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How nematodes are limiting productivity in yam farms across Ghana
June 29, 2026
Yam diseases during storage, (a) diseased yam showing cracks and dark brown patches beneath skin; (b) dry rot symptoms and yellowing beneath skin.
Yam diseases during storage, (a) diseased yam showing cracks and dark brown patches beneath skin; (b) dry rot symptoms and yellowing beneath skin.

In West Africa, yam production is far more than an agricultural activity. It is a deeply embedded system that sustains millions of livelihoods, shapes rural economies, and reinforces cultural identity. Across the region, yams occupy a central place not only in food systems but also in social traditions, cultural rituals, and seasonal cycles.

Within this landscape, Ghana has emerged as a key actor, combining centuries-old indigenous knowledge with evolving market participation to become one of the most influential players in the global yam economy. While Nigeria dominates overall production, Ghana has carved out a distinct niche as a leading exporter, linking smallholder farmers to international markets and positioning yams as both a subsistence crop and a strategic commodity.

This dual role underscores the crop’s broader significance: yams serve as a vital source of food security for millions of smallholders while simultaneously anchoring value chains that extend beyond local communities into global trade networks.

Together, these dynamics highlight yam production as a critical intersection of tradition, livelihood resilience, and economic transformation in West Africa.

However, while Ghana’s yams travel to high-end markets, yam production by smallholder farmers is constrained by several challenges, including postharvest losses, resulting from yam nematodes. To investigate the status of nematode infestation, management practices and other socio-economic factors contributing to yam production in the country, a study titled; “Yam Nematodes as a Production Constraint in Ghana” has revealed that farmers are only achieving 20% of their potential yield. The reason for this is that most farmers were unaware of the microscopic worm, known as a yam nematode (Scutellonema spp.).

Yam storage facilities used by surveyed farmers, (a) storage in farms; (b) yam barn.
Yam storage facilities used by surveyed farmers, (a) storage in farms; (b) yam barn.

While many farmers reported experiencing pests and diseases, about 77% of the 150 yam farmers selected across seven yam-growing districts for the field survey had no knowledge about nematode infestations in their farms as pests causing damage to the tubers.

During the study, 12 genera of nematodes were identified in the soils of the yam rhizosphere across the seven districts. Tylenchus spp. (35.5%) and Scutellonema spp. (92.8%) were the most

abundant nematodes in soil samples and tuber peels, respectively, while the second highest

nematode in tuber peels was Meloidogyne spp. (4.0%).

According to the study, nematodes like Scutellonema bradys, cause dry rot disease by feeding inside yam tubers, and its implications extend far beyond the yields. As the parasites feed and multiply, they create deep cracks and lesions, which severely degrade the quality of the yam produced. This damage only becomes apparent after harvest, and the yams after being put in storage, begin to decay rapidly, thus, leading to post-harvest losses as high as 63%.

The researchers from IITACGIAR and the University of Ghana found that traditional practices, such as reusing small pieces of tubers, saved as seeds from the previous harvest, and storing yams in poorly ventilated barns, contribute to the spread of nematodes. Also, women who often have less access to land and resources are especially vulnerable to these losses. According to the study, when infected tubers are replanted, it creates an endless cycle where infested harvest leads to infested seeds and the parasite lives on.

While most farmers remain unaware of the true culprit behind shrinking harvests and rotting tuber.

Over 77% of surveyed farmers during the study did not recognize nematodes as a threat, and more than 60% reported major storage losses, with symptoms like cracks, discoloration, and decay in their yams.

Identifying the practices that lead to recycling nematodes in their farms, the study recommends farming practices to combat these challenges and manage postharvest losses better in yam farming in the region.

From farmer education that will help the farmers identify and manage nematode infestations, especially after harvest to improved planting materials that will help break the cycle of infection, the researchers also recommended support for women farmers and strengthening policies to drive sustainable farming.

By empowering farmers with knowledge to improve their farming and storage practices and contributing to seed systems through development of resistant varieties that will supply the yam seed system, Ghana can begin to close its yield gap and protect its most important crop.

