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A nutritionally complete pollen-replacing diet protects honeybee colonies during stressful commercial pollination—requirement for isofucosterol
Thierry Bogaert, Taylor Reams, Isabelle Maillet, Kelly Kulhanek, Maarten Duyck, Frank Eertmans, Anne Marie Fauvel, Brandon Hopkins and Jan Bogaert Proceedings of the Royal Society B: Biological Sciences 292(2045) (2025) https://doi.org/10.1098/rspb.2024.3078
Centrality of Hygienic Honey Bee Workers in Colony Social Networks
Task specific behavior of Indian honey bee (
Apis cerana indica
) workers
Seydur Rahman, Sudhanya Ray Hajong, Nibedita Talukdar, Suraj Chetri and Snigdha Chakrabarty Journal of Apicultural Research 64(3) 1021 (2025) https://doi.org/10.1080/00218839.2024.2361945
An Overview of the Adverse Impacts of Old Combs on Honeybee Colonies and Recommended Beekeeping Management Strategies
Residue based concentrations of deltamethrin and spinosad impair the survival, morphology and immunity of Apis mellifera larvae
Gurleen Kaur, Amandeep Singh, Rohit Sharma, Shyamli Dogra, Shushant Tuteja, Ashun Chaudhary and Randeep Singh International Journal of Tropical Insect Science 45(3) 1143 (2025) https://doi.org/10.1007/s42690-025-01500-z
Non-invasive honeybee colony monitoring via robotic mapping of combs in observation hives
Jiří Janota, Jan Blaha, Martin Stefanec, Tomáš Rouček, Jiří Ulrich, Laurenz Alexander Fedotoff, Fatemeh Rekabi-Bana, Farshad Arvin, Thomas Schmickl and Tomáš Krajník Computers and Electronics in Agriculture 239 111031 (2025) https://doi.org/10.1016/j.compag.2025.111031
Deformed wing virus affects foraging success and foraging specialization of honeybee workers
The third version of an agent‐based honey bee colony model (ApisRAM.03) for the risk assessment of pesticides
Xiaodong Duan, Trine Poulsen, Liyan Xie, Luna Kondrup Marcussen and Christopher John Topping EFSA Supporting Publications 22(2) (2025) https://doi.org/10.2903/sp.efsa.2025.EN-9293
Spatio-temporal variation in pollen collected by honey bees (Apis mellifera) in rural-urban mosaic landscapes in Northern Europe
Pollen deprivation stimulates Honeybees Apis mellifera to induce early flowering in tomato plants
Shahmshad Ahmed Khan, Muhammad Tanveer, Kit Prendergast, Sadia Malik, Taimoor Hussain, Stepan Kubik, Pavla Vachova and Milan Skalicky Scientia Horticulturae 333 113265 (2024) https://doi.org/10.1016/j.scienta.2024.113265
Does the use of chlorantraniliprole during queen development adversely impact health and viability?
Qibao He, Ya Wei, Yancan Wu, Qing Yang, Yaohui Wang, Quan Gao, Jinjing Xiao, Linsheng Yu and Haiqun Cao Pesticide Biochemistry and Physiology 202 105920 (2024) https://doi.org/10.1016/j.pestbp.2024.105920
Stress-induced loss of social resilience in honeybee colonies and its implications on fitness
Zeynep N. Ulgezen, Frank Van Langevelde and Coby van Dooremalen Proceedings of the Royal Society B: Biological Sciences 291(2014) (2024) https://doi.org/10.1098/rspb.2023.2460
Sex-specific element accumulation in honey bees (Apis mellifera)
Composition and Quality of Honey Bee Feed: The Methodology and Monitoring of Candy Boards
Soraia I. Falcão, Michel Bocquet, Robert Chlebo, João C. M. Barreira, Alessandra Giacomelli, Maja Ivana Smodiš Škerl and Giancarlo Quaglia Animals 14(19) 2836 (2024) https://doi.org/10.3390/ani14192836
Honey bee colonies can buffer short-term stressor effects of pollen restriction and fungicide exposure on colony development and the microbiome
