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Biogeography from a food matrix: a temporal distribution map of Apis mellifera mitochondrial DNA lineages across Italy, obtained from honey samples
Valeria Taurisano, Anisa Ribani, Maria Letizia Calabri, Giuseppina Schiavo, Kate Elise Nelson Johnson, Valerio Joe Utzeri, Samuele Bovo, Francesca Bertolini and Luca Fontanesi Scientific Reports 16(1) (2026) https://doi.org/10.1038/s41598-026-43936-4
Kingsley A. Etchu, Abdelkader Ameur Ameur, M. Chahbar, Félix Meutchieye, Annick N. Enangue Njembele, Gerald C. Tasse Taboue and Semir B. S. Gaouar 619 (2026) https://doi.org/10.1007/978-3-031-92076-9_13
Introgressive hybridisation puts the distinctive population of
Apis mellifera mellifera
in Ireland at risk: evidence from a multidisciplinary approach
Alexandra Valentine, Arrigo Moro, Ethan Briggs, Brandon Collier, Kenneth Sandoval, Chiara Binetti, Matthew Richardson, David Wragg, Keith A. Browne, Mark Barnett and Grace P. McCormack Journal of Apicultural Research 64(1) 202 (2025) https://doi.org/10.1080/00218839.2024.2404297
Evidence of positive selection in the COI mitochondrial gene in the blue crab Callinectes sapidus (Decapoda: Portunidae)
Marco Mancuso, Francesco Tiralongo, Giada Santa Calogero, Gea Manganaro, Alessandro Nota, Venera Ferrito and Anna Maria Pappalardo Scientific Reports 16(1) (2025) https://doi.org/10.1038/s41598-025-30855-z
The Genetic Characteristics of the Gray Mountain Caucasian Bee Apis mellifera caucasica
Spatial analysis of genetic variation in a natural population of the dark forest bee (
Apis mellifera mellifera
L.) from the Southern Urals (Russia)
Yulai Yanbaev, Bernd Degen, Fitrat Yumaguzhin, Alexey Nikolenko, Ildar Gabitov and Ivan Chudov International Journal of Environmental Studies 81(3) 1441 (2024) https://doi.org/10.1080/00207233.2022.2058768
Inferring Long-Term and Short-Term Determinants of Genetic Diversity in Honey Bees: Beekeeping Impact and Conservation Strategies
Thibault Leroy, Pierre Faux, Benjamin Basso, Sonia Eynard, David Wragg, Alain Vignal and Rebekah Rogers Molecular Biology and Evolution 41(12) (2024) https://doi.org/10.1093/molbev/msae249
Genetic characteristics of the Gray Mountain Caucasian Bee Apis mellifera caucasica
Genetic Profile of Greek Indigenous Honey Bee Populations, Local Extinctions, Geographical Distinction, and Patterns, by Using mtDNA COI and Nuclear CSD Gene Analysis Markers
Konstantinos Zampakas, Maria V. Alvanou, Anastasia Kalapouti, Fani Hatjina, Chrysoula Tananaki, Katerina Melfou, Ioannis A. Giantsis and Savel Daniels Journal of Zoological Systematics and Evolutionary Research 2024 1 (2024) https://doi.org/10.1155/2024/5466016
Thibault Leroy, Pierre Faux, Benjamin Basso, Sonia Eynard, David Wragg and Alain Vignal (2024) https://doi.org/10.1101/2024.09.04.611184
Intrabreed Diversity and Relationships between Races of Honey Bee Apis mellifera carpathica and Apis mellifera caucasica
T. A. Triseleva, A. F. Safonkin, T. O. Bykova and M. J. Rukhkyan Известия Российской академии наук. Серия биологическая (4) 356 (2023) https://doi.org/10.31857/S102634702360005X
Düzce Bal Arısı Popülasyonlarında Morfometrik ve mtDNA Çeşitliliği Üzerine Arıcılığın Etkileri
