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Stimulation of luminescence of mycelium of luminous fungus Neonothopanus nambi by ionizing radiation
Authors:Tatiana V. Kobzeva  Anatoly R. Melnikov  Tatiana Y. Karogodina  Samat B. Zikirin  Dmitri V. Stass  Yuri N. Molin  Emma K. Rodicheva  Svetlana E. Medvedeva  Alexey P. Puzyr  Andrey A. Burov  Vladimir S. Bondar  Joseph I. Gitelson
Affiliation:1. Institute of Chemical Kinetics and Combustion SB RAS, Novosibirsk, Russia;2. Novosibirsk State University, Novosibirsk, Russia;3. Institute of Biophysics SB RAS, Krasnoyarsk, Russia;4. Siberian Federal University, Krasnoyarsk, Russia;5. Special Design‐Technology Bureau “Nauka” SB RAS, Krasnoyarsk, Russia
Abstract:The luminescent system of higher luminous fungi is not fully understood and the enzyme/substrate pair of the light emission reaction has not been isolated. It was suggested that luminescence of fungi involves oxidase‐type enzymes, and reactive oxygen species are important for fungal light production. Generation of reactive oxygen species can be stimulated by ionizing irradiation, which has not been studied for luminous fungi. We report the effect of X‐irradiation on the luminescence of fungus Neonothopanus nambi. Experiments were performed with mycelium on a home‐built setup based on an X‐ray tube and monochromator/photomultiplier tube. Application of X‐rays does not change the emission spectrum, but after approximately 20 min of continuous irradiation, light production from unsupported mycelium starts growing and increases up to approximately five times. After peaking, its level decreases irrespective of the presence of X‐irradiation. After staying at a certain level, light production collapses to zero, which is not related to the drying of the mycelium or thermal impact of radiation. The observed shape of kinetics is characteristic of a multistage and/or chain reaction. The time profile of light production must reflect the current levels of radicals present in the system and/or the activity of enzyme complexes involved in light production. Copyright © 2014 John Wiley & Sons, Ltd.
Keywords:Higher luminous fungi  Neonothopanus nambi  ionizing irradiation  reactive oxygen species  lipid peroxidation
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