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Biology subjects

Dehshibi, M. M.

Publications and source records attributed to Dehshibi, M. M..

2 recordsLinked to original sources

Bioelectrical Synchronisation of Spruce Trees during aSolar Eclipse

Regular light-dark cycles greatly affect organisms, and events like eclipses induce distinctive physiological and behavioural shifts. While well-documented in animals, plant behaviour during eclipses remains largely unexplored. Here we monitored multiple spruce trees to assess their individual and collective bioelectrical responses to a solar eclipse. Trees anticipated the eclipse, synchronising their individual bioelectrical behaviour hours in advance. Older trees displayed greater anticipatory behaviour with early time-asymmetry and entropy increases, characteristic of memory dynamics in open dissipative systems such as trees. These results reveal a complex relationship between individual and collective tree behaviour, shaped by individual age and physiology as well as collective history and memory. This highlights the adaptive significance of synchrony and collective memory in plants, offering new insights on coordinated behaviours in nature. One Sentence SummaryTrees anticipate and respond collectively to a solar eclipse.

plant biology↗

Bio-electric potentials in superior plants: electric collective behaviour

Electrical activity is used by plants in long term signalling and information transfer between the distant parts of the plant. Biopotential recordings from trees in a natural environment have been so far less discussed in scientific literature. Here we present our data about the open science experiment TRee-hUMAn iNterface (TRUMAN) located in Paneveggio forest (Valle di Fiemme, Trento, Italy), cultivated since one thousand years for the production of harmonic wood from Picea abies (red fir). We show that: i) biopotential features based on xylem can be correlated with the solar (and lunar) cycle ii) dead tree logs show an electrical activity that is correlated with that of neighbouring trees iii) statistical features of the spike-like peaks are evidenced, including amplitude, frequency, propagation speed, entropy iv) a quantum field theory is presented to highlight the collective behaviour of the forest, supported by preliminar correlation analyses between electrical signal Kolmogorov entropy and thermographies Shannon entropy.

biophysics↗