Coffee variety outweighs associated tree identity in shaping disease incidence and fruit load in a large-scale Ugandan Robusta agroforestry system

Abstract Robusta coffee in Uganda is traditionally cultivated under agroforestry systems, yet farmers increasingly question whether certain tree species exacerbate disease risks or negatively impact coffee productivity. Consequently, we assessed the effects of associated tree identity, spatial arrangement, and coffee variety on major coffee diseases and fruit loads, based on a cross-sectional field survey in the Kaweri Coffee Plantation, Uganda’s largest Robusta coffee estate. Four dominant associated tree species—Mugavu ( Albizia coriaria ), Jackfruit ( Artocarpus heterophyllus ), Bark-cloth fig ( Ficus natalensis ), and Avocado ( Persea americana )—were selected across multiple Robusta varieties. Three major coffee diseases, i.e. coffee wilt disease (CWD), coffee leaf rust disease (CLR), and Brown-eye spot (BES) were monitored during the rainy season, when disease pressure peaks. Disease incidence was extremely high for CLR and BES, approaching 100%. Coffee variety was the strongest predictor of leaf CLR and BES incidence. By contrast, fruit load depended on complex interactions among tree species, tree–coffee distance, and coffee variety. Notably, fruit load per branch increased significantly near Mugavu, while other tree species had neutral or negative effects. The relation between CLR and fruit load also varied among varieties. Our findings highlight the need for Robusta breeding programs to consider agroforestry conditions and tree–disease interactions, rather than relying on single-trait selection. Moreover, associated tree diversity, density, and spatial arrangement—as well as broader ecological factors such as soil fertility and biodiversity—likely modulate diseases and productivity, and should be integrated into future agroforestry recommendations.

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Publication Details

Journal
Scientific Reports
Published
2026-09-28
DOI
https://doi.org/10.1038/s41598-026-73682-6
Primary Topic
Coffee research and impacts
Type
article
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article

Coffee variety outweighs associated tree identity in shaping disease incidence and fruit load in a large-scale Ugandan Robusta agroforestry system

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article

Coffee variety outweighs associated tree identity in shaping disease incidence and fruit load in a large-scale Ugandan Robusta agroforestry system

Moreen Uwimbabazi, Virginie Ravigné, Arthur K. Tugume, Ronald Kisekka, Joel Buyinza, Bernard Fungo, Judith Ssali Nantongo, Shahasi Y. Athman, Hervé Sanguin, Mathis Gheno, Silas Makune, Fabrice Pinard
article en

Abstract

Abstract Robusta coffee in Uganda is traditionally cultivated under agroforestry systems, yet farmers increasingly question whether certain tree species exacerbate disease risks or negatively impact coffee productivity. Consequently, we assessed the effects of associated tree identity, spatial arrangement, and coffee variety on major coffee diseases and fruit loads, based on a cross-sectional field survey in the Kaweri Coffee Plantation, Uganda’s largest Robusta coffee estate. Four dominant associated tree species—Mugavu ( Albizia coriaria ), Jackfruit ( Artocarpus heterophyllus ), Bark-cloth fig ( Ficus natalensis ), and Avocado ( Persea americana )—were selected across multiple Robusta varieties. Three major coffee diseases, i.e. coffee wilt disease (CWD), coffee leaf rust disease (CLR), and Brown-eye spot (BES) were monitored during the rainy season, when disease pressure peaks. Disease incidence was extremely high for CLR and BES, approaching 100%. Coffee variety was the strongest predictor of leaf CLR and BES incidence. By contrast, fruit load depended on complex interactions among tree species, tree–coffee distance, and coffee variety. Notably, fruit load per branch increased significantly near Mugavu, while other tree species had neutral or negative effects. The relation between CLR and fruit load also varied among varieties. Our findings highlight the need for Robusta breeding programs to consider agroforestry conditions and tree–disease interactions, rather than relying on single-trait selection. Moreover, associated tree diversity, density, and spatial arrangement—as well as broader ecological factors such as soil fertility and biodiversity—likely modulate diseases and productivity, and should be integrated into future agroforestry recommendations.

Scientific Reports
Openalex Percentile: Top 13%
Coffee research and impacts
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