Oxidative Stress Response of Honey Bee Colonies (Apis mellifera L.) during Long-Term Exposure at a Frequency of 900 MHz under Field Conditions

Author:

Vilić Marinko1ORCID,Žura Žaja Ivona1,Tkalec Mirta2,Tucak Perica3,Malarić Krešimir4,Popara Nato5ORCID,Žura Nikolino6,Pašić Selim5ORCID,Gajger Ivana Tlak7ORCID

Affiliation:

1. Department of Physiology and Radiobiology, Faculty of Veterinary Medicine, University of Zagreb, 10000 Zagreb, Croatia

2. Department of Biology, Faculty of Science, University of Zagreb, 10000 Zagreb, Croatia

3. State Inspectorate of Republic of Croatia, 10000 Zagreb, Croatia

4. Department of Communication and Space Technologies, Faculty of Electrical Engineering and Computing, University of Zagreb, 10000 Zagreb, Croatia

5. Department of Physics, Faculty of Veterinary Medicine, University of Zagreb, 10000 Zagreb, Croatia

6. Faculty of Veterinary Medicine, University of Zagreb, 10000 Zagreb, Croatia

7. Department for Biology and Pathology of Fish and Bees, Faculty of Veterinary Medicine, University of Zagreb, 10000 Zagreb, Croatia

Abstract

In this study, oxidative stress and lipid peroxidation in honey bee larvae, pupae and the midguts of adult bees were investigated during a one-year exposure to radiofrequency electromagnetic fields (RF-EMFs) at a frequency of 900 MHz under field conditions. The experiment was carried out on honey bee colonies at three locations with electric field levels of 30 mV m−1, 70 mV m−1 and 1000 mV m−1. Antioxidant enzymes, glutathione-S-transferase (GST), catalase (CAT) and superoxide dismutase (SOD) and thiobarbituric acid reactive substances (TBARS) as indicators of lipid peroxidation were measured spectrophotometrically. The GST activity within the same developmental stage showed no significant differences regardless of electric field level or sampling time. The highest GST activity was found in the pupae, followed by activity in the larvae and midguts. Both CAT activity and TBARS concentration were the highest in the midguts, regardless of field level and sampling time. The larvae showed a significantly higher TBARS concentration at the location with an electric field level of 1000 mV m−1 compared to the locations with lower levels. Our results show that RF-EMFs at a frequency of 900 MHz can cause oxidative stress in honey bees, with the larval stage being more sensitive than the pupal stage, but there was no linear relationship between electric field level and effect in any of the developmental stages.

Publisher

MDPI AG

Reference51 articles.

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