TY - JOUR
T1 - Feed supplementation with molybdenum complexes improves honey bee health
AU - Fuior, Arcadie
AU - Colin-Duchevet, Loic
AU - Cebotari, Valentina
AU - Noel, Amelie
AU - Ribaud, Isabelle
AU - Gerard, Isabelle
AU - Garbuz, Olga
AU - Fregnaux, Mathieu
AU - Lopez, Xavier
AU - Larcher, Virginie
AU - Shestopalov, Michael A.
AU - Solovieva, Anastasiya O.
AU - Pozmogova, Tatiana N.
AU - Gliga, Olesea
AU - Railean, Nadejda
AU - Cochard, Precillia
AU - Poirot, Benjamin
AU - Charistos, Leonidas
AU - Hatjina, Fani
AU - Somogyi, Andrea
AU - Medjoubi, Kadda
AU - Gaumer, Sebastien
AU - Gulea, Aurelian
AU - Toderas, Ion
AU - Sandoz, Jean-Christophe
AU - Floquet, Sebastien
PY - 2025
Y1 - 2025
N2 - This study investigates the effects of dietary supplementation with molybdenum-based compounds on honey bee health. Among a series of dinuclear Mo(v) complexes, the most stable and non-toxic complexes were selected and tested over an extensive eight-year field campaign involving more than 700 beehives across diverse environmental conditions in Moldova, France, Greece and the United States. In a first part, we established that the administration of a few milligrams of the compounds Na-Mo2O4-EDTA or Li-Mo2O4-EDTA in spring or autumn enhanced colony performance: queen fecundity, hygienic behaviour, and honey production increased, while Varroa destructor infestation rates and winter losses were substantially reduced. A second part of the work focused on understanding these effects in beehives. Hive monitoring showed that the Mo-containing syrup can be consumed over 1.5 months and is well assimilated by larvae and workers. In particular, Mo levels increased significantly in the head of the bees. X-ray fluorescence measurements demonstrated that Na-Mo2O4-EDTA increases Mo levels in the brain, neurolemma and hypopharyngeal glands, which play a crucial role in honey bee health. The metabolism of Mo complexes was addressed using X-ray photoelectron spectroscopy (XPS) on bee f ae ces, which revealed that the complexes are oxidized into Mo(vi), suggesting that Mo complexes may function as antioxidant agents in bees. These findings offer promising solutions for the beekeeping industry, struggling with weakening honey bee colonies.
AB - This study investigates the effects of dietary supplementation with molybdenum-based compounds on honey bee health. Among a series of dinuclear Mo(v) complexes, the most stable and non-toxic complexes were selected and tested over an extensive eight-year field campaign involving more than 700 beehives across diverse environmental conditions in Moldova, France, Greece and the United States. In a first part, we established that the administration of a few milligrams of the compounds Na-Mo2O4-EDTA or Li-Mo2O4-EDTA in spring or autumn enhanced colony performance: queen fecundity, hygienic behaviour, and honey production increased, while Varroa destructor infestation rates and winter losses were substantially reduced. A second part of the work focused on understanding these effects in beehives. Hive monitoring showed that the Mo-containing syrup can be consumed over 1.5 months and is well assimilated by larvae and workers. In particular, Mo levels increased significantly in the head of the bees. X-ray fluorescence measurements demonstrated that Na-Mo2O4-EDTA increases Mo levels in the brain, neurolemma and hypopharyngeal glands, which play a crucial role in honey bee health. The metabolism of Mo complexes was addressed using X-ray photoelectron spectroscopy (XPS) on bee f ae ces, which revealed that the complexes are oxidized into Mo(vi), suggesting that Mo complexes may function as antioxidant agents in bees. These findings offer promising solutions for the beekeeping industry, struggling with weakening honey bee colonies.
UR - https://res.slu.se/id/publ/145088
U2 - 10.1039/D5QI00878F
DO - 10.1039/D5QI00878F
M3 - Journal article
SN - 2052-1545
VL - 12
SP - 7107
EP - 7122
JO - Inorganic Chemistry Frontiers
JF - Inorganic Chemistry Frontiers
IS - 22
ER -