Comparison of the mitochondrial genomes of three geographical strains of Apis laboriosa indicates high genetic diversity in the black giant honeybee (Hymenoptera: Apidae)
MtDNA Analysis Indicates Human-Induced Temporal Changes of Serbian Honey Bees Diversity
Marija Tanasković, Pavle Erić, Aleksandra Patenković, Katarina Erić, Milica Mihajlović, Vanja Tanasić, Ljubiša Stanisavljević and Slobodan Davidović Insects 12(9) 767 (2021) https://doi.org/10.3390/insects12090767
Phylogenetic Relationships among Honey Bee Subspecies Apis mellifera caucasia and Apis mellifera
carpathica Based on the Sequences of the Mitochondrial Genome
R. A. Ilyasov, G. Y. Han, M. L. Lee, K. W. Kim, J. H. Park, J. I. Takahashi, H. W. Kwon and A. G. Nikolenko Russian Journal of Genetics 57(6) 711 (2021) https://doi.org/10.1134/S1022795421060041
EPIC markers of the genus Apis as diagnostic tools for detection of honey fraud
Genetic diversity and population structure of the native Western African honeybee (Apis mellifera adansonii Latreille, 1804) in Nigeria based on mitochondrial COI sequences
Adeyemi M. Ajao, Lotanna M. Nneji, Adeniyi C. Adeola, Segun O. Oladipo, Adeola O. Ayoola, Yun-Yu Wang, Akinkunle V. Adeniyi and Yusuf U. Olademeji Zoologischer Anzeiger 293 17 (2021) https://doi.org/10.1016/j.jcz.2021.05.007
Genetic past, present, and future of the honey bee (Apis mellifera) in the United States of America
Discrimination of Iranian honeybee populations (Apis mellifera meda) from commercial subspecies of Apis mellifera L. using morphometric and genetic methods
A revision of subspecies structure of western honey bee Apis mellifera
Rustem A. Ilyasov, Myeong-lyeol Lee, Jun-ichi Takahashi, Hyung Wook Kwon and Alexey G. Nikolenko Saudi Journal of Biological Sciences 27(12) 3615 (2020) https://doi.org/10.1016/j.sjbs.2020.08.001
Mitochondrial genomes illuminate the evolutionary history of the Western honey bee (Apis mellifera)
Comparative analysis of mitochondrial genomes of the honey bee subspecies
A. m. caucasica
and
A. m. carpathica
and refinement of their evolutionary lineages
Rustem Ilyasov, Alexei Nikolenko, Varis Tuktarov, Kenji Goto, Jun-Ichi Takahashi and Hyung Wook Kwon Journal of Apicultural Research 58(4) 567 (2019) https://doi.org/10.1080/00218839.2019.1622320
Insights into the Maternal Ancestry of Côte d’Ivoire Honeybees Using the Intergenic Region COI-COII
Krouholé Abdoul Salam Coulibaly, Muhammad Zeeshan Majeed, Chao Chen, Kolo YEO, Wei Shi and Chun-Sen Ma Insects 10(4) 90 (2019) https://doi.org/10.3390/insects10040090
Population genetic structure of native Iranian population of Apis mellifera meda based on intergenic region and COX2 gene of mtDNA
Characterization of Native Honey Bee Subspecies in Republic of Benin Using Morphometric and Genetic Tools
Felicien Amakpe, Lina De Smet, Marleen Brunain, Frans J. Jacobs, Brice Sinsin and Dirk C. de Graaf Journal of Apicultural Science 62(1) 47 (2018) https://doi.org/10.2478/jas-2018-0006
Authentication of honey based on a DNA method to differentiate Apis mellifera subspecies: Application to Sicilian honey bee ( A. m. siciliana ) and Iberian honey bee ( A. m. iberiensis ) honeys
Introgression in native populations of Apis mellifera mellifera L: implications for conservation
Jonathan S. Ellis, Gabriele Soland-Reckeweg, Victoria G. Buswell, et al. Journal of Insect Conservation 22(3-4) 377 (2018) https://doi.org/10.1007/s10841-018-0067-7
