Biophysica (Sep 2022)

The Counteraction of Cultivated <i>Cistus creticus</i> L. (Rock Rose) Plants to the Strain Imposed by a Long-Term Exposure to Non-Ionizing Radiation and the Role of DDC

  • Aikaterina L. Stefi,
  • Georgia Kalouda,
  • Aikaterini S. Skouroliakou,
  • Dido Vassilacopoulou,
  • Nikolaos S. Christodoulakis

DOI
https://doi.org/10.3390/biophysica2030024
Journal volume & issue
Vol. 2, no. 3
pp. 248 – 265

Abstract

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Two groups of Cistus creticus seedlings were grown in two chambers under controlled environmental conditions. In one of the chambers, a continuously emitting base unit of a wireless telephone was placed. After fifty days of culture, the two groups of plants were removed and thoroughly investigated and compared. The aboveground parts of the exposed plants were retarded in development while their roots exhibited increased biomass, compared to the controls. There was a minor decrease in the absorbance of the photosynthetic pigments in exposed plants, while an overproduction of Reactive Oxygen Species (ROS) ROS in their leaves and roots was detected. The expression of the L-Dopa decarboxylase (DDC) seemed to “erupt” following the exposure to radiation in both shoots and roots of the stressed plants, and their roots slow down their secondary development; strangely, the phenolic content is reduced in their leaves, the external topography of which indicates a rather xeromorphic response. We may suggest that Cistus creticus plants, forced by the radiation stress, can finely tune their metabolic pathways in a way that can be useful in the pharmaceutical industry.

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