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Biogeographic Distribution and Host Specificity of Hymenopteran Parasitoids of Tephritids (Diptera) Infesting Mangoes in Cameroon, Central Africa

DOI: 10.4236/ae.2025.133020, PP. 300-320

Keywords: Mango-Infesting Tephritids, Agroecological Zone, Parasitoid Diversity, Host-Parasitoid, Cameroon

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Abstract:

Tephritid fruit flies (Diptera) represent a major threat to mango production and food security across Sub-Saharan Africa. Up to date, the species diversity and ecological roles of their natural enemies remain underexplored. This study provides the first comprehensive analysis of hymenopteran parasitoid communities associated with tephritids infesting mangoes in two agroecological zones (AEZs) of Cameroon: the Sudano-Sahelian savannah (AEZ 1) and the High Guinean savannah (AEZ 2). From 2,795 mangoes sampled between 2020 and 2021 across seven orchards, a total of 27,654 tephritids (representing four species) and 1,008 parasitoids (belonging to six species from three families) adults emerged. A marked biogeographic partitioning of parasitoid communities was observed: Braconidae (Fopius caudatus, Diachasmimorpha fullawayi, Psyttalia concolor) were exclusively recorded in AEZ 1, particularly in the orchard of Lagdo which belong to the dry zone, whereas Figitidae (Ganaspis sp., Ealata saba) and Diapriidae (Trichopria sp.) dominated in the more humid AEZ 2 orchards. Notably, Ganaspis sp. was found in both AEZs. Host specificity varied: Ganaspis sp. and Trichopria sp. exhibited a broad host range, primarily parasitizing Bactrocera dorsalis, while E. saba showed a high specificity for Ceratitis cosyra. Importantly, the exotic parasitoid Fopius arisanus, previously introduced as a biological control agent, was not detected. Parasitism rates were high in cultivar with thin pericarp (e.g., ‘Palmer’). However, in Djefatou and Ngong (AEZ 1), premature fruit harvesting for livestock feed limited parasitism assessment, as fruits were removed from the orchards before parasitoid infestation could occur. These findings underscore the importance of managing indigenous parasitoids through the selection of suitable ecological conditions and plant resources. Indeed, elucidating host-parasitoid dynamics, as demonstrated in this study, could support the development of practical and sustainable strategies for mango pest management in Central Africa.

References

[1]  Alcasid, C., Hernandez, G. and Valencia, L. (2020) ‘Mangoming’—A Mango Variety in the Philippines with the World’s Heaviest Fruits. Philippine Journal of Science, 150, 233-236.
https://doi.org/10.56899/150.01.20
[2]  Vayssieres, J., Korie, S., Coulibaly, O., Temple, L. and Boueyi, S.P. (2008) The Mango Tree in Central and Northern Benin: Cultivar Inventory, Yield Assessment, Infested Stages and Loss Due to Fruit Flies (Diptera tephritidae). Fruits, 63, 335-348.
https://doi.org/10.1051/fruits:2008035
[3]  Vayssières, J., Korie, S. and Ayegnon, D. (2009) Correlation of Fruit Fly (Diptera tephritidae) Infestation of Major Mango Cultivars in Borgou (Benin) with Abiotic and Biotic Factors and Assessment of Damage. Crop Protection, 28, 477-488.
https://doi.org/10.1016/j.cropro.2009.01.010
[4]  FAOSTAT (2025) Crops and Livestock Products.
https://www.fao.org/faostat/en/#data/QCL
[5]  Flavie, M.K.C., Caroline, M.S.M., Annih, M.G., Ulrich, D.D.C., Nathalie, S.K. and Stephane, M.T. (2022) Morphological and Physical Diversity of Mangoes (Mangifera indica L.) of Local Varieties Found in Noun and Lekié Localities (Cameroon). Sustainable Agriculture Research, 12, 1-11.
