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Die Naturwissenschaften|January 22, 2003
Mimicry of queen Dufour's gland secretions by workers of Apis mellifera scutellata and A. m. capensisCatherine L Sole, Per Kryger, Abraham Hefetz, et al.
Insect Biochemistry and Molecular Biology|August 31, 2019
Hydroxylation patterns associated with pheromone synthesis and composition in two honey bee subspecies Apis mellifera scutellata and A. m. capensis laying workersFiona N Mumoki, Abdullahi A Yusuf, Christian W W Pirk, et al.
Biology Letters|April 7, 2007
Control of reproductive dominance by the thelytoky gene in honeybeesH Michael G Lattorff, Robin F A Moritz, Robin M Crewe, et al.
The British Journal of Ophthalmology|August 28, 2017
Pterygia are indicators of an increased risk of developing cutaneous melanomasJulie M Crewe, Tim Threlfall, Antony Clark, et al.
Ecology and Evolution|April 13, 2016
Hit-and-run trophallaxis of small hive beetlesPeter Neumann, Jan Naef, Karl Crailsheim, et al.
Journal of Evolutionary Biology|May 1, 2007
Pheromonal dominance and the selection of a socially parasitic honeybee worker lineage (Apis mellifera capensis Esch.)V Dietemann, P Neumann, S Härtel, et al.
The Journal of Experimental Biology|September 14, 2010
Convergence of carbohydrate-biased intake targets in caged worker honeybees fed different protein sourcesSolomon Z Altaye, Christian W W Pirk, Robin M Crewe, et al.
Experimental & Applied Acarology|July 20, 2014
Impact of Varroa destructor on honeybee (Apis mellifera scutellata) colony development in South AfricaUrsula Strauss, Christian W W Pirk, Robin M Crewe, et al.
Clinical & Experimental Optometry|August 24, 2022
The epidemiology of eye injuries in Western Australia: a retrospective 10-year studyMagda K Blaszkowska, Stephen E Bartnik, Julie M Crewe, et al.
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