The study highlights the critical need to tackle the nematode problem to protect Ghana’s yam industry. This will boost farmer incomes and preserve the cultural status of the crops. With coordinated efforts from farmers, scientists, and policymakers, there is hope that Ghana’s yam industry, and the communities that depend on them can thrive once again.

 Contributed by Oloruntomiwa Oluwole and ‘Timilehin Osunde


Contributed by

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Olaosebikan, Olamide

Olamide Deborah Nwanze is a Senior Research Associate specializing in gender mainstreaming research to inform participatory and inclusive breeding, variety development, and seed systems policies regarding root, tuber, and banana (RTB) crops in the International Institute of Tropical Agriculture Headquarters, Ibadan, Nigeria. She is a PhD candidate at the University of Ibadan and holds an MSc and B. Agric in Agricultural Extension and Rural Development. Olamide is a fellow of the African Women in Agricultural Research and Development – Gender Responsive Agricultural Systems Policy (AWARD-GRASP) and the Gender Responsive Researchers Equipped for Agricultural Transformation (GREAT). She seeks to apply her gender-mainstreaming learnings, gender-responsive research, and policy development, and review expertise to facilitate women, youth, children, and vulnerable social group’s access to and adoption of agricultural Innovations that guarantee food, nutrition, income, and livelihood security in Africa. Her current roles include mentoring research fellows, development of guides and training manuals, implementation and adaptation of gender frameworks and tools, value chain actors’ engagement as citizen science partners, policy review and redesign, data management, and analysis. Her current research explores mixed methods and participatory and interdisciplinary approaches to capture and highlight gender dynamics, needs, preferences, and challenges stakeholders face within the agricultural livelihood value chain to prioritize gender-inclusive strategies in breeding programs, policy design, and implementation.

At IITA, she contributes to the implementation of the CGIAR Accelerated Breeding Initiative and Genetic Innovation Programs; participatory and gender research within the NextGen CassavaHarvestPlusRTBFoods, and Tricot-ClimMob 1000Farms Projects; and gender knowledge communication via the G-LENS webinar series, video documentary, policy briefspublications, and blogs.

 

Recent publications

de Sousa, K., van Etten, J., Manners, R. Bello, A., Teeken, B., Olaosebikan, O., et al. 2024. The tricot approach: an agile framework for decentralized on-farm testing supported by citizen science. A retrospective. Agron. Sustain. Dev. 44, 8. https://doi.org/10.1007/s13593-023-00937-1

Madu, T., Onwuka, S., Nwafor, S., Onyemauwa, N., Ejechi, M., Ofoeze, M., Ukeje, B., Eluagu, C., Olaosebikan, O., Okoye, B., 2024. Gender-Inclusive Consumer Studies Improve Cassava Breeding in Nigeria in: Frontiers in Sociology, volume 9, number: 1224504, doi: 10.3389/fsoc.2024.1224504

Olaosebikan, O.; Bello, A.; Utoblo, O.; Okoye, B.; Olutegbe, N.; Garner, E.; Teeken, B.; Bryan, E.; Forsythe, L.; Cole, S.; Madu, T. 2023.  Stressors and Resilience within the Cassava Value Chain in Nigeria: Preferred Cassava Variety Traits and Response Strategies of Men and Women to Inform Breeding. Sustainability 15, 7837. https://doi.org/10.3390/su15107837

Okoye, B., Ofoeze, M., Ejechi, M., Onwuka, S., Nwafor, S., Onyemauwa, N., Ukeje, B., Eluagu, C., Obidiegwu, J.*, Olaosebikan, O., Madu, T.* 2023. Prioritizing preferred traits in the yam value chain in Nigeria: a gender situation analysis in: Frontiers in Sociology, volume 8, number: 1232626, pages 1 – 9, ISSN 2297-7775, 2023. https://www.frontiersin.org/articles/10.3389/fsoc.2023.1232626/full

Olaosebikan, O., Bello, A. A., de Sousa, K., Ndjouenkeu, R., Adesokan, M., Alamu, E. O., Agbona, A., van Etten, J., Kegah, F. N.*, Dufour, D., Bouniol, A., Teeken, B. 2023. Consumer acceptability of cassava gari-eba food products across cultural and environmental settings using the triadic comparison of technologies approach (tricot) in: Journal of the Science of Food and Agriculture,

