bioRxiv Science⌕ Search

bioRxiv · 10.1101/2025.02.25.640117

Food supplementation with molybdenum complexes improves honey bee health

Abstract

In this study, we evaluated the impact of supplementing honey bee feed with molybdenum-based compounds. Among a dozen of dinuclear Mo(V) complexes, we first selected the most stable and non-toxic complexes, which were tested as food supplements in an extensive eight-year campaign involving more than 700 beehives across various environmental conditions in Moldova, France, Greece and USA. This unprecedented field campaign revealed that a few milligrams of compounds Na-Mo2O4-EDTA or Li-Mo2O4-EDTA provided in spring or autumn, increased queen fecundity, hygienic behavior, and honey production, while infestation rates of worker bees and brood by the mite Varroa destructor, and mortality rates in winter were dramatically reduced. Hive monitoring showed that the Mo-containing syrup can be consumed over 1.5 months and is well assimilated by larvae and workers within the hive. 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 brain, neurolemma and hypopharyngeal glands. The metabolism of Mo complexes was addressed using X-Ray photoelectron spectroscopy (XPS) on bee faeces, which revealed that the complexes are oxidized into Mo(VI) species and thus suggesting that Mo complexes may function as antioxidant agents in bees. These findings offer promising solutions for the beekeeping industry, which is struggling with weakening honey bee colonies. Significance StatementHoney bees play a crucial role as pollinators. Unfortunately, colony losses have increased significantly over the past decades through the action of multiple environmental stressors. Currently, solutions are sought to strengthen bees health and resilience. This study shows that feeding bees with small amounts of trace elements like molybdenum can improve honey bee condition and increase the production of hive products. Through an unprecedented series of field and lab tests it notably demonstrates that molybdenum complexes are i) non-toxic, ii) consumed by bees over several generations, iii) assimilated particularly in the brain and hypopharyngeal glands, iv) acting as antioxidant. These results open new avenues for using trace elements to improve pollinator health.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Floquet, S., Fuior, A., Colin-Duchevet, L., Cebotari, V., Noel, A., Ribaud, I., Gerard, I., Garbuz, O., Fregnaux, M., Lopez, J., Larcher, V., Shestopalov, M. A., Solovieva, A. O., Pozmogova, T. N., Gliga, O., Railean, N., Cochard, P., Poirot, B., Charistos, L., Hatjina, F., Somogyi, A., Medjoubi, K., Gaumer, S., Gulea, A., Toderas, I., Sandoz, J.-C.. 2025-02-28. Food supplementation with molybdenum complexes improves honey bee health. https://doi.org/10.1101/2025.02.25.640117

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related preprints

Increasing threat: Rhynchophorus ferrugineus invaded mainland America through Uruguay.

Rhynchophorus ferrugineus (Olivier) (Coleoptera: Curculionidae) is one of the most dangerous palm pests worldwide. Here we report the invasion process of R. ferrugineus in Uruguay. Beyond morphological and molecular identification, we infer the geographic origin of the invasive population, describe the succession of introduced and native palms attacked, provide an easy-to-use key to differentiate the invader R. ferrugineus from the native Rhynchophorus palmarum, and model the ecological niche of R. ferrugineus in Uruguay and neighboring countries. First detected in 2022, the Uruguayan population of the weevil is the first to establish on mainland America, following the earlier island records from Curacao and Aruba. Phylogenetic analysis showed that the Uruguayan R. ferrugineus sequences clustered within a single clade, most closely related to sequences from southern China, and clearly distinct from the sequences of Curacao and Aruba, indicating at least two independent introduction events into the Americas from different source regions. After four years, R. ferrugineus has spread across an area of nearly 80,000 square kilometers and in January 2026 it reached Argentina, invading two points near the border with Uruguay. Over the first two years after the invasion, attacks focused on Phoenix canariensis, yet the three most common native palms in Uruguay, Butia odorata, Butia yatay, and Syagrus romanzoffiana, are currently being attacked. The diagnostic key to differentiate the pair R. palmarum / R. ferrugineus is based on three characters: the tip of the rostrum, the tegminal plate, and the ratio between the interocular space and the width of the rostrum at the base. Niche models showed that Uruguay and the neighboring areas of Argentina and Brazil are suitable for R. ferrugineus, and these are precisely the areas where both the highly susceptible P. canariensis and the native B. odorata, B. yatay, and S. romanzoffiana are present. Neighboring countries should therefore be prepared for the expansion of R. ferrugineus in the short term.

zoology↗

The evaluation of the SumiOne™ spatial emanators against wild Anopheles funestus in experimental huts in Siaya County, western Kenya

Background Spatial Emanators (SEs) are a promising tool for complementing existing malaria vector control interventions. In 2025, the World Health Organization (WHO) issued a conditional recommendation for SEs, and two transfluthrin-based products were added to the WHO Prequalification List. As SEs are scaled up, additional products are needed to ensure reliable supply, competitive pricing, and continued innovation. Methods This study evaluated the efficacy of SumiOne SE, containing 10% metofluthrin, in experimental huts in Siaya County, western Kenya. SumiOne SE efficacy was evaluated in six experimental huts, three intervention and three control, using human landing catches (HLCs) and aspiration. Collections were conducted in two 12-night phases, alternating between HLC and aspiration every six nights. Outcomes included reductions in human landing rates, density, exophily and blood feeding inhibition of Anopheles mosquitoes. Results SumiOne SE significantly reduced indoor densities of An. funestus with 63% protective effect (IRR = 0.37, 95% CI: 0.20-0.69, p = 0.0087). Overall An. funestus density (indoor and outdoor combined) was reduced by 58% (IRR=0.42, 95% CI: 0.22-0.79; p=0.0222). The rate of exophily of An. funestus exiting was 34% (95% CI: 27-42) in the intervention huts compared to 2% (95% CI: 1-4) in the control huts (p< 0.0001). Blood feeding inhibition for An. funestus was 46% with 44% (95% CI: 36-51) of the collected mosquitoes being blood fed in the intervention huts compared to 81% (95% CI: 76-86) blood fed in the control huts, (p<0.0001). Conclusion These findings support SumiOne SEs potential as a complementary vector control tool, alongside existing core interventions such as Insecticide Treated Nets and Indoor Residual Spraying, particularly in contexts where additional protection is needed.

zoology↗

Phylogeny is not taxonomy: lessons on higher classification from turtle and whale barnacles (Cirripedia: Coronuloidea)

Phylogeny and taxonomy are related but not identical: phylogeny estimates common ancestry, whereas taxonomy must also provide diagnosable, stable, informative, and useful classifications. We examine this distinction using turtle and whale barnacles of the superfamily Coronuloidea, a group with an extensive fossil record, marked ecological specialization, a long history of morphology-based classification, and a recent topology-driven reclassification that merged recognized higher taxa to preserve monophyly. These changes reduced diagnosability and biological coherence, weakened historical continuity, and relied on placements insufficiently tested against morphological and phylogenetic evidence. Our reanalysis of published molecular datasets shows that critical relationships are sensitive to marker composition and taxon sampling. Together with morphological considerations on extant and fossil forms, these results indicate that topology alone is insufficient for coherent higher classification. We argue that higher taxa should be evaluated using complementary criteria: diagnosability, stability, utility, and monophyly, rather than by mechanically translating a preferred tree into Linnaean ranks.

zoology↗