https://doi.org/10.5539/sar.v12n1p1
[6]  Bota, L.D., Fabião, B.G., Virgilio, M., Mwatawala, M., Canhanga, L., Cugala, D.R., et al. (2018) Seasonal Abundance of Fruit Flies (Diptera: Tephritidae) on Mango Orchard and Its Relation with Biotic and Abiotic Factors in Manica Province, Mozambique. Fruits, 73, 218-227.
https://doi.org/10.17660/th2018/73.4.3
[7]  Mokam, D.G., Atougour, N., Tadu, Z., Aléné, D.C., Awono, E., Lontsi Tapeo, S., et al. (2024) Susceptibility of Mangifera indica (Sapindales: Anacardiaceae) Cultivars to Fruit Flies (Diptera: Tephritidae) in 2 Agroecological Zones of Cameroon. Journal of Insect Science, 24, Article 9.
https://doi.org/10.1093/jisesa/ieae027
[8]  Nanga Nanga, S., Hanna, R., Fotso Kuate, A., Fiaboe, K.K.M., Nchoutnji, I., Ndjab, M., et al. (2022) Tephritid Fruit Fly Species Composition, Seasonality, and Fruit Infestations in Two Central African Agro-Ecological Zones. Insects, 13, Article 1045.
https://doi.org/10.3390/insects13111045
[9]  Narveh Awarikabey, E., Afun, J.V.K., Osekre, E.A. and Billah, M.K. (2022) Mango Phenology and Fruit Fly Population Dynamics in the Transition Zone of Ghana. Bulletin of Entomological Research, 113, 169-179.
https://doi.org/10.1017/s0007485322000438
[10]  Ndayizeye, L., Odette, M., Nduwarugira, D., Sibomana, C. and Dieudonné, N. (2024) Dominance of Bactrocera dorsalis Hendel on Ceratitis cosyra Walker (Diptera: Tephritidae) in Orchards in Bujumbura, Burundi. Archives of Agriculture and Environmental Science, 9, 345-349.
https://doi.org/10.26832/24566632.2024.0902020
[11]  Rwomushana, I. and Tanga, C.M. (2016) Fruit Fly Species Composition, Distribution and Host Plants with Emphasis on Mango-Infesting Species. In: Ekesi, S., Mohamed, S. and De Meyer, M., Eds., Fruit Fly Research and Development in AfricaTowards a Sustainable Management Strategy to Improve Horticulture, Springer, 71-106.
https://doi.org/10.1007/978-3-319-43226-7_5
[12]  Vayssières, J., Sinzogan, A., Adandonon, A., Rey, J., Dieng, E.O., Camara, K., et al. (2014) Annual Population Dynamics of Mango Fruit Flies (Diptera: Tephritidae) in West Africa: Socio-Economic Aspects, Host Phenology and Implications for Management. Fruits, 69, 207-222.
https://doi.org/10.1051/fruits/2014011
[13]  Mulungu, K., Muriithi, B.W., Kassie, M. and Khamis, F.M. (2023) The Economic Performance of Mango Integrated Pest Management Practices at Different Scales of Production. Frontiers in Insect Science, 3, Article 1180568.
https://doi.org/10.3389/finsc.2023.1180568
[14]  Papadopoulos, N.T., De Meyer, M., Terblanche, J.S. and Kriticos, D.J. (2024) Fruit Flies: Challenges and Opportunities to Stem the Tide of Global Invasions. Annual Review of Entomology, 69, 355-373.
https://doi.org/10.1146/annurev-ento-022723-103200
[15]  Ekesi, S. and Billah, M.K. (2007) A Field Guide to the Management of Economically Important Tephritid Fruit Flies in Africa. ICIPE.