Teeken, B., Olaosebikan, O., Bello, A. A., Madu, T.*, Cole, S. M. 2023. Qualitative assessment on the positionality and preferences of dyads in relation to cassava-related activities: working with tricot trial citizen scientists https://hdl.handle.net/10568/138326 Type: Manual

Bouniol, A., Ceballos, H., Bello, A. A., Teeken, B., Olaosebikan, O., Owoade, D., Agbona, A., Fotso Kuate, A., Madu, T.*, Okoye, B.*, Ofoeze, M.*, Nwafor, S.*, Onyemauwa, N.*, Adinsi, L.*, Forsythe, L., Dufour, D. 2023. Varietal impact on women’s labour, workload and related drudgery in processing root, tuber and banana crops: focus on cassava in sub-Saharan Africa in: Journal of the Science of Food and Agriculture, pages 1 – 25, ISSN 0022-5142,

Bello, A. A., Agbona, A., Olaosebikan, O., Edughaen, G., Dufour, D., Bouniol, A., Iluebbey, P., Ndjouenkeu, R.*, Rabbi, I. Y., Teeken, B. 2023. Genetic and environmental effects on processing productivity and food product yield: drudgery of women’s work in: Journal of the Science of Food and Agriculture, pages 1 – 32, ISSN 0022-5142, 5

Cavicchioli, M., Zimbiti, T., Teeken, B., Nwanze, D.O., Liani, M., Parkes, E. & Bello, A. 2023. IITA-Gender Responsive Breeding Training Report. Genetic Resources Center, IITA-HQ, Ibadan, 21-23 September, 2022. Ibadan, Nigeria: IITA, (34 p.).https://hdl.handle.net/10568/131368

Agbona, A. Peteti P., Teeken B., Olaosebikan O. Bello, A. A., Parkes, E., Rabbi, I. Y., Mueller, L., Egesi, C., Kulakow, P. 2022. Data Management in Multi-disciplinary African RTB Crop Breeding Programs. In: Williamson, H.F., Leonelli, S. (eds) Towards Responsible Plant Data Linkage: Data Challenges for Agricultural Research and Development. Springer, Cham. https://doi.org/10.1007/978-3-031-13276-6_5

Lora Forsythe, Pricilla Marimo, Sarah Mayanja, Olamide D. Olaosebikan, Esme Stuart, Bela Teeken, Benjamin Okoye, Tessy Madu, (2021). Cross-product Gender Analysis of RTBfoods Step 2 Gendered Food Mapping on RTB Products. Understanding the Drivers of Trait Preferences and the Development of Multi-user RTB Product Profiles, WP1. London, UK: RTBfoods Field Scientific Report, 30 p.

Teeken, B., Garner, E., Agbona, A., Balogun, I., Olaosebikan, O., Bello, A., Madu, T., Okoye, B., Egesi, C., Kulakow, P. and Tufan, H.A. 2021. Beyond “Women’s Traits”: Exploring How Gender, Social Difference, and Household Characteristics Influence Trait Preferences. Frontiers Sustainable Food Systems 5:740926. https://doi.org/10.3389/fsufs.2021.740926

Teeken, B., Agbona, A., Bello, A., Olaosebikan, O., Alamu, E., Adesokan, M., Awoyale, W., Madu, T., Okoye, B., Chijioke, U., Owoade, D., Okoro, M., Bouniol, A., Dufour, D., Hershey, C., Rabbi, I., Maziya‐Dixon, B., Egesi, C., Tufan, H. and Kulakow, P. (020. Understanding cassava varietal preferences through pairwise ranking of gari‐eba and fufu prepared by local farmer–processors. Int J Food Sci Technol. https://doi.org/10.1111/ijfs.14862

Bela Teeken, Olamide Olaosebikan, Ireti Balogun, Benjamin Okoye, Tessy Madu, Steven Cole, Abolore Bello, Elizabeth Parkes. (2020). Piloting the G+ customer and product profile tools for gender-responsive cassava breeding in Nigeria. Nigeria: International Institute of Tropical Agriculture (IITA). https://hdl.handle.net/20.500.11766/13000