Diversity of wild and honey bees in relation with melliferous plants in northern Côte d’Ivoire, West Africa
Paper Details
Diversity of wild and honey bees in relation with melliferous plants in northern Côte d’Ivoire, West Africa
Abstract
Melliferous plants are crucial for bee conservation since they constitute their main food resources. Unfortunately, knowledge on melliferous plants is poorly documented in the Sudanese savannas of West Africa, particularly in northern Côte d’Ivoire, where ecosystems and biodiversity are threatened by land use intensification and increasing degradation of natural habitats. This study for the first time focused on melliferous plants in northern Côte d’Ivoire. It aimed to know and conserve food resources of bees. Sampling was done in Loufa within the department of Korhogo. Bee visits were observed from plant inflorescences during different flowering periods. The names of plant species visited by bees and the collected nutrients were also recorded. A total of 59 melliferous plants belonging to 54 genera and 27 families were visited by bees for nectar or pollen. Combretaceae and Fabaceae were the most visited plant families. In addition, Combretum collinum, Combretum molle, Annona senegalensis, Azadirachta indica, Cassia arereh, Diospyros mespiliformis and Anogeissus leiocarpa were the most attractive plant species. Bee species were distributed depending on plant species and collected nutrients. Bee richness was highest with Cassia arereh and Combretum collinum. The honey bee was recorded on all melliferous plants except Hyptis suaveolens. More than half (55.93%) of melliferous plants were visited for both nectar and pollen. About 23.73% of plants were visited only for nectar and 20.34% only for pollen. The findings are very relevant because they contribute to monitoring bee communities and their ecosystem services in northern Côte d’Ivoire.
Aiwa AE. 2015. The impact of cotton cultivation on socio-economic development: A case study from the Korhogo Region, North of Cote d’Ivoire. Baobab Review 17, 260–269.
Aizen MA, Harder LD. 2009. The global stock of domesticated honey bees is growing slower than agricultural demand for pollination. Current Biology 19(11), 915–918. DOI: 10.1016/j.cub.2009.03.071
Aloma S. 2000. Etude des facteurs de production de miel dans deux zones écologiques différentes au sud du Togo: les sites d’Aképé et d’Agotimé-Nyitoé. Mémoire de DEA, University of Benin, Cotonou, 36 p.
Biesmeijer JC. 2006. Parallel declines in pollinators and insect-pollinated plants in Britain and the Netherlands. Science 313(5785), 351–354. DOI: 10.1126/science.1127863
Brunet J, Holmquist KGA. 2009. The influence of distinct pollinators on female and male reproductive success in the Rocky Mountain columbine. Molecular Ecology 18, 3745–3758.
Coulibaly D, Tuo Y, Kone M, Balima LH, Konate S, Linsenmair KE, Porembski S, Goetze D, Stein K. 2020. Savanna woody plants and their provision of food resources to bees in southern Burkina Faso, West Africa. Journal of Forest and Landscape Research 5, 14–23. DOI: 10.3390/d13010001
Coulibaly S, Kouame D, Dro B, Yeboua BAA, Salla M. 2021. Potential melliferous flora of Jean Lorougnon Guédé University site (Daloa, Central-Western Côte d’Ivoire): What interest for beekeeping? International Journal of Innovation and Scientific Research 58(1), 26–38. Retrieved from International Journal of Innovation and Scientific Research
Dongock N, Foko J, Pinta JY, Ngouo LV, Tchoumboue J, Zango P. 2004. Inventaire et identification des plantes mellifères de la zone soudano guinéenne d’altitude de l’ouest Cameroun. Tropicultura 22(3), 139–145.
Fluri P, Pickhardt A, Cottier V, Charrière JD. 2001a. La pollinisation des plantes à fleurs par les abeilles: Biologie, Ecologie, Economie 2eme partie. L’Abeille de France et l’Apiculteur 872, 335–340.
Forrest JRK, Thorp RW, Kremen C, Williams NM. 2015. Contrasting patterns in species and functional-trait diversity of bees in an agricultural landscape. Journal of Applied Ecology 52(3), 706–715. 7 DOI: 10.1111/1365-2664.12433
Guinko S, Sawadogo M, Guenda W. 1992. Etudes des plantes mellifères de saison pluvieuse et quelques aspects du comportement des abeilles dans la région de Ouagadougou, Burkina Faso. Etudes flor. Veg. Burkina Faso 1(2), 27–46.