[16]  Niassy, S., Murithii, B., Omuse, E.R., Kimathi, E., Tonnang, H., Ndlela, S., et al. (2022) Insight on Fruit Fly IPM Technology Uptake and Barriers to Scaling in Africa. Sustainability, 14, Article 2954.
https://doi.org/10.3390/su14052954
[17]  Mwatawala, M.W., Mziray, H., Malebo, H. and De Meyer, M. (2015) Guiding Farmers’ Choice for an Integrated Pest Management Program against the Invasive Bactrocera dorsalis Hendel (Diptera: Tephritidae) in Mango Orchards in Tanzania. Crop Protection, 76, 103-107.
https://doi.org/10.1016/j.cropro.2015.07.001
[18]  Vargas, R., Piñero, J. and Leblanc, L. (2015) An Overview of Pest Species of Bactrocera Fruit Flies (Diptera: Tephritidae) and the Integration of Biopesticides with Other Biological Approaches for Their Management with a Focus on the Pacific Region. Insects, 6, 297-318.
https://doi.org/10.3390/insects6020297
[19]  Bale, J.S., van Lenteren, J.C. and Bigler, F. (2007) Biological Control and Sustainable Food Production. Philosophical Transactions of the Royal Society B: Biological Sciences, 363, 761-776.
https://doi.org/10.1098/rstb.2007.2182
[20]  Vayssières, J., Goergen, G., Lokossou, O., Dossa, P. and Akponon, C. (2005) A New Bactrocera Species in Benin among Mango Fruit Fly (Diptera: Tephritidae) Species. Fruits, 60, 371-377.
https://doi.org/10.1051/fruits:2005042
[21]  Garcia, F.R.M., Ovruski, S.M., Suárez, L., Cancino, J. and Liburd, O.E. (2020) Biological Control of Tephritid Fruit Flies in the Americas and Hawaii: A Review of the Use of Parasitoids and Predators. Insects, 11, Article 662.
https://doi.org/10.3390/insects11100662
[22]  Montoya, P., Liedo, P., Benrey, B., Cancino, J., Barrera, J.F., Sivinski, J., et al. (2000) Biological Control of Anastrepha spp. (Diptera: Tephritidae) in Mango Orchards through Augmentative Releases of Diachasmimorpha longicaudata (Ashmead) (Hymenoptera: Braconidae). Biological Control, 18, 216-224.
https://doi.org/10.1006/bcon.2000.0819
[23]  Wharton, R.A., Smith, J.W., Quicke, D.L.J. and Browning, H.W. (1989) Two New Species of Digonogastra Viereck (Hymenoptera: Braconidae) Parasitic on Neotropical Pyralid Borers (Lepidoptera) in Maize, Sorghum and Surgane. Bulletin of Entomological Research, 79, 401-410.
https://doi.org/10.1017/s000748530001840x
[24]  Badii, K.B., Billah, M.K., Afreh-Nuamah, K., Obeng-Ofori, D. and Nyarko, G. (2016) Preliminary Inventory of Hymenopteran Parasitoids Associated with Fruit-Infesting Flies (Diptera: Tephritidae) in Northern Ghana. International Journal of Pest Management, 62, 267-275.
https://doi.org/10.1080/09670874.2016.1174318
[25]  Gomina, M., Vayssières, J., Kasseney, B.D., Glitho, I.A. and Amevoin, K. (2020) Diversity of Parasitoids Associated with Fruit Flies on Cultivated and Wild Plants in Southern Togo. International Journal of Tropical Insect Science, 40, 887-898.
https://doi.org/10.1007/s42690-020-00147-2
[26]  Mohamed, S.A., Ekesi, S. and Hanna, R. (2010) Old and New Host-Parasitoid Associations: Parasitism of the Invasive Fruit Fly Bactrocera invadens (Diptera: Tephritidae) and Five African Fruit Fly Species by Fopius arisanus, an Asian Opiine Parasitoid. Biocontrol Science and Technology, 20, 183-196.
https://doi.org/10.1080/09583150903447794
[27]  Vargas, R.I., Leblanc, L., Harris, E.J. and Manoukis, N.C. (2012) Regional Suppression of Bactrocera Fruit Flies (Diptera: Tephritidae) in the Pacific through Biological Control and Prospects for Future Introductions into Other Areas of the World. Insects, 3, 727-742.
