Application of Omics Technologies for Cowpea Improvement

) is a vital crop for food security, nutrition, and climate resilience in sub-Saharan African and other semi-arid regions. However, its improvement is constrained by the complexity of polygenic traits such as drought tolerance, pest resistance, and seed quality. Conventional breeding, while foundational, remains insufficient to address these challenges at the required pace. Recent advances in multi-omics technologies, including genomics, transcriptomics, proteomics, and metabolomics, provide new opportunities to dissect complex traits, identify candidate genes, and accelerate the development of resilient, high-yielding cultivars. This review presents a critical synthesis of current applications of omics technologies in cowpea improvement, highlighting their contributions to stress adaptation, nutritional enhancement, and precision breeding. The review also examines key technical and institutional constraints limiting the adoption of omics-assisted breeding in cowpea, including inadequate research infrastructure, challenges in multi-omics data integration, and limited technical capacity across breeding programs in sub-Saharan Africa. It discusses strategies to address these barriers through regional collaboration, investment in bioinformatics capacity, and the integration of computational approaches into breeding pipelines. Overall, the review concludes that combining multi-omics technologies with artificial intelligence and machine learning has strong potential to improve genotype-phenotype prediction, accelerate breeding decisions, and support the development of climate-resilient and nutritionally enhanced cowpea cultivars.

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Publication Details

Journal
Plant-Environment Interactions
Published
2026-09-15
DOI
https://doi.org/10.1002/pei3.70211
Primary Topic
Agricultural pest management studies
Type
article
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article

Application of Omics Technologies for Cowpea Improvement

Abdoul-Razak Oumarou Mahamane, Junior S. Kamara, Festus O. Olasupo, Katleho S. Selele
Plant-Environment Interactions
Agricultural pest management studies
article

Application of Omics Technologies for Cowpea Improvement

Abdoul-Razak Oumarou Mahamane, Junior S. Kamara, Festus O. Olasupo, Katleho S. Selele
article en

Abstract

) is a vital crop for food security, nutrition, and climate resilience in sub-Saharan African and other semi-arid regions. However, its improvement is constrained by the complexity of polygenic traits such as drought tolerance, pest resistance, and seed quality. Conventional breeding, while foundational, remains insufficient to address these challenges at the required pace. Recent advances in multi-omics technologies, including genomics, transcriptomics, proteomics, and metabolomics, provide new opportunities to dissect complex traits, identify candidate genes, and accelerate the development of resilient, high-yielding cultivars. This review presents a critical synthesis of current applications of omics technologies in cowpea improvement, highlighting their contributions to stress adaptation, nutritional enhancement, and precision breeding. The review also examines key technical and institutional constraints limiting the adoption of omics-assisted breeding in cowpea, including inadequate research infrastructure, challenges in multi-omics data integration, and limited technical capacity across breeding programs in sub-Saharan Africa. It discusses strategies to address these barriers through regional collaboration, investment in bioinformatics capacity, and the integration of computational approaches into breeding pipelines. Overall, the review concludes that combining multi-omics technologies with artificial intelligence and machine learning has strong potential to improve genotype-phenotype prediction, accelerate breeding decisions, and support the development of climate-resilient and nutritionally enhanced cowpea cultivars.

Plant-Environment InteractionsVol. 7(5)
University of Liberia (LR), North-West University (ZA), Cocoa Research Institute of Nigeria (NG)
Climate action
Openalex Percentile: Top 13%
Agricultural pest management studies
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Application of Omics Technologies for Cowpea Improvement — Abdoul-Razak Oumarou Mahamane, Junior S. Kamara, et al. · Plant-Environment Interactions (2026) | TGRS Research Map | TGRS