The indica nitrate reductase gene OsNR2 allele enhances rice yield potential and nitrogen use efficiency

Indica rice has higher nitrate assimilation and nitrogen use efficiency (NUE) than japonica rice, but the mechanism is unclear. Here, the authors reveal that the difference is partly due to allelic variation of a nitrate reductase encoding gene and this indica allele can increase yield potential and...

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Autores principales: Zhenyu Gao, Yufeng Wang, Guang Chen, Anpeng Zhang, Shenglong Yang, Lianguang Shang, Danying Wang, Banpu Ruan, Chaolei Liu, Hongzhen Jiang, Guojun Dong, Li Zhu, Jiang Hu, Guangheng Zhang, Dali Zeng, Longbiao Guo, Guohua Xu, Sheng Teng, Nicholas P. Harberd, Qian Qian
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/e929dbb9e5ea4eda957add556f9cebf6
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spelling oai:doaj.org-article:e929dbb9e5ea4eda957add556f9cebf62021-12-02T16:58:15ZThe indica nitrate reductase gene OsNR2 allele enhances rice yield potential and nitrogen use efficiency10.1038/s41467-019-13110-82041-1723https://doaj.org/article/e929dbb9e5ea4eda957add556f9cebf62019-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13110-8https://doaj.org/toc/2041-1723Indica rice has higher nitrate assimilation and nitrogen use efficiency (NUE) than japonica rice, but the mechanism is unclear. Here, the authors reveal that the difference is partly due to allelic variation of a nitrate reductase encoding gene and this indica allele can increase yield potential and NUE.Zhenyu GaoYufeng WangGuang ChenAnpeng ZhangShenglong YangLianguang ShangDanying WangBanpu RuanChaolei LiuHongzhen JiangGuojun DongLi ZhuJiang HuGuangheng ZhangDali ZengLongbiao GuoGuohua XuSheng TengNicholas P. HarberdQian QianNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-10 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Zhenyu Gao
Yufeng Wang
Guang Chen
Anpeng Zhang
Shenglong Yang
Lianguang Shang
Danying Wang
Banpu Ruan
Chaolei Liu
Hongzhen Jiang
Guojun Dong
Li Zhu
Jiang Hu
Guangheng Zhang
Dali Zeng
Longbiao Guo
Guohua Xu
Sheng Teng
Nicholas P. Harberd
Qian Qian
The indica nitrate reductase gene OsNR2 allele enhances rice yield potential and nitrogen use efficiency
description Indica rice has higher nitrate assimilation and nitrogen use efficiency (NUE) than japonica rice, but the mechanism is unclear. Here, the authors reveal that the difference is partly due to allelic variation of a nitrate reductase encoding gene and this indica allele can increase yield potential and NUE.
format article
author Zhenyu Gao
Yufeng Wang
Guang Chen
Anpeng Zhang
Shenglong Yang
Lianguang Shang
Danying Wang
Banpu Ruan
Chaolei Liu
Hongzhen Jiang
Guojun Dong
Li Zhu
Jiang Hu
Guangheng Zhang
Dali Zeng
Longbiao Guo
Guohua Xu
Sheng Teng
Nicholas P. Harberd
Qian Qian
author_facet Zhenyu Gao
Yufeng Wang
Guang Chen
Anpeng Zhang
Shenglong Yang
Lianguang Shang
Danying Wang
Banpu Ruan
Chaolei Liu
Hongzhen Jiang
Guojun Dong
Li Zhu
Jiang Hu
Guangheng Zhang
Dali Zeng
Longbiao Guo
Guohua Xu
Sheng Teng
Nicholas P. Harberd
Qian Qian
author_sort Zhenyu Gao
title The indica nitrate reductase gene OsNR2 allele enhances rice yield potential and nitrogen use efficiency
title_short The indica nitrate reductase gene OsNR2 allele enhances rice yield potential and nitrogen use efficiency
title_full The indica nitrate reductase gene OsNR2 allele enhances rice yield potential and nitrogen use efficiency
title_fullStr The indica nitrate reductase gene OsNR2 allele enhances rice yield potential and nitrogen use efficiency
title_full_unstemmed The indica nitrate reductase gene OsNR2 allele enhances rice yield potential and nitrogen use efficiency
title_sort indica nitrate reductase gene osnr2 allele enhances rice yield potential and nitrogen use efficiency
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/e929dbb9e5ea4eda957add556f9cebf6
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