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OsASN1 Overexpression in Rice Increases Grain Protein Content and Yield under Nitrogen-Limiting Conditions

Nitrogen (N) is a major limiting factor affecting crop yield in unfertilized soil. Thus, cultivars with a high N use efficiency (NUE) and good grain protein content (GPC) are needed to fulfill the growing food demand and to reduce environmental burden. This is especially true for rice (Oryza sativa...

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Autores principales: Lee, Sichul, Park, Joonheum, Lee, Jinwon, Shin, Dongjin, Marmagne, Anne, Lim, Pyung Ok, Masclaux-Daubresse, Céline, An, Gynheung, Nam, Hong Gil
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7377344/
https://www.ncbi.nlm.nih.gov/pubmed/32384162
http://dx.doi.org/10.1093/pcp/pcaa060
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author Lee, Sichul
Park, Joonheum
Lee, Jinwon
Shin, Dongjin
Marmagne, Anne
Lim, Pyung Ok
Masclaux-Daubresse, Céline
An, Gynheung
Nam, Hong Gil
author_facet Lee, Sichul
Park, Joonheum
Lee, Jinwon
Shin, Dongjin
Marmagne, Anne
Lim, Pyung Ok
Masclaux-Daubresse, Céline
An, Gynheung
Nam, Hong Gil
author_sort Lee, Sichul
collection PubMed
description Nitrogen (N) is a major limiting factor affecting crop yield in unfertilized soil. Thus, cultivars with a high N use efficiency (NUE) and good grain protein content (GPC) are needed to fulfill the growing food demand and to reduce environmental burden. This is especially true for rice (Oryza sativa L.) that is cultivated with a high input of N fertilizer and is a primary staple food crop for more than half of the global population. Here, we report that rice asparagine synthetase 1 (OsASN1) is required for grain yield and grain protein contents under both N-sufficient (conventional paddy fields) and N-limiting conditions from analyses of knockout mutant plants. In addition, we show that overexpression (OX) of OsASN1 results in better nitrogen uptake and assimilation, and increased tolerance to N limitation at the seedling stage. Under field conditions, the OsASN1 OX rice plants produced grains with increased N and protein contents without yield reduction compared to wild-type (WT) rice. Under N-limited conditions, the OX plants displayed increased grain yield and protein content with enhanced photosynthetic activity compared to WT rice. Thus, OsASN1 can be an effective target gene for the development of rice cultivars with higher grain protein content, NUE, and grain yield under N-limiting conditions.
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spelling pubmed-73773442020-07-27 OsASN1 Overexpression in Rice Increases Grain Protein Content and Yield under Nitrogen-Limiting Conditions Lee, Sichul Park, Joonheum Lee, Jinwon Shin, Dongjin Marmagne, Anne Lim, Pyung Ok Masclaux-Daubresse, Céline An, Gynheung Nam, Hong Gil Plant Cell Physiol Regular Papers Nitrogen (N) is a major limiting factor affecting crop yield in unfertilized soil. Thus, cultivars with a high N use efficiency (NUE) and good grain protein content (GPC) are needed to fulfill the growing food demand and to reduce environmental burden. This is especially true for rice (Oryza sativa L.) that is cultivated with a high input of N fertilizer and is a primary staple food crop for more than half of the global population. Here, we report that rice asparagine synthetase 1 (OsASN1) is required for grain yield and grain protein contents under both N-sufficient (conventional paddy fields) and N-limiting conditions from analyses of knockout mutant plants. In addition, we show that overexpression (OX) of OsASN1 results in better nitrogen uptake and assimilation, and increased tolerance to N limitation at the seedling stage. Under field conditions, the OsASN1 OX rice plants produced grains with increased N and protein contents without yield reduction compared to wild-type (WT) rice. Under N-limited conditions, the OX plants displayed increased grain yield and protein content with enhanced photosynthetic activity compared to WT rice. Thus, OsASN1 can be an effective target gene for the development of rice cultivars with higher grain protein content, NUE, and grain yield under N-limiting conditions. Oxford University Press 2020-05-08 /pmc/articles/PMC7377344/ /pubmed/32384162 http://dx.doi.org/10.1093/pcp/pcaa060 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of Japanese Society of Plant Physiologists. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Regular Papers
Lee, Sichul
Park, Joonheum
Lee, Jinwon
Shin, Dongjin
Marmagne, Anne
Lim, Pyung Ok
Masclaux-Daubresse, Céline
An, Gynheung
Nam, Hong Gil
OsASN1 Overexpression in Rice Increases Grain Protein Content and Yield under Nitrogen-Limiting Conditions
title OsASN1 Overexpression in Rice Increases Grain Protein Content and Yield under Nitrogen-Limiting Conditions
title_full OsASN1 Overexpression in Rice Increases Grain Protein Content and Yield under Nitrogen-Limiting Conditions
title_fullStr OsASN1 Overexpression in Rice Increases Grain Protein Content and Yield under Nitrogen-Limiting Conditions
title_full_unstemmed OsASN1 Overexpression in Rice Increases Grain Protein Content and Yield under Nitrogen-Limiting Conditions
title_short OsASN1 Overexpression in Rice Increases Grain Protein Content and Yield under Nitrogen-Limiting Conditions
title_sort osasn1 overexpression in rice increases grain protein content and yield under nitrogen-limiting conditions
topic Regular Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7377344/
https://www.ncbi.nlm.nih.gov/pubmed/32384162
http://dx.doi.org/10.1093/pcp/pcaa060
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