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Science-based decision support for formulating crop fertilizer recommendations in sub-Saharan Africa

In sub-Saharan Africa, there is considerable spatial and temporal variability in relations between nutrient application and crop yield, due to varying inherent soil nutrients supply, soil moisture, crop management and germplasm. This variability affects fertilizer use efficiency and crop productivit...

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Autores principales: Rurinda, Jairos, Zingore, Shamie, Jibrin, Jibrin M., Balemi, Tesfaye, Masuki, Kenneth, Andersson, Jens A., Pampolino, Mirasol F., Mohammed, Ibrahim, Mutegi, James, Kamara, Alpha Y., Vanlauwe, Bernard, Craufurd, Peter Q.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Applied Science [etc.] 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7063700/
https://www.ncbi.nlm.nih.gov/pubmed/32255892
http://dx.doi.org/10.1016/j.agsy.2020.102790
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author Rurinda, Jairos
Zingore, Shamie
Jibrin, Jibrin M.
Balemi, Tesfaye
Masuki, Kenneth
Andersson, Jens A.
Pampolino, Mirasol F.
Mohammed, Ibrahim
Mutegi, James
Kamara, Alpha Y.
Vanlauwe, Bernard
Craufurd, Peter Q.
author_facet Rurinda, Jairos
Zingore, Shamie
Jibrin, Jibrin M.
Balemi, Tesfaye
Masuki, Kenneth
Andersson, Jens A.
Pampolino, Mirasol F.
Mohammed, Ibrahim
Mutegi, James
Kamara, Alpha Y.
Vanlauwe, Bernard
Craufurd, Peter Q.
author_sort Rurinda, Jairos
collection PubMed
description In sub-Saharan Africa, there is considerable spatial and temporal variability in relations between nutrient application and crop yield, due to varying inherent soil nutrients supply, soil moisture, crop management and germplasm. This variability affects fertilizer use efficiency and crop productivity. Therefore, development of decision systems that support formulation and delivery of site-specific fertilizer recommendations is important for increased crop yield and environmental protection. Nutrient Expert (NE) is a computer-based decision support system, which enables extension advisers to generate field- or area-specific fertilizer recommendations based on yield response to fertilizer and nutrient use efficiency. We calibrated NE for major maize agroecological zones in Nigeria, Ethiopia and Tanzania, with data generated from 735 on-farm nutrient omission trials conducted between 2015 and 2017. Between 2016 and 2018, 368 NE performance trials were conducted across the three countries in which recommendations generated with NE were evaluated relative to soil-test based recommendations, the current blanket fertilizer recommendations and a control with no fertilizer applied. Although maize yield response to fertilizer differed with geographic location; on average, maize yield response to nitrogen (N), phosphorus (P) and potassium (K) were respectively 2.4, 1.6 and 0.2 t ha(−1) in Nigeria, 2.3, 0.9 and 0.2 t ha(−1) in Ethiopia, and 1.5, 0.8 and 0.2 t ha(−1) in Tanzania. Secondary and micronutrients increased maize yield only in specific areas in each country. Agronomic use efficiencies of N were 18, 22 and 13 kg grain kg(−1) N, on average, in Nigeria, Ethiopia and Tanzania, respectively. In Nigeria, NE recommended lower amounts of P by 9 and 11 kg ha(−1) and K by 24 and 38 kg ha(−1) than soil-test based and regional fertilizer recommendations, respectively. Yet maize yield (4 t ha(−1)) was similar among the three methods. Agronomic use efficiencies of P and K (300 and 250 kg kg(−1), respectively) were higher with NE than with the blanket recommendation (150 and 70 kg kg(−1)). In Ethiopia, NE and soil-test based respectively recommended lower amounts of P by 8 and 19 kg ha(−1) than the blanket recommendations, but maize yield (6 t ha(−1)) was similar among the three methods. Overall, fertilizer recommendations generated with NE maintained high maize yield, but at a lower fertilizer input cost than conventional methods. NE was effective as a simple and cost-effective decision support tool for fine-tuning fertilizer recommendations to farm-specific conditions and offers an alternative to soil testing, which is hardly available to most smallholder farmers.
