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Ecological comparison of native (Apis mellifera mellifera) and hybrid (Buckfast) honeybee drones in southwestern Sweden indicates local adaptation
University of Skövde, School of Bioscience. University of Skövde, Systems Biology Research Environment. (Ecological modelling)ORCID iD: 0009-0003-7799-0444
University of Skövde, School of Bioscience. University of Skövde, Systems Biology Research Environment. (Ecological modelling)ORCID iD: 0000-0002-2055-4284
Nordens Ark Foundation, Åby Säteri, Hunnebostrand, Sweden ; Southern Swedish Forest Research Centre, Swedish University of Agricultural Sciences, Lomma, Sweden.
University of Skövde, School of Bioscience. University of Skövde, Systems Biology Research Environment. (Ecological modelling)ORCID iD: 0000-0002-3985-8405
2024 (English)In: PLOS ONE, E-ISSN 1932-6203, Vol. 19, no 8, article id e0308831Article in journal (Refereed) Published
Abstract [en]

Honeybee drones’ only known task is to mate with a virgin queen. Apart from their mating behaviour, their ecology has been little studied, especially in comparison to honeybee females. Previous knowledge is primarily based on short-term direct observations at single experimental hives, rarely, if ever, addressing the effect of drones’ genetic origin. Here, Radio Frequency Identification Technology was utilised to gather drone and worker bee lifetime data of Apis mellifera mellifera and Apis mellifera x (hybrid Buckfast) colonies over one mating season (spring and summer) with the ultimate goal to investigate differences at subspecies level. This technique enabled continuous monitoring of tagged bees at the hive entrance and recording of individuals’ movement directions. The results confirmed that spring-born drones survive longer than summer-born drones and that they generally live longer than worker bees. Drones’ peak activity occurred in the afternoon while worker bees showed more even activity levels throughout the day. Earlier orientation flights than usually reported for drones were observed. In summer, mating flights were practiced before reaching sexual maturity (at 12 days of age). Differences were found between Apis m. mellifera and Buckfast drones, where Apis m. mellifera showed later drone production in spring, but significantly earlier first activities outside the hive in summer and a later peak in diurnal activity. Additionally, Apis m. mellifera flew more in higher light intensities and windy conditions and performed significantly longer flights than Buckfast drones. The observed differences in drone ecology indicate the existence of a local adaptation of the native subspecies Apis m. mellifera to environmental conditions in southwestern Sweden.

Place, publisher, year, edition, pages
Public Library of Science (PLoS), 2024. Vol. 19, no 8, article id e0308831
National Category
Ecology Zoology
Research subject
Ecological Modelling Group
Identifiers
URN: urn:nbn:se:his:diva-24426DOI: 10.1371/journal.pone.0308831ISI: 001290862100014PubMedID: 39137198Scopus ID: 2-s2.0-85201164880OAI: oai:DiVA.org:his-24426DiVA, id: diva2:1888864
Funder
Interreg Sweden-Norway, 20201923
Note

CC BY 4.0

finjaschaumann@web.de

NN, MN and SL were funded by the EU-financed INTERREG Sweden-Norway programme - European structural and Investments Funds in Sweden (2014-2020) (grant-nr. 20201923) with the Swedish title "BIstånd till nordiska bin – unik resurs för framtidens ekosystemtjänster" (https://www.interreg-sverige-norge.com/?portfolio=bistand-till-nordiska-bin-unik-resurs-for-framtidens-ekosystemtjanster), the funders did not play a role in the study design, data collection, analysis, publish decision or preparation of the manuscript.

Available from: 2024-08-14 Created: 2024-08-14 Last updated: 2025-09-29Bibliographically approved

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Schaumann, FinjaNorrström, NiclasLeidenberger, Sonja

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