https://doi.org/10.3390/insects3030727
[28]  Agboka, K.M., Tonnang, H.E.Z., Abdel-Rahman, E.M., Kimathi, E., Mutanga, O., Odindi, J., et al. (2022) A Systematic Methodological Approach to Estimate the Impacts of a Classical Biological Control Agent’s Dispersal at Landscape: Application to Fruit Fly Bactrocera dorsalis and Its Endoparasitoid Fopius arisanus. Biological Control, 175, Article ID: 105053.
https://doi.org/10.1016/j.biocontrol.2022.105053
[29]  Agboka, K.M., Tonnang, H.E.Z., Muriithi, B., Niassy, S., Ndlela, S., Abdel-Rahman, E.M., et al. (2024) Assessing the Potential Economic Benefits of Classical Biological Control of the Invasive Fruit Fly Bactrocera dorsalis by Fopius arisanus in Kenya. International Journal of Tropical Insect Science, 44, 1045-1052.
https://doi.org/10.1007/s42690-024-01221-9
[30]  Nanga Nanga, S., Kekeunou, S., Fotso Kuate, A., Fiaboe, K.K.M., Dongmo Kenfak, M.A., Tonnang, H.E., et al. (2021) Temperature-Dependent Phenology of the Parasitoid Fopius arisanus on the Host Bactrocera dorsalis. Journal of Thermal Biology, 100, Article ID: 103031.
https://doi.org/10.1016/j.jtherbio.2021.103031
[31]  Gnanvossou, D., Hanna, R., Bokonon-Ganta, A.H., Ekesi, S. and Mohamed, S.A. (2016) Release, Establishment and Spread of the Natural Enemy Fopius arisanus (Hymenoptera: Braconidae) for Control of the Invasive Oriental Fruit Fly Bactrocera dorsalis (Diptera: Tephritidae) in Benin, West Africa. In: Ekesi, S., Mohamed, S. and De Meyer, M., Eds., Fruit Fly Research and Development in AfricaTowards a Sustainable Management Strategy to Improve Horticulture, Springer, 575-600.
https://doi.org/10.1007/978-3-319-43226-7_26
[32]  Mama Sambo, S., Togbé, D.R., Sinzogan, A.A.C., Adomou, A., Bokonon‐Ganta, H.A. and Karlsson, M.F. (2019) Habitat Factors Associated with Fopius caudatus Parasitism and Population Level of Its Host, Ceratitis cosyra. Entomologia Experimentalis et Applicata, 168, 28-40.
https://doi.org/10.1111/eea.12858
[33]  Vayssières, J., Wharton, R., Adandonon, A. and Sinzogan, A. (2010) Preliminary Inventory of Parasitoids Associated with Fruit Flies in Mangoes, Guavas, Cashew Pepper and Wild Fruit Crops in Benin. BioControl, 56, 35-43.
https://doi.org/10.1007/s10526-010-9313-y
[34]  Vayssières, J., Adandonon, A., N’Diaye, O., Sinzogan, A., Kooymann, C., Badji, K., et al. (2012) Native Parasitoids Associated with Fruit Flies (Diptera: Tephritidae) in Cultivated and Wild Fruit Crops in Casamance, Senegal. African Entomology, 20, 308-315.
https://doi.org/10.4001/003.020.0221
[35]  Ssembajwe, R., Nguefack, J., Mezafack, K.L., Kagezi, G.H., Gidudu, A., Arinaitwe, G., et al. (2025) Spatiotemporal Dynamics and Drivers of Agricultural Droughts in the Agroecological Zones of Cameroon. International Journal of Applied Earth Observation and Geoinformation, 140, Article ID: 104581.
https://doi.org/10.1016/j.jag.2025.104581
[36]  Leonel, F.L., Zucchi, R.A. and Wharton, R.A. (1995) Distribution and Tephritid Hosts (Diptera) of Braconid Parasitoids (Hymenoptera) in Brazil. International Journal of Pest Management, 41, 208-213.
https://doi.org/10.1080/09670879509371951
[37]  White, I.M. and Elson-Harris, M.M. (1994) Fruit Flies of Economic Significance: Their Identification and Bionomics. CAB International.
