Glavan_2017_Arch.Environ.Contam.Toxicol_72_471

Reference

Title : Feeding Preference and Sub-chronic Effects of ZnO Nanomaterials in Honey Bees (Apis mellifera carnica) - Glavan_2017_Arch.Environ.Contam.Toxicol_72_471
Author(s) : Glavan G , Milivojevic T , Bozic J , Sepcic K , Drobne D
Ref : Archives of Environmental Contamination & Toxicology , 72 :471 , 2017
Abstract :

The extensive production of zinc oxide (ZnO) nanomaterials (NMs) may result in high environmental zinc burdens. Honeybees need to have special concern due to their crucial role in pollination. Our previous study indicated that low concentrations of ZnO NMs, corresponding to 0.8 mg Zn/mL, have a neurotoxic potential for honeybees after a 10-day oral exposure. Present study was designed to investigate the effect of a short, dietary exposure of honeybees to ZnO NMs at concentrations 0.8-8 mg Zn/mL on consumption rate, food preference, and two enzymatic biomarkers-a stress-related glutathione S-transferase (GST) and the neurotoxicity biomarker acetylcholinesterase (AChE). Consumption rate showed a tendency toward a decrease feeding with the increasing concentrations of ZnO NMs. None of Zn NMs concentrations caused alterations in mortality rate and in the activities of brain GST and AChE. To investigate if there is an avoidance response against Zn presence in food, 24-h two-choice tests were performed with control sucrose diet versus sucrose suspensions with different concentrations of ZnO NMs added. We demonstrated that honeybees prefer ZnO NMs ZnO NMs containing suspensions, even at highest Zn concentrations tested, compared with the control diet. This indicates that they might be able to perceive the presence of ZnO NMs in sucrose solution. Because honeybees feed frequently the preference towards ZnO NMs might have a high impact on their survival when exposed to these NMs.

PubMedSearch : Glavan_2017_Arch.Environ.Contam.Toxicol_72_471
PubMedID: 28271210

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Citations formats

Glavan G, Milivojevic T, Bozic J, Sepcic K, Drobne D (2017)
Feeding Preference and Sub-chronic Effects of ZnO Nanomaterials in Honey Bees (Apis mellifera carnica)
Archives of Environmental Contamination & Toxicology 72 :471

Glavan G, Milivojevic T, Bozic J, Sepcic K, Drobne D (2017)
Archives of Environmental Contamination & Toxicology 72 :471