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2022 | OriginalPaper | Chapter

The Effects of Terahertz Radiation on the Development of Biological Organisms I: Wheat Seeds

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Abstract

The uses of Terahertz (THz) radiation are broad, ranging from scanning packages to identifying various chemical compounds. Its effects on living matter have been neglect. The scientific literature available to date describes various effects on living matter depending on the type of cells studied. No studies thus far have investigated the effects of THz radiation on dormant seeds, whose animal-like metabolism creates a unique opportunity to assess the full extent of THz radiation as well as further analyze the mechanism of action behind this type of non-ionizing radiation. The aim of this study is to assess the radiation’s effects on the sprouting of wheat seeds. Previous studies have shown a positive effect on the growth and proliferation of plants when placed under the effects of THz radiation; however, due to the aforementioned unique metabolism of seeds’ cells, the ongoing hypothesis is that the seeds will suffer under the effects of the THz radiation. The seeds have been placed into two distinct batches, depending on whether they were exposed dry or wet. Multiple time-frames were assessed to different sub-groups, having one control sub-group in each batch. The exposed seeds saw a significant decrease in the success of germination, albeit the fact that those that survived saw a significant increase in their growth rate without any subsequent exposure. More research is needed to assess the effects of THz radiation on seeds, but the technology seems promising for use in agriculture, especially seeing the daunting effects of climate change on crop yields.

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Literature
1.
go back to reference Sun, Q., et al.: Recent advances in terahertz technology for biomedical applications. Quant. Imaging Med. Surg. 7, 345 (2017)CrossRef Sun, Q., et al.: Recent advances in terahertz technology for biomedical applications. Quant. Imaging Med. Surg. 7, 345 (2017)CrossRef
2.
go back to reference Macouillard-Poulletier de Gannes, F., et al.: Mitochondrial impairment and recovery after heat shock treatment in a human microglial cell line. Neurochem. Int. 36, 233–241 (2000) Macouillard-Poulletier de Gannes, F., et al.: Mitochondrial impairment and recovery after heat shock treatment in a human microglial cell line. Neurochem. Int. 36, 233–241 (2000)
3.
go back to reference Dewey, W.C., et al.: Cellular responses to combinations of hyperthermia and radiation. Radiology 123, 463–474 (1977)CrossRef Dewey, W.C., et al.: Cellular responses to combinations of hyperthermia and radiation. Radiology 123, 463–474 (1977)CrossRef
4.
go back to reference Olshevskaya, J.S., et al.: Effect of terahertz electromagnetic waves on neurons systems. In: Computational Technologies in Electrical and Electronics Engineering (2008) Olshevskaya, J.S., et al.: Effect of terahertz electromagnetic waves on neurons systems. In: Computational Technologies in Electrical and Electronics Engineering (2008)
5.
go back to reference Wilmink, G.J., et al.: Quantitative investigation of the bioeffects associated with terahertz radiation. In: Optical Interactions with Tissues and Cells XXI (2010) Wilmink, G.J., et al.: Quantitative investigation of the bioeffects associated with terahertz radiation. In: Optical Interactions with Tissues and Cells XXI (2010)
6.
go back to reference Berns, M., et al.: Free electron laser irradiation at 200 microns affects DNA synthesis in living cells. In: Proceedings of the National Academy of Sciences of the United States of America (1990) Berns, M., et al.: Free electron laser irradiation at 200 microns affects DNA synthesis in living cells. In: Proceedings of the National Academy of Sciences of the United States of America (1990)
7.
go back to reference Zalyubovskaya, N.P., et al.: To biological activity of radiation in millimeter and submillimeter ranges. Eksperimental’noy i Klinicheskoy Radiologii 6, 202–205 (1970) Zalyubovskaya, N.P., et al.: To biological activity of radiation in millimeter and submillimeter ranges. Eksperimental’noy i Klinicheskoy Radiologii 6, 202–205 (1970)
8.
go back to reference Hadjiloucas, S., Chahal, M., Bowen, J.: Preliminary results on the non-thermal effects of 200–350 GHz radiation on the growth rate of S. cerevisiae cells in microcolonies. Phys. Med. Biol. 47, 3831 (2002) Hadjiloucas, S., Chahal, M., Bowen, J.: Preliminary results on the non-thermal effects of 200–350 GHz radiation on the growth rate of S. cerevisiae cells in microcolonies. Phys. Med. Biol. 47, 3831 (2002)
9.
go back to reference Clothier, R.H., Bourne, N.: Effects of THz exposure on human primary keratinocyte differentiation and viability. J. Biol. Phys. 29, 179–185 (2003)CrossRef Clothier, R.H., Bourne, N.: Effects of THz exposure on human primary keratinocyte differentiation and viability. J. Biol. Phys. 29, 179–185 (2003)CrossRef
10.
go back to reference Xiong, S., Shaomin, P.: Influence of submillimeter laser radiation on the growth of paddy rice. Appl. Laser 6, 33–37 (1986) Xiong, S., Shaomin, P.: Influence of submillimeter laser radiation on the growth of paddy rice. Appl. Laser 6, 33–37 (1986)
11.
go back to reference Xu, M., Xiong, S.: FIR laser irradiation in wheat. Appl. Infrared Optoelectron. 4, 30 (1988) Xu, M., Xiong, S.: FIR laser irradiation in wheat. Appl. Infrared Optoelectron. 4, 30 (1988)
12.
go back to reference Webb, S.J., Dodds, D.D.: Inhibition of bacterial cell growth by 136 GC microwaves. Nature 218, 374–375 (1968) Webb, S.J., Dodds, D.D.: Inhibition of bacterial cell growth by 136 GC microwaves. Nature 218, 374–375 (1968)
13.
go back to reference Giles, J.P., et al.: Investigating the effects of terahertz radiation on bacillus subtilis. SPIE (2012) Giles, J.P., et al.: Investigating the effects of terahertz radiation on bacillus subtilis. SPIE (2012)
14.
go back to reference Rosental, L., Nonogaki, H., Fait, A.: Activation and Regulation of Primary Metabolism During Seeds Germination. Cambridge University Press, Cambridge (2014)CrossRef Rosental, L., Nonogaki, H., Fait, A.: Activation and Regulation of Primary Metabolism During Seeds Germination. Cambridge University Press, Cambridge (2014)CrossRef
Metadata
Title
The Effects of Terahertz Radiation on the Development of Biological Organisms I: Wheat Seeds
Author
Robin-Cristian Bucur-Portase
Copyright Year
2022
DOI
https://doi.org/10.1007/978-3-030-92328-0_63

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