Karoline Wueppenhorst, Abdulrahim T. Alkassab, Hannes Beims, Ulrich Ernst, Elsa Friedrich, Ingrid Illies, Martina Janke, Wolfgang H. Kirchner, Kim Seidel, Michael Steinert, Andrey Yurkov, Silvio Erler and Richard Odemer Ecotoxicology and Environmental Safety 282 116723 (2024) https://doi.org/10.1016/j.ecoenv.2024.116723
Sex and caste effects on the vibrational sensitivity in honey bees (Apis mellifera)
Micronutrient Deficiency May Be Associated with the Onset of Chalkbrood Disease in Honey Bees
Ratko Pavlović, Robert Brodschneider, Walter Goessler, Ljubiša Stanisavljević, Zoran Vujčić and Nenad M. Zarić Insects 15(4) 269 (2024) https://doi.org/10.3390/insects15040269
Group size influences maternal provisioning and compensatory larval growth in honeybees
Bin Han, Esmaeil Amiri, Qiaohong Wei, David R. Tarpy, Micheline K. Strand, Shufa Xu and Olav Rueppell iScience 26(12) 108546 (2023) https://doi.org/10.1016/j.isci.2023.108546
Lipidomic features of honey bee and colony health during limited supplementary feeding
Clara E. Castaños, Mary C. Boyce, Tiffane Bates, A. Harvey Millar, Gavin Flematti, Nathan G. Lawler and Julia Grassl Insect Molecular Biology 32(6) 658 (2023) https://doi.org/10.1111/imb.12864
Nenad M. Zarić, Robert Brodschneider and Walter Goessler (2023) https://doi.org/10.1101/2023.08.28.555195
The effect of forager loss on honeybee workers temporal polyethism and social network structure
Brood thermoregulation effectiveness is positively linked to the amount of brood but not to the number of bees in honeybee colonies
Ugoline Godeau, Maryline Pioz, Olivier Martin, Charlotte Rüger, Didier Crauser, Yves Le Conte, Mickael Henry and Cédric Alaux Peer Community Journal 3 (2023) https://doi.org/10.24072/pcjournal.270
Diet and pheromones interact to shape honey bee (Apis mellifera) worker physiology
Vanessa Corby-Harris, Lucy Snyder, Charlotte Meador, Emily Watkins-DeJong, Bethany T. Obernesser, Nicholas Brown and Mark J. Carroll Journal of Insect Physiology 143 104442 (2022) https://doi.org/10.1016/j.jinsphys.2022.104442
ApisRAM Formal Model Description
Xiaodong Duan, David Wallis, Fani Hatjina, Noa Simon‐Delso, Annette Bruun Jensen and Christopher John Topping EFSA Supporting Publications 19(2) (2022) https://doi.org/10.2903/sp.efsa.2022.EN-7184
Pollen collection by honey bee hives in almond orchards indicate diverse diets
Dance-communicated distances support nectar foraging as a supply-driven system
Bradley D. Ohlinger, Roger Schürch, Mary R. Silliman, Taylor N. Steele and Margaret J. Couvillon Biology Letters 18(8) (2022) https://doi.org/10.1098/rsbl.2022.0155
Pesticides in honey bee colonies: Establishing a baseline for real world exposure over seven years in the USA
Kirsten S. Traynor, Simone Tosi, Karen Rennich, Nathalie Steinhauer, Eva Forsgren, Robyn Rose, Grace Kunkel, Shayne Madella, Dawn Lopez, Heather Eversole, Rachel Fahey, Jeffery Pettis, Jay D. Evans and Dennis vanEngelsdorp Environmental Pollution 279 116566 (2021) https://doi.org/10.1016/j.envpol.2021.116566
Understanding social resilience in honeybee colonies
Swarm Intelligence and cyber-physical systems: Concepts, challenges and future trends
Melanie Schranz, Gianni A. Di Caro, Thomas Schmickl, Wilfried Elmenreich, Farshad Arvin, Ahmet Şekercioğlu and Micha Sende Swarm and Evolutionary Computation 60 100762 (2021) https://doi.org/10.1016/j.swevo.2020.100762
Honey Bee Nutrition
Jennifer M. Tsuruda, Priyadarshini Chakrabarti and Ramesh R. Sagili Veterinary Clinics of North America: Food Animal Practice 37(3) 505 (2021) https://doi.org/10.1016/j.cvfa.2021.06.006
Social disruption: Sublethal pesticides in pollen lead to Apis mellifera queen events and brood loss
Pupal cannibalism by worker honey bees contributes to the spread of deformed wing virus