[38]  Wharton, R.A. and Gilstrap, F.E. (1983) Key to and Status of Opiine Braconid (Hymenoptera) Parasitoids Used in Biological Control of Ceratitis and Dacus S. L. (Diptera: Tephritidae)1. Annals of the Entomological Society of America, 76, 721-742.
https://doi.org/10.1093/aesa/76.4.721
[39]  Dajoz, R. (1982) Précis d’écologie. Ecologie fondamentale et appliquée. Edition Gauthier-Villars, 1-503.
[40]  Mokam, D.G., Djiéto-Lordon, C., Ngamo Tinkeu, L.S., Rousse, P., Delvare, G. and Bilong Bilong, C.F. (2024) Diversity of Parasitoids (Hymenoptera) Associated with Tephritids (Diptera) Parasitising Cucurbits in Two Agroecological Zones of Cameroon, Central Africa. African Entomology, 32, e17053.
https://doi.org/10.17159/2254-8854/2024/a17053
[41]  Mohamed, S.A., Ramadan, M.M. and Ekesi, S. (2016) In and Out of Africa: Parasitoids Used for Biological Control of Fruit Flies. In: Ekesi, S., Mohamed, S. and De Meyer, M., Eds., Fruit Fly Research and Development in AfricaTowards a Sustainable Management Strategy to Improve Horticulture, Springer, 325-368.
https://doi.org/10.1007/978-3-319-43226-7_16
[42]  Vayssières, J.F., Wharton, R., Delvare, G. and Sanogo, F. (2002) Diversity and Pest Control Potential of Hymenopteran Parasitoids of Ceratitis spp. on Mangos in Mali. Proceedings of 6th International Fruit Fly Symposium, Stellenbosch, 6-10 May 2002, 461-464.
[43]  Zida, I., Nacro, S., Dabiré, R. and Somda, I. (2020) Co-Existence of Bactrocera dorsalis Hendel (Diptera: Tephritidae) and Ceratitis cosyra Walker (Diptera: Tephritidae) in the Mango Orchards in Western Burkina Faso. Advances in Entomology, 8, 46-55.
https://doi.org/10.4236/ae.2020.81004
[44]  Ndiaye, O., Ndiaye, S., Djiba, S., Ba, C.T., Vaughan, L., Rey, J., et al. (2015) Preliminary Surveys after Release of the Fruit Fly Parasitoid Fopius arisanus Sonan (Hymenoptera braconidae) in Mango Production Systems in Casamance (Senegal). Fruits, 70, 91-99.
https://doi.org/10.1051/fruits/2015001
[45]  Quilici, S. and Rousse, P. (2012) Location of Host and Host Habitat by Fruit Fly Parasitoids. Insects, 3, 1220-1235.
https://doi.org/10.3390/insects3041220
[46]  Karlsson, M.F., de Souza, E.O., Ayelo, P.M., Zannou, J.A., Mègnigbèto, G.S.B. and Bokonon-Ganta, A.H. (2018) Interspecific Competition between Egg Parasitoids: Native Fopius caudatus and Exotic Fopius arisanus, in Ceratitis cosyra. Biological Control, 117, 172-181.
https://doi.org/10.1016/j.biocontrol.2017.11.010
[47]  Billah, M.K., Kimani-Njogu, S., Overholt, W.A., Wharton, R.A., Wilson, D.D. and Cobblah, M.A. (2005) The Effect of Host Larvae on Three Psyttalia Species (Hymenoptera: Braconidae), Parasitoids of Fruit-Infesting Flies (Diptera: Tephritidae). International Journal of Tropical Insect Science, 25, 168-175.
