Exploitation and threat traits of the Hoplobatrachus occipitalis community, an economically important frog in the Poro region, Northern Côte d’Ivoire

Paper Details

Research Paper 13/04/2026
Views (10)
current_issue_feature_image
publication_file

Exploitation and threat traits of the Hoplobatrachus occipitalis community, an economically important frog in the Poro region, Northern Côte d’Ivoire

Kien Kouassi Brahiman*, Aka Sesseho Guy Roger, Ndiaye Awa, Kouamelan Essetchi Paul
J. Biodiv. & Environ. Sci. 28(4), 108-116, April 2026.
Copyright Statement: Copyright 2026; The Author(s).
License: CC BY-NC 4.0

Abstract

The Poro region is home to several natural habitats for frogs, and their consumption has become widespread in this part of northern Côte d’Ivoire. Frog harvesting has become a significant source of income and food for those involved in this sector. This activity is not subject to any regulatory framework, and this could lead to the extinction of the resource if no action is taken by the relevant authorities. Our study aims to characterize the exploitation of the edible frog, Hoplobatrachus occipitalis, and the factors threatening it in the Poro region, to improve fisheries resource management planning. The methodology consisted of conducting surveys with stakeholders in the sector and field visits to understand the fishing environment. The results show that spears (29%) and fishing rods (71%) are the equipment used by fishermen, who are predominantly Senufo (50%). The frog is mainly consumed in soup (62%), accompanied by rice, foutou, or attiéké. The use of agrochemicals for crops and chemicals for mining, drought, and rapid urbanization are the main factors threatening the frog population in the Poro region. Furthermore, the lack of regulations governing, the sector could be the most significant threat to this population. This study establishes a database on frog harvesting for fisheries resource managers in the Poro region, providing them with reliable information for better planning of the sustainable management of this resource.

Alla DA. 1991. Dynamisme de l’espace péri-urbain de Daloa (Côte d’Ivoire), étude géographique. Thèse de doctorat, Université Félix Houphouët-Boigny, Côte d’Ivoire, 318 p.

Altherr S, Goyenechea A, Schubert D. 2011. Canapés to extinction: the international trade in frogs’ legs and its ecological impact. Pro Wildlife, Defenders of Wildlife and Animal Welfare Institute, Munich–Washington DC.

Blé CY, Djeni NDT, Dadié A, Cissé M, Yobouet BA, Djè KM, Fantodji A. 2016. Prévalence et de virulence in vitro de Aeromonas sp. chez la grenouille comestible Hoplobatrachus occipitalis collectée dans le centre ouest de la Côte d’Ivoire. International Journal of Innovation and Applied Studies 18(2), 502.

Boko-Koiadia ANN, Guéladio C, Brama K, Dedy S. 2016. Variabilité climatique et changements dans l’environnement à Korhogo en Côte d’Ivoire : mythes ou réalité ? 158 p.

Coulibaly ND, Zigui B. 2021. Exploitation et traits de menaces des grenouilles d’un intérêt socio-économique dans la province du Ganzourgou au Burkina Faso, Afrique de l’Ouest. International Journal of Biological and Chemical Science 15(3), 1090–1103. https://doi.org/10.4314/ijbcs.v15i3.19

Efenakpo OD, Ayodele IA, Ijeomah HM. 2016. Assessment of frog meat utilization in Ibadan, Oyo State, Nigeria. Journal of Research in Forestry, Wildlife and Environment 8(3), 31–43. https://www.ajol.info/index.php/jrfwe/article/view/146258

Ernst R, Rödel MO. 2002. A new Phrynobatrachus from the Upper Guinean rain forest, West Africa, including a description of a new reproductive mode for the genus. Journal of Herpetology 36(4), 561–571. https://doi.org/10.2307/1565925

Godome T, Tossavi E, Ouattara NI, Fiogbe ED. 2018. Bibliographic synthesis on biology and ecology of Hoplobathrachus occipitalis (Günther, 1858). International Journal of Biological and Chemical Science 12(3), 1484–1493. https://doi.org/10.4314/ijbcs.v12i3.33

Kéita G. 2023. Intérêts socio-économiques et performances de reproduction et de croissance de la grenouille Hoplobatrachus occipitalis (Günther, 1858). Thèse de doctorat, Université Jean Lorougnon Guédé, Côte d’Ivoire, 132 p

Kia GSN, Tijjiani FY, Otolorin RG. 2018. An evaluation of intestinal parasite in edible frogs (Hoplobatrachus sp.) sold for consumption in Zaria, Kaduna State, Nigeria. Nigerian Veterinary Journal 39(3), 209–216. https://doi.org/10.4314/nvj.v39i3.4

Kien KB, Ndiaye A, Cisse M, Kouamelan EP. 2024. Spatio-temporal dynamics of anuran populations in the wetlands of Korhogo, Côte d’Ivoire. Annual Research and Review in Biology 39(9), 114–121. https://doi.org/10.9734/arrb/2024/v39i92125

Kouamé NG, Ofori-Boateng C, Adum GB, Gourène G, Rödel MO. 2015. The anuran fauna of a West African urban area. Amphibian and Reptile Conservation 9, 1–14.