Francisco Posada-Florez, Zachary S. Lamas, David J. Hawthorne, Yanping Chen, Jay D. Evans and Eugene V. Ryabov Scientific Reports 11(1) (2021) https://doi.org/10.1038/s41598-021-88649-y
Brood-Rearing Enhancing Potential of Manually Packed Pollen Feeding in Comparison with Pollen and Pollen Supplements in Patty Forms
Egg‐size plasticity in Apis mellifera: Honey bee queens alter egg size in response to both genetic and environmental factors
Esmaeil Amiri, Kevin Le, Carlos Vega Melendez, Micheline K. Strand, David R. Tarpy and Olav Rueppell Journal of Evolutionary Biology 33(4) 534 (2020) https://doi.org/10.1111/jeb.13589
A mathematical model of honey bee colony dynamics to predict the effect of pollen on colony failure
Effects of Supplemental Pollen Feeding on Honey Bee (Hymenoptera: Apidae) Colony Strength and Nosema spp. Infection
Ashley N Mortensen, Cameron J Jack, Tomas A Bustamante, Daniel R Schmehl and James D Ellis Journal of Economic Entomology (2018) https://doi.org/10.1093/jee/toy341
Wild Bee Pollen Diets Reveal Patterns of Seasonal Foraging Resources for Honey Bees
Single and interactive effects of Varroa destructor, Nosema spp., and imidacloprid on honey bee colonies (Apis mellifera)
Coby van Dooremalen, Bram Cornelissen, Chula Poleij‐Hok‐Ahin and Tjeerd Blacquière Ecosphere 9(8) (2018) https://doi.org/10.1002/ecs2.2378
Covert deformed wing virus infections have long-term deleterious effects on honeybee foraging and survival
Kristof Benaets, Anneleen Van Geystelen, Dries Cardoen, et al. Proceedings of the Royal Society B: Biological Sciences 284(1848) 20162149 (2017) https://doi.org/10.1098/rspb.2016.2149
Neonicotinoid pesticides and nutritional stress synergistically reduce survival in honey bees
Simone Tosi, James C. Nieh, Fabio Sgolastra, Riccardo Cabbri and Piotr Medrzycki Proceedings of the Royal Society B: Biological Sciences 284(1869) 20171711 (2017) https://doi.org/10.1098/rspb.2017.1711
Sequential social experiences interact to modulate aggression but not brain gene expression in the honey bee (Apis mellifera)
Role of accelerated developmental pathway and limited nurturing capacity on soldier developmental instability in subterranean termite incipient colonies
Weight of evidence evaluation of a network of adverse outcome pathways linking activation of the nicotinic acetylcholine receptor in honey bees to colony death
Honey bees dance faster for pollen that complements colony essential fatty acid deficiency
Shlomi Zarchin, Arnon Dag, Mor Salomon, Harmen P. Hendriksma and Sharoni Shafir Behavioral Ecology and Sociobiology 71(12) (2017) https://doi.org/10.1007/s00265-017-2394-1
Resilience of honeybee colonies via common stomach: A model of self-regulation of foraging
Nutrition affects survival in African honeybees exposed to interacting stressors
C. Ruth Archer, Christian W. W. Pirk, Geraldine A. Wright, Sue W. Nicolson and David Raubenheimer Functional Ecology 28(4) 913 (2014) https://doi.org/10.1111/1365-2435.12226
Temperature changes above the upper hive body reveal the annual development periods of honey bee colonies
Advances in Artificial Life. Darwin Meets von Neumann
Istvan Karsai and Andrew Runciman Lecture Notes in Computer Science, Advances in Artificial Life. Darwin Meets von Neumann 5778 350 (2011) https://doi.org/10.1007/978-3-642-21314-4_44
Proteases on the body surface of honeybee <i>Apis mellifera</i> L. in cage and beehive
A deficit of detoxification enzymes: pesticide sensitivity and environmental response in the honeybee
C. Claudianos, H. Ranson, R. M. Johnson, S. Biswas, M. A. Schuler, M. R. Berenbaum, R. Feyereisen and J. G. Oakeshott Insect Molecular Biology 15(5) 615 (2006) https://doi.org/10.1111/j.1365-2583.2006.00672.x