Cargando…

Influence of Magnetic Field with Schumann Resonance Frequencies on Photosynthetic Light Reactions in Wheat and Pea

Photosynthesis is an important target of action of numerous environmental factors; in particular, stressors can strongly affect photosynthetic light reactions. Considering relations of photosynthetic light reactions to electron and proton transport, it can be supposed that extremely low frequency ma...

Descripción completa

Detalles Bibliográficos
Autores principales: Sukhov, Vladimir, Sukhova, Ekaterina, Sinitsyna, Yulia, Gromova, Ekaterina, Mshenskaya, Natalia, Ryabkova, Anastasiia, Ilin, Nikolay, Vodeneev, Vladimir, Mareev, Evgeny, Price, Colin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7828558/
https://www.ncbi.nlm.nih.gov/pubmed/33451018
http://dx.doi.org/10.3390/cells10010149
_version_ 1783641038104035328
author Sukhov, Vladimir
Sukhova, Ekaterina
Sinitsyna, Yulia
Gromova, Ekaterina
Mshenskaya, Natalia
Ryabkova, Anastasiia
Ilin, Nikolay
Vodeneev, Vladimir
Mareev, Evgeny
Price, Colin
author_facet Sukhov, Vladimir
Sukhova, Ekaterina
Sinitsyna, Yulia
Gromova, Ekaterina
Mshenskaya, Natalia
Ryabkova, Anastasiia
Ilin, Nikolay
Vodeneev, Vladimir
Mareev, Evgeny
Price, Colin
author_sort Sukhov, Vladimir
collection PubMed
description Photosynthesis is an important target of action of numerous environmental factors; in particular, stressors can strongly affect photosynthetic light reactions. Considering relations of photosynthetic light reactions to electron and proton transport, it can be supposed that extremely low frequency magnetic field (ELFMF) may influence these reactions; however, this problem has been weakly investigated. In this paper, we experimentally tested a hypothesis about the potential influence of ELFMF of 18 µT intensity with Schumann resonance frequencies (7.8, 14.3, and 20.8 Hz) on photosynthetic light reactions in wheat and pea seedlings. It was shown that ELFMF decreased non-photochemical quenching in wheat and weakly influenced quantum yield of photosystem II at short-term treatment; in contrast, the changes in potential and effective quantum yields of photosystem II were observed mainly under chronic action of ELFMF. It is interesting that both short-term and chronic treatment decreased the time periods for 50% activation of quantum yield and non-photochemical quenching under illumination. Influence of ELFMF on pea was not observed at both short-term and chronic treatment. Thus, we showed that ELFMF with Schumann resonance frequencies could influence photosynthetic light processes; however, this effect depends on plant species (wheat or pea) and type of treatment (short-term or chronic).
format Online
Article
Text
id pubmed-7828558
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-78285582021-01-25 Influence of Magnetic Field with Schumann Resonance Frequencies on Photosynthetic Light Reactions in Wheat and Pea Sukhov, Vladimir Sukhova, Ekaterina Sinitsyna, Yulia Gromova, Ekaterina Mshenskaya, Natalia Ryabkova, Anastasiia Ilin, Nikolay Vodeneev, Vladimir Mareev, Evgeny Price, Colin Cells Article Photosynthesis is an important target of action of numerous environmental factors; in particular, stressors can strongly affect photosynthetic light reactions. Considering relations of photosynthetic light reactions to electron and proton transport, it can be supposed that extremely low frequency magnetic field (ELFMF) may influence these reactions; however, this problem has been weakly investigated. In this paper, we experimentally tested a hypothesis about the potential influence of ELFMF of 18 µT intensity with Schumann resonance frequencies (7.8, 14.3, and 20.8 Hz) on photosynthetic light reactions in wheat and pea seedlings. It was shown that ELFMF decreased non-photochemical quenching in wheat and weakly influenced quantum yield of photosystem II at short-term treatment; in contrast, the changes in potential and effective quantum yields of photosystem II were observed mainly under chronic action of ELFMF. It is interesting that both short-term and chronic treatment decreased the time periods for 50% activation of quantum yield and non-photochemical quenching under illumination. Influence of ELFMF on pea was not observed at both short-term and chronic treatment. Thus, we showed that ELFMF with Schumann resonance frequencies could influence photosynthetic light processes; however, this effect depends on plant species (wheat or pea) and type of treatment (short-term or chronic). MDPI 2021-01-13 /pmc/articles/PMC7828558/ /pubmed/33451018 http://dx.doi.org/10.3390/cells10010149 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sukhov, Vladimir
Sukhova, Ekaterina
Sinitsyna, Yulia
Gromova, Ekaterina
Mshenskaya, Natalia
Ryabkova, Anastasiia
Ilin, Nikolay
Vodeneev, Vladimir
Mareev, Evgeny
Price, Colin
Influence of Magnetic Field with Schumann Resonance Frequencies on Photosynthetic Light Reactions in Wheat and Pea
title Influence of Magnetic Field with Schumann Resonance Frequencies on Photosynthetic Light Reactions in Wheat and Pea
title_full Influence of Magnetic Field with Schumann Resonance Frequencies on Photosynthetic Light Reactions in Wheat and Pea
title_fullStr Influence of Magnetic Field with Schumann Resonance Frequencies on Photosynthetic Light Reactions in Wheat and Pea
title_full_unstemmed Influence of Magnetic Field with Schumann Resonance Frequencies on Photosynthetic Light Reactions in Wheat and Pea
title_short Influence of Magnetic Field with Schumann Resonance Frequencies on Photosynthetic Light Reactions in Wheat and Pea
title_sort influence of magnetic field with schumann resonance frequencies on photosynthetic light reactions in wheat and pea
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7828558/
https://www.ncbi.nlm.nih.gov/pubmed/33451018
http://dx.doi.org/10.3390/cells10010149
work_keys_str_mv AT sukhovvladimir influenceofmagneticfieldwithschumannresonancefrequenciesonphotosyntheticlightreactionsinwheatandpea
AT sukhovaekaterina influenceofmagneticfieldwithschumannresonancefrequenciesonphotosyntheticlightreactionsinwheatandpea
AT sinitsynayulia influenceofmagneticfieldwithschumannresonancefrequenciesonphotosyntheticlightreactionsinwheatandpea
AT gromovaekaterina influenceofmagneticfieldwithschumannresonancefrequenciesonphotosyntheticlightreactionsinwheatandpea
AT mshenskayanatalia influenceofmagneticfieldwithschumannresonancefrequenciesonphotosyntheticlightreactionsinwheatandpea
AT ryabkovaanastasiia influenceofmagneticfieldwithschumannresonancefrequenciesonphotosyntheticlightreactionsinwheatandpea
AT ilinnikolay influenceofmagneticfieldwithschumannresonancefrequenciesonphotosyntheticlightreactionsinwheatandpea
AT vodeneevvladimir influenceofmagneticfieldwithschumannresonancefrequenciesonphotosyntheticlightreactionsinwheatandpea
AT mareevevgeny influenceofmagneticfieldwithschumannresonancefrequenciesonphotosyntheticlightreactionsinwheatandpea
AT pricecolin influenceofmagneticfieldwithschumannresonancefrequenciesonphotosyntheticlightreactionsinwheatandpea