Kouamé NG. 2009. Distribution spatio-temporelle et alimentation naturelle de cinq espèces d’amphibiens du genre Phrynobatrachus. Thèse de doctorat, Université d’Abobo Adjamé, Côte d’Ivoire, 144 p.

Koudou D, Kakou YSC, Sékongo LG. 2020. Pêche dans le lac de Korhogo (Côte d’Ivoire) : acteurs, exploitation incontrôlée et signes de dégradation de la ressource halieutique. DALAGEO 19(002), 8–19. https://revuegeo-univdaloa.net

Mohneke M, Hirschfeld M, Rödel MO. 2010a. Utilisation non durable des grenouilles en Afrique de l’Ouest. In: Atlas de la biodiversité de l’Afrique de l’Ouest (Burkina Faso), Thiombiano A, Kampmann D (eds.), pp. 108–109.

Mohneke M, Onadeko AB, Hirschfeld M, Rödel MO. 2010c. Dried or fried: amphibians in local and regional food markets in West Africa. Traffic Bulletin 22(3), 117–128. https://www.traffic.org

Mohneke M, Zongo B, Rödel MO. 2010b. Les amphibiens. In: Atlas de la biodiversité de l’Afrique de l’Ouest (Burkina Faso), Thiombiano A, Kampmann D (eds.), pp. 298–302.

Onadeko AB, Egonmwan RI, Saliu JK. 2011. Edible amphibian species: local knowledge of their consumption in southwest Nigeria and their nutritional value. West African Journal of Applied Ecology 19, 67–76.

Oungbé KV, Adeba PJ, Blahoua KG, N’Douba V. 2018. Systematic inventory of anuran species in agro-industrial zones in Côte d’Ivoire. Journal of Applied Biosciences 131, 13271–13283.

Oungbé KV. 2021. Biodiversité des helminthes parasites des anoures en Côte d’Ivoire. Thèse de doctorat, Université Félix Houphouët-Boigny, Côte d’Ivoire, 212 p.

Oussou KH. 2022. Dynamique spatio-temporelle des amphibiens anoures et stratégie alimentaire. Thèse de doctorat, Université Jean Lorougnon Guédé, Côte d’Ivoire, 146 p.

Penner J, Adeba PJ, Hillers A, Nago SGA, Rödel MO. 2010. Amphibiens de l’Afrique de l’Ouest. In: Atlas de la biodiversité de l’Afrique de l’Ouest (Burkina Faso), Thiombiano A, Kampmann D (eds.), pp. 102–107.

Philippe K, Robert J, Percsy C, Langlet G. 2002. Dangers pour la faune indigène de l’introduction d’espèces animales à des fins ornementales. Bulletin de l’Institut Royal des Sciences Naturelles de Belgique 72(Suppl.), 219–221.

Rödel MO. 2000. Herpetofauna of West Africa: amphibians of the West African savanna. Edition Chimaira, Frankfurt, 335 p.

Related Articles

General characteristics of the mycobiota of vegetable and melon plants cultivated in Azerbaijan

K. F. Bakhshaliyeva*, A. Kh. Rajabli, E. I. Allahverdiyev, A. G. Eyvazov, S. F. Azadaliyeva, J. Biodiv. & Environ. Sci. 28(4), 139-145, April 2026.

Comparative assessment of plant biomass in the climatic zones of Burkina Faso

Alimata Zorom*, Yélézouomin Stéphane Corentin Somé, J. Biodiv. & Environ. Sci. 28(4), 129-138, April 2026.

Ethnomedicinal plant knowledge of the Manobo indigenous people in Agusan del Sur, Philippines

Ferdinand A. Dumalagan*, J. Biodiv. & Environ. Sci. 28(4), 117-128, April 2026.

Species richness and conservation status of ferns (Pteridophyta) in Barangay New Casul, Mutia, Zamboanga del Norte

Jay Anne B. Mejos, Aljun P. Pusod, Ma. Dulce C. Guillena*, J. Biodiv. & Environ. Sci. 28(4), 100-107, April 2026.

Dietary Aloe vera improves growth and hematology in Nile tilapia (Oreochromis niloticus)

Fatima Khan*, J. Biodiv. & Environ. Sci. 28(4), 89-99, April 2026.

Intercropping camphor basil shrubs with selected food crops for ecosystem services in the upper midland agroecological zone of Western Kenya

Reuben K. B. Chumba*, Alex Awiti, Francis Namasaka Muyekho, Vitalis Ogemah, Jacob Omollo, Yosef Kidane Gebrehawariat, J. Biodiv. & Environ. Sci. 28(4), 73-88, April 2026.

Surveillance and detection of African swine fever on abbatoir in different municipalities of third district of Cagayan, Philippines

Maricel F. Campanano, John Michael M. Melad, Mary Ann M. Santos*, J. Biodiv. & Environ. Sci. 28(4), 65-72, April 2026.

Mobile-based potato leaf disease identifier using ensemble modeling

Karen W. Cantilang*, Laarni M. Ladiao, J. Biodiv. & Environ. Sci. 28(4), 58-64, April 2026.