Influence of soil amendments and crop rotation systems on weed diversity, biomass and cover in Sudano-Sahelian Africa

Weed management represents a critical challenge in Sudano-Sahelian agriculture, where environmental constraints and soil fertility limitations create complex weed–crop competition dynamics. This study determined the effects of cropping systems, fertilization modes, and weeding periods on weed diversity, biomass, and ground cover using data from 2018 to 2019. The experiment is being conducted at the Saria Research Station, specifically in Burkina Faso’s only long-term trial (a unique 60-year continuous experiment: 1960–2019). This study used a split-plot design with six fertilization treatments (control, low/high mineral fertilization, organic amendments, and residue incorporation) combined with three crop rotation systems (continuous cropping of sorghum, sorghum–cotton rotation, and sorghum–cowpea rotation). Weed floristic surveys, biomass and ground cover assessments were conducted before and after weeding operations from 2018 to 2019. The study identified 61 weed species across 19 families, with therophytes dominating 75–79% of the flora. Poaceae represented the most diverse family (21 species), followed by Fabaceae (7 species). Species richness varied significantly between years and after weeding (from 7.75 ± 0.41 species per plot to 15.60 ± 0.72 species; p < 0.001). The Shannon index follows the same logic as species richness. In addition, pielou index values were high reflecting sustainable management practices such as crop rotation. Sorghum-cowpea rotation decreased weed cover rate (16.4 ± 2.90%; p < 0.001). After the study, we can state that crop rotation contributes to reducing weed cover rate.

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Publication Details

Journal
Discover Plants.
Published
2026-09-06
DOI
https://doi.org/10.1007/s44372-026-00859-8
Primary Topic
Weed Control and Herbicide Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

Influence of soil amendments and crop rotation systems on weed diversity, biomass and cover in Sudano-Sahelian Africa

Salifou Traoré, A Sanou, Djibril Yonli, Jan B Middendorf et al.
Discover Plants.
Weed Control and Herbicide Applications
article

Influence of soil amendments and crop rotation systems on weed diversity, biomass and cover in Sudano-Sahelian Africa

Salifou Traoré, A Sanou, Djibril Yonli, Jan B Middendorf, Safiatou Sanna, Albert Barro, Zachary P. Stewart, Vara P.V. Prasad, Mariam Soma, Siébou Palé, Mohamed Cissé, Hamidou Traoré
article en

Abstract

Weed management represents a critical challenge in Sudano-Sahelian agriculture, where environmental constraints and soil fertility limitations create complex weed–crop competition dynamics. This study determined the effects of cropping systems, fertilization modes, and weeding periods on weed diversity, biomass, and ground cover using data from 2018 to 2019. The experiment is being conducted at the Saria Research Station, specifically in Burkina Faso’s only long-term trial (a unique 60-year continuous experiment: 1960–2019). This study used a split-plot design with six fertilization treatments (control, low/high mineral fertilization, organic amendments, and residue incorporation) combined with three crop rotation systems (continuous cropping of sorghum, sorghum–cotton rotation, and sorghum–cowpea rotation). Weed floristic surveys, biomass and ground cover assessments were conducted before and after weeding operations from 2018 to 2019. The study identified 61 weed species across 19 families, with therophytes dominating 75–79% of the flora. Poaceae represented the most diverse family (21 species), followed by Fabaceae (7 species). Species richness varied significantly between years and after weeding (from 7.75 ± 0.41 species per plot to 15.60 ± 0.72 species; p < 0.001). The Shannon index follows the same logic as species richness. In addition, pielou index values were high reflecting sustainable management practices such as crop rotation. Sorghum-cowpea rotation decreased weed cover rate (16.4 ± 2.90%; p < 0.001). After the study, we can state that crop rotation contributes to reducing weed cover rate.

Discover Plants.Vol. 3(1)
International Fertilizer Development Center (US), Université Joseph Ki-Zerbo (BF), Kansas State University (US), Nazi Boni University (BF), The Fertilizer Institute (US)
United States Agency for International Development
Openalex Percentile: Top 13%
Weed Control and Herbicide Applications
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