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spelling pubmed-70637002020-04-01 Science-based decision support for formulating crop fertilizer recommendations in sub-Saharan Africa Rurinda, Jairos Zingore, Shamie Jibrin, Jibrin M. Balemi, Tesfaye Masuki, Kenneth Andersson, Jens A. Pampolino, Mirasol F. Mohammed, Ibrahim Mutegi, James Kamara, Alpha Y. Vanlauwe, Bernard Craufurd, Peter Q. Agric Syst Article In sub-Saharan Africa, there is considerable spatial and temporal variability in relations between nutrient application and crop yield, due to varying inherent soil nutrients supply, soil moisture, crop management and germplasm. This variability affects fertilizer use efficiency and crop productivity. Therefore, development of decision systems that support formulation and delivery of site-specific fertilizer recommendations is important for increased crop yield and environmental protection. Nutrient Expert (NE) is a computer-based decision support system, which enables extension advisers to generate field- or area-specific fertilizer recommendations based on yield response to fertilizer and nutrient use efficiency. We calibrated NE for major maize agroecological zones in Nigeria, Ethiopia and Tanzania, with data generated from 735 on-farm nutrient omission trials conducted between 2015 and 2017. Between 2016 and 2018, 368 NE performance trials were conducted across the three countries in which recommendations generated with NE were evaluated relative to soil-test based recommendations, the current blanket fertilizer recommendations and a control with no fertilizer applied. Although maize yield response to fertilizer differed with geographic location; on average, maize yield response to nitrogen (N), phosphorus (P) and potassium (K) were respectively 2.4, 1.6 and 0.2 t ha(−1) in Nigeria, 2.3, 0.9 and 0.2 t ha(−1) in Ethiopia, and 1.5, 0.8 and 0.2 t ha(−1) in Tanzania. Secondary and micronutrients increased maize yield only in specific areas in each country. Agronomic use efficiencies of N were 18, 22 and 13 kg grain kg(−1) N, on average, in Nigeria, Ethiopia and Tanzania, respectively. In Nigeria, NE recommended lower amounts of P by 9 and 11 kg ha(−1) and K by 24 and 38 kg ha(−1) than soil-test based and regional fertilizer recommendations, respectively. Yet maize yield (4 t ha(−1)) was similar among the three methods. Agronomic use efficiencies of P and K (300 and 250 kg kg(−1), respectively) were higher with NE than with the blanket recommendation (150 and 70 kg kg(−1)). In Ethiopia, NE and soil-test based respectively recommended lower amounts of P by 8 and 19 kg ha(−1) than the blanket recommendations, but maize yield (6 t ha(−1)) was similar among the three methods. Overall, fertilizer recommendations generated with NE maintained high maize yield, but at a lower fertilizer input cost than conventional methods. NE was effective as a simple and cost-effective decision support tool for fine-tuning fertilizer recommendations to farm-specific conditions and offers an alternative to soil testing, which is hardly available to most smallholder farmers. Elsevier Applied Science [etc.] 2020-04 /pmc/articles/PMC7063700/ /pubmed/32255892 http://dx.doi.org/10.1016/j.agsy.2020.102790 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rurinda, Jairos
Zingore, Shamie
Jibrin, Jibrin M.
Balemi, Tesfaye
Masuki, Kenneth
Andersson, Jens A.
Pampolino, Mirasol F.
Mohammed, Ibrahim
Mutegi, James
Kamara, Alpha Y.
Vanlauwe, Bernard
Craufurd, Peter Q.
Science-based decision support for formulating crop fertilizer recommendations in sub-Saharan Africa
title Science-based decision support for formulating crop fertilizer recommendations in sub-Saharan Africa
title_full Science-based decision support for formulating crop fertilizer recommendations in sub-Saharan Africa
title_fullStr Science-based decision support for formulating crop fertilizer recommendations in sub-Saharan Africa
title_full_unstemmed Science-based decision support for formulating crop fertilizer recommendations in sub-Saharan Africa
title_short Science-based decision support for formulating crop fertilizer recommendations in sub-Saharan Africa
title_sort science-based decision support for formulating crop fertilizer recommendations in sub-saharan africa
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7063700/
https://www.ncbi.nlm.nih.gov/pubmed/32255892
http://dx.doi.org/10.1016/j.agsy.2020.102790
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