Prevalence of honey bee (Apis mellifera) parasites across Texas
Alexandra Herrera, Autumn Smith-Herron, Nicole Traub, Kristina Yount and Brian R. Chapman The Southwestern Naturalist 62(4) 255 (2017) https://doi.org/10.1894/SWNAT-D-17-00027.1
Mitochondrial DNA (mtDNA) markers reveal low genetic variation and the presence of two honey bee races in Uganda’s agro-ecological zones
Climate rather than geography separates two European honeybee subspecies
Cristian O. Coroian, Irene Muñoz, Ellen A. Schlüns, Orsolya R. Paniti‐Teleky, Silvio Erler, Emilia M. Furdui, Liviu A. Mărghitaş, Daniel S. Dezmirean, Helge Schlüns, Pilar de la Rúa and Robin F. A. Moritz Molecular Ecology 23(9) 2353 (2014) https://doi.org/10.1111/mec.12731
Beekeeping for Poverty Alleviation and Livelihood Security
Presence of Nosema ceranae associated with honeybee queen introductions
Irene Muñoz, Almudena Cepero, Maria Alice Pinto, Raquel Martín-Hernández, Mariano Higes and Pilar De la Rúa Infection, Genetics and Evolution 23 161 (2014) https://doi.org/10.1016/j.meegid.2014.02.008
Phylogeography of Apis dorsata (Hymenoptera: Apidae) from China and Neighboring Asian Areas
Lian-Fei Cao, Huo-Qing Zheng, Chen-Yue Hu, Shao-Yu He, Hai-Ou Kuang and Fu-Liang Hu Annals of the Entomological Society of America 105(2) 298 (2012) https://doi.org/10.1603/AN11104
Population structure of North African honey bees is influenced by both biological and anthropogenic factors
A review of methods for discrimination of honey bee populations as applied to European beekeeping
Maria Bouga, Cedric Alaux, Malgorzata Bienkowska, Ralph Büchler, Norman L Carreck, Eliza Cauia, Robert Chlebo, Bjørn Dahle, Raffaele Dall'Olio, Pilar De la Rúa, Ales Gregorc, Evgeniya Ivanova, Aykut Kence, Meral Kence, Nikola Kezic, Hrisula Kiprijanovska, Peter Kozmus, Per Kryger, Yves Le Conte, Marco Lodesani, António Manuel Murilhas, Adrian Siceanu, Gabriele Soland, Aleksandar Uzunov and Jerzy Wilde Journal of Apicultural Research 50(1) 51 (2011) https://doi.org/10.3896/IBRA.1.50.1.06
Nikolaus Koeniger, Gudrun Koeniger and Deborah Smith 23 (2011) https://doi.org/10.1007/978-3-642-16422-4_2
Biodiversity, conservation and current threats to European honeybees
Thrice Out of Africa: Ancient and Recent Expansions of the Honey Bee,
Apis mellifera
Charles W. Whitfield, Susanta K. Behura, Stewart H. Berlocher, Andrew G. Clark, J. Spencer Johnston, Walter S. Sheppard, Deborah R. Smith, Andrew V. Suarez, Daniel Weaver and Neil D. Tsutsui Science 314(5799) 642 (2006) https://doi.org/10.1126/science.1132772
Varying degrees of Apis mellifera ligustica introgression in protected populations of the black honeybee, Apis mellifera mellifera, in northwest Europe
Frequencies of Restriction Fragment-Length Polymorphisms Indicate That Neotropical Honey Bee (Hymenoptera: Apidae) Populations Have African and West European Origins
Mitochondrial Sequence Characterisation of Australian Commercial and Feral Honeybee Strains, Apis mellifera L. (Hymenoptera: Apidae), in the Context of the Species Worldwide
DNA RFLPs at a highly polymorphic locus distinguish European and African subspecies of the honey bee Apis mellifera L. and suggest geographical origins of New World honey bees