https://doi.org/10.1079/ijt200573
[48]  Mohamed, S.A., Overholt, W.A., Wharton, R.A., Lux, S.A. and Eltoum, E.M. (2003) Host Specificity of Psyttalia cosyrae (Hymenoptera: Braconidae) and the Effect of Different Host Species on Parasitoid Fitness. Biological Control, 28, 155-163.
https://doi.org/10.1016/s1049-9644(03)00099-9
[49]  Steck, G.J., Gilstrap, F.E., Wharton, R.A. and Hart, W.G. (1986) Braconid Parasitoids of Tephritidae [Diptera] Infesting Coffee and Other Fruits in West-Central Africa. Entomophaga, 31, 59-67.
https://doi.org/10.1007/bf02390920
[50]  Nanga Nanga, S., Hanna, R., Gnanvossou, D., Fotso Kuate, A., Fiaboe, K.K.M. and Djieto-Lordon, C. (2019) Fruit Preference, Parasitism, and Offspring Fitness of Fopius arisanus (Hymenoptera: Braconidae) Exposed to Bactrocera dorsalis’ (Diptera: Tephritidae) Infested Fruit Species. Environmental Entomology, 48, 1286-1296.
https://doi.org/10.1093/ee/nvz114
[51]  Copeland, R.S., Luke, Q. and Wharton, R.A. (2009) Insects Reared from the Wild Fruits of Kenya. Journal of East African Natural History, 98, 11-66.
https://doi.org/10.2982/028.098.0104
[52]  Mwatawala, M.W., De Meyer, M., Makundi, R.H. and Maerere, A.P. (2006) Seasonality and Host Utilization of the Invasive Fruit Fly, Bactrocera invadens (Dipt., Tephritidae) in Central Tanzania. Journal of Applied Entomology, 130, 530-537.
https://doi.org/10.1111/j.1439-0418.2006.01099.x
[53]  Deguine, J., Atiama-Nurbel, T. and Quilici, S. (2011) Net Choice Is Key to the Augmentorium Technique of Fruit Fly Sequestration and Parasitoid Release. Crop Protection, 30, 198-202.
https://doi.org/10.1016/j.cropro.2010.10.007
[54]  Haran, J., Grove, T., van Noort, S., Benoit, L. and Addison, P. (2019) Natural Biocontrol of Fruit Flies in Indigenous Hosts: A Perspective for Population Control in the Agroecosystem. Biological Control, 137, Article ID: 104022.
https://doi.org/10.1016/j.biocontrol.2019.104022
[55]  Montoya, P., Cancino, J., Pérez-Lachaud, G. and Liedo, P. (2010) Host Size, Superparasitism and Sex Ratio in Mass-Reared Diachasmimorpha longicaudata, a Fruit Fly Parasitoid. BioControl, 56, 11-17.
https://doi.org/10.1007/s10526-010-9307-9
[56]  Supplementary Table 1. Abundance distribution and occurrence of mango tephritids and associated parasitoids in the Sudano Sahelian Savannah agroecological zone of Cameroon from 2020 to 2022.
[57]  Note: Nb. fr. att. = Number of mango’s cultivars attacked by tephritids; Ab. Tephri.+ Para. spp. = Abundance of tephritids and their associated parasitoids reared on mango’s cultivars attacked by tephritids; Ab = Abundance; Oc = Occurrence; D. fullawayi = Diachasmimorpha fullawayi.
[58]  Supplementary Table 2. Abundance distribution and occurrence of mango tephritids and associated parasitoids in the High Guinea Savannah agroecological zone of Cameron from 2020 to 2022.
[59]  Note: Nb. fr. att. = Number of mango’s cultivars attacked by tephritids; Ab. Tephri. + Para. spp. = Abundance of tephritids and their associated parasitoids reared on mango’s varieties attacked by tephritids; Ab = Abundance; Oc = Occurrence.

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