ME_2025v16n1

Molecular Entomology, 2025, Vol.16, No.1, 1-10 http://emtoscipublisher.com/index.php/me 9 Blagov D.A., and Kolchaeva I.N., 2022, The use of protein and other biologically active substances in feeding honey bees, The Agrarian Scientific Journal, 2022: 54-57. https://doi.org/10.28983/asj.y2022i12pp54-57 Branchiccela B., Castelli L., Corona M., Díaz-Cetti S., Invernizzi C., Escalera G., Mendoza Y., Santos E., Silva C., Zunino P., and Antúnez K., 2019, Impact of nutritional stress on the honeybee colony health, Scientific Reports, 9(1): 10156. https://doi.org/10.1038/s41598-019-46453-9 Camilli M.P., Barros D.C., Justulin L.A., Tse M.L., and Orsi R.D.O., 2021, Protein feed stimulates the development of mandibular glands of honey bees (Apis mellifera), Journal of Apicultural Research, 60(1): 165-171. https://doi.org/10.1080/00218839.2020.1778922 Cengiz M., Yazici K., and Arslan S., 2019, The effect of the supplemental feeding of queen rearing colonies on the reproductive characteristics of queen bees (Apis mellifera L.) reared from egg and different old of larvae, Kafkas Universitesi Veteriner Fakultesi Dergisi, 25: 849-855. DeGrandi-Hoffman G., Chen Y., Rivera R., Carroll M., Chambers M., Hidalgo G., and Jong E.W., 2015, Honey bee colonies provided with natural forage have lower pathogen loads and higher overwinter survival than those fed protein supplements, Apidologie, 47: 186-196. https://doi.org/10.1007/s13592-015-0386-6 Hoover S.E., Ovinge L.P., and Kearns J.D., 2022, Consumption of supplemental spring protein feeds by western honey bee (hymenoptera: apidae) colonies: effects on colony growth and pollination potential, Journal of Economic Entomology, 115(2): 417-429. https://doi.org/10.1093/jee/toac006 Jovanović N.M., Glavinić U., Delić B., Vejnović B., Aleksic N., Mladjan V., and Stanimirović Z., 2021, Plant-based supplement containing B-complex vitamins can improve bee health and increase colony performance, Preventive Veterinary Medicine, 190: 105322. https://doi.org/10.1016/j.prevetmed.2021.105322 Kim H., Frunze O., Lee J.H., and Kwon H.W., 2024, Enhancing honey bee health: evaluating pollen substitute diets in field and cage experiments, Insects, 15(5): 361. Lata P., Prasad S., and Gupta G., 2023, Artificial diet alternatives or supplements for healthy honey beekeeping, Current Journal of Applied Science and Technology, 42(46): 91-100. https://doi.org/10.9734/cjast/2023/v42i464298 Li J., 2024, Threats to honeybee populations: pathogens, pesticides, and environmental changes, Molecular Pathogens, 15(3): 129-141. https://doi.org/10.5376/mp.2024.15.0013 Milone J.P., Chakrabarti P., Sagili R.R., and Tarpy D.R., 2021, Colony-level pesticide exposure affects honey bee (Apis mellifera L.) royal jelly production and nutritional composition, Chemosphere, 263: 128183. https://doi.org/10.1016/j.chemosphere.2020.128183 Mortensen A., Jack C., Bustamante T., Schmehl D., and Ellis J., 2018, Effects of supplemental pollen feeding on honey bee (hymenoptera: apidae) colony strength and Nosema spp. Infection, Journal of Economic Entomology, 112(1): 60-66. https://doi.org/10.1093/jee/toy341 O’Neal S., Anderson T.D., and Wu-Smart J.Y., 2018, Interactions between pesticides and pathogen susceptibility in honey bees, Current Opinion in Insect Science, 26: 57-62. https://doi.org/10.1016/j.cois.2018.01.006 Paiva J.P.L.M., Paiva H.M., Esposito E., and Morais M.M., 2016, On the effects of artificial feeding on bee colony dynamics: a mathematical model, PLoS One, 11(11): e0167054. https://doi.org/10.1371/journal.pone.0167054 Přidal A., Musila J., and Svoboda J., 2023, Condition and honey productivity of honeybee colonies depending on type of supplemental feed for overwintering, Animals: an Open Access Journal from MDPI, 13(3): 323. https://doi.org/10.3390/ani13030323 Quinlan G., Döke M.A., Ortiz-Alvarado Y., Rodriguez-Gomez N., Koru Y.B., and Underwood R., 2023, Carbohydrate nutrition associated with health of overwintering honey bees, Journal of Insect Science, 23(6): 16. https://doi.org/10.1093/jisesa/iead084 Requier F., Jowanowitsch K.K., Kallnik K., and Steffan‐Dewenter I., 2019, Limitation of complementary resources affects colony growth, foraging behavior, and reproduction in bumble bees, Ecology, 101(3): e02946. https://doi.org/10.1002/ecy.2946 Rousseau A., and Giovenazzo P., 2016, Optimizing drone fertility with spring nutritional supplements to honey bee (hymenoptera: apidae) colonies, Journal of Economic Entomology, 109: 1009-1014. https://doi.org/10.1093/jee/tow056 Sarioğlu-Bozkurt A., Topal E., Güneş N., Üçeş E., Cornea-Cipcigan M., Coşkun İ., Cuibus L., and Mărgăoan R., 2022, Changes in vitellogenin (Vg) and stress protein (HSP 70) in honey bee (Apis mellifera anatoliaca) groups under different diets linked with physico-chemical, antioxidant and fatty and amino acid profiles, Insects, 13(11): 985. https://doi.org/10.3390/insects13110985

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