后,我们研究的主要结论是:A. 树木成熟度直接影响电势。B. 可以在年轻的松树中测量到最大的电信号,其电压和电流值分别为 0.6V 和 0.6µA。C. 取决于电极放置的电压和短路电流的分布模式是均匀的。