Exploring nitrogen use efficiency in Musa spp

Banana (Musa spp.) is an important staple crop, especially in developing countries where it ensures food security. However, optimal yields are not obtained due to both biotic and abiotic constraints. Low soil fertility is one of the limiting factors in the East African highlands, as the currently ap...

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Autores principales: Gambart, C., Vanluchene, M., Swennen, R., Carpentier, Sebastien C.
Formato: Journal Article
Lenguaje:Inglés
Publicado: International Society for Horticultural Science 2023
Materias:
Acceso en línea:https://hdl.handle.net/10568/130572
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author Gambart, C.
Vanluchene, M.
Swennen, R.
Carpentier, Sebastien C.
author_browse Carpentier, Sebastien C.
Gambart, C.
Swennen, R.
Vanluchene, M.
author_facet Gambart, C.
Vanluchene, M.
Swennen, R.
Carpentier, Sebastien C.
author_sort Gambart, C.
collection Repository of Agricultural Research Outputs (CGSpace)
description Banana (Musa spp.) is an important staple crop, especially in developing countries where it ensures food security. However, optimal yields are not obtained due to both biotic and abiotic constraints. Low soil fertility is one of the limiting factors in the East African highlands, as the currently applied amount of organic (crop residues, animal manure, etc.) and inorganic fertilizers by smallholder farmers is not sufficient to maintain adequate soil fertility levels for optimal growth and production. This study, therefore, focuses specifically on the nitrogen (N) requirements of the banana plant and its genotypic differences. Genotypes with a high nitrogen use efficiency (NUE), that produce a high amount of dry mass per unit of nitrogen taken up, are thus of great importance. To get insight into the diversity of NUE among different genotypes, two hydroponics experiments were performed. First, four genotypes were exposed to four N treatments (0, 0.6, 1.3 and 7 mM). While all plants exposed to a N concentration of 1.3 mM or lower showed clear deficiency symptoms, the variability within the 0.6 mM treatment was mainly explained by the genotypes. This N treatment (0.6 mM) was, therefore, subsequently used to screen 16 genotypes in high-throughput and revealed genome-specific strategies to cope with limited N availability. AAA-EA genomes were least impacted by the limited N availability in both root and shoot. AAA genomes were most affected. Nevertheless, all N deficient plants invested in an absolute way more in roots than their shoot, resulting in significant larger root:shoot ratios. We conclude that a significant diversity exists in NUE among banana genomes and genotypes, and, therefore, encourage stakeholders to further investigate this genetic diversity.
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spelling CGSpace1305722025-11-11T18:53:49Z Exploring nitrogen use efficiency in Musa spp Gambart, C. Vanluchene, M. Swennen, R. Carpentier, Sebastien C. bananas food security genotypes diversity hydroponics nutrient use efficiency nutrient deficiencies east africa Banana (Musa spp.) is an important staple crop, especially in developing countries where it ensures food security. However, optimal yields are not obtained due to both biotic and abiotic constraints. Low soil fertility is one of the limiting factors in the East African highlands, as the currently applied amount of organic (crop residues, animal manure, etc.) and inorganic fertilizers by smallholder farmers is not sufficient to maintain adequate soil fertility levels for optimal growth and production. This study, therefore, focuses specifically on the nitrogen (N) requirements of the banana plant and its genotypic differences. Genotypes with a high nitrogen use efficiency (NUE), that produce a high amount of dry mass per unit of nitrogen taken up, are thus of great importance. To get insight into the diversity of NUE among different genotypes, two hydroponics experiments were performed. First, four genotypes were exposed to four N treatments (0, 0.6, 1.3 and 7 mM). While all plants exposed to a N concentration of 1.3 mM or lower showed clear deficiency symptoms, the variability within the 0.6 mM treatment was mainly explained by the genotypes. This N treatment (0.6 mM) was, therefore, subsequently used to screen 16 genotypes in high-throughput and revealed genome-specific strategies to cope with limited N availability. AAA-EA genomes were least impacted by the limited N availability in both root and shoot. AAA genomes were most affected. Nevertheless, all N deficient plants invested in an absolute way more in roots than their shoot, resulting in significant larger root:shoot ratios. We conclude that a significant diversity exists in NUE among banana genomes and genotypes, and, therefore, encourage stakeholders to further investigate this genetic diversity. 2023-05 2023-06-01T09:01:02Z 2023-06-01T09:01:02Z Journal Article https://hdl.handle.net/10568/130572 en Open Access application/pdf International Society for Horticultural Science Gambart, C., Vanluchene, M., Swennen, R. & Carpentier, S.C. (2023). Exploring nitrogen use efficiency in Musa spp. Acta Horticulturae, 1367, 141-150.
spellingShingle bananas
food security
genotypes
diversity
hydroponics
nutrient use efficiency
nutrient deficiencies
east africa
Gambart, C.
Vanluchene, M.
Swennen, R.
Carpentier, Sebastien C.
Exploring nitrogen use efficiency in Musa spp
title Exploring nitrogen use efficiency in Musa spp
title_full Exploring nitrogen use efficiency in Musa spp
title_fullStr Exploring nitrogen use efficiency in Musa spp
title_full_unstemmed Exploring nitrogen use efficiency in Musa spp
title_short Exploring nitrogen use efficiency in Musa spp
title_sort exploring nitrogen use efficiency in musa spp
topic bananas
food security
genotypes
diversity
hydroponics
nutrient use efficiency
nutrient deficiencies
east africa
url https://hdl.handle.net/10568/130572
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