Iritie BM, Wandan EN, Paraiso AA, Fantodji A, Gbomene LL. 2014. Identification des plantes mellifères de la zone agroforestière de l’Ecole Supérieure Agronomique de Yamoussoukro (Côte d’Ivoire). European Scientific Journal 10(30), 444–458.
Klein AM, Vaissière BE, Cane JH, Steffan-Dewenter I, Cunningham SA, Kremen C, Tscharntke T. 2007. Importance of pollinators in changing landscapes for world crops. Proc. Biol. Sci 274, 303–313. DOI: 10.1098/rspb.2006.3721
Michener CD. 2007. The Bees of the World. The Johns Hopkins University Press, Baltimore and London, 1, 913–953.
Mitchell RJ, Karron JD, Holmquist KG, Bell JM. 2004. The influence of Mimulus ringens floral display size on pollinator visitation patterns. Functional Ecology 18, 116–124.
Nombré I. 2003. Etude des potentialités mellifères de deux zones du Burkina Faso: Garango (Province du Boulgou) et Nazinga (Province du Nahouri). Doctorat unique spécialité, Université de Ouagadougou, Ouagadougou, Burkina Faso, 214 p.
O’Toole C, Raw A. 2004. Bees of the World. Facts on File, New York, 196 p.
Ollerton J, Erenler H, Edwards M, Crockett R. 2014. Extinctions of aculeate pollinators in Britain and the role of large-scale agricultural changes. Science 346(6215), 1360–1362. DOI: 10.1126/science.1257259
Ollerton J, Winfree R, Tarrant S. 2011. How many flowering plants are pollinated by animals? Oikos 120(3), 321–326. DOI: 10.1111/j.1600-0706.2010.18644.x
Potts SG. 2011. Developing European conservation and mitigation tools for pollination services: Approaches of the STEP (Status and Trends of European Pollinators) project. Journal of Apicultural Research 50(2), 152–164. DOI: 10.3896/ibra.1.50.2.07
Stein K, Coulibaly D, Balima LH, Goetze D, Linsenmair KE, Porembski S, Stenchly K, Theodorou P. 2021. Plant-pollinator networks in savannas of Burkina Faso, West Africa. Diversity 13(1), 1. DOI: 10.3390/d13010001
Stein K, Coulibaly D, Stenchly K, Goetze D, Porembski S, Lindner A, Linsenmair EK. 2017. Bee pollination increases yield quantity and quality of cash crops in Burkina Faso, West Africa. Scientific Reports 7, 17691. DOI: 10.1038/s41598-017-17970-2
Yedomonhan H, Tossou MG, Akeogninou A, Demenou BB, Traore D. 2009. Diversité des plantes mellifères de la zone soudano-guinéenne: Cas de l’arrondissement de Manigri (Centre-Ouest du Benin). International Journal of Biological and Chemical Sciences 3(2), 355–366. DOI: 10.4314/ijbcs.v3i2.44514
Zayed A, Packer L. 2005. Complementary sex determination substantially increases extinction proneness of haplodiploid populations. Proceedings of the National Academy of Science of the United States of America 102, 10742–10746. DOI: 10.1073/pnas.0502271102
Zayed A, Roubik DW, Packer L. 2004. Use of diploid male frequency data as an indicator of pollinator decline. Proceedings of the Royal Society of London B 271(Suppl.), S9–S12. DOI: 10.1098/rsbl.2003.0109
Drissa Coulibaly*, Yalamoussa Tuo, Adjoua Madeleine Kouassi, Dognimin Issouf Soro, Mouhamadou Kone, Larba Hubert Balima, 2026. Diversity of wild and honey bees in relation with melliferous plants in northern Côte d’Ivoire, West Africa. J. Biodiv. Environ. Sci., 29(2), 10-21.
Copyright © 2026 by the Authors. This article is an open access article and distributed under the terms and conditions of the Creative Commons Attribution 4.0 (CC BY 4.0) license.


