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

Zhenyu Gao(Chinese Academy of Agricultural Sciences), Yufeng Wang(Chinese Academy of Sciences), Guang Chen(Chinese Academy of Agricultural Sciences), Anpeng Zhang(Chinese Academy of Agricultural Sciences), Shenglong Yang(Chinese Academy of Agricultural Sciences), Lianguang Shang(Agricultural Genomics Institute at Shenzhen), Danying Wang(Chinese Academy of Agricultural Sciences), Banpu Ruan(Chinese Academy of Agricultural Sciences), Chaolei Liu(Chinese Academy of Agricultural Sciences), Hongzhen Jiang(Chinese Academy of Agricultural Sciences), Guojun Dong(Chinese Academy of Agricultural Sciences), Li Zhu(Chinese Academy of Agricultural Sciences), Jiang Hu(Chinese Academy of Agricultural Sciences), Guangheng Zhang(Chinese Academy of Agricultural Sciences), Dali Zeng(Chinese Academy of Agricultural Sciences), Longbiao Guo(Chinese Academy of Agricultural Sciences), Guohua Xu(Nanjing Agricultural University), Sheng Teng(Chinese Academy of Sciences), Nicholas P. Harberd(University of Oxford), Qian Qian(Agricultural Genomics Institute at Shenzhen)
Nature Communications
November 15, 2019
Cited by 290Open Access
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Abstract

Abstract The indica and japonica rice ( Oryza sativa ) subspecies differ in nitrate (NO 3 − ) assimilation capacity and nitrogen (N) use efficiency (NUE). Here, we show that a major component of this difference is conferred by allelic variation at OsNR2 , a gene encoding a NADH/NADPH-dependent NO 3 − reductase (NR). Selection-driven allelic divergence has resulted in variant indica and japonica OsNR2 alleles encoding structurally distinct OsNR2 proteins, with indica OsNR2 exhibiting greater NR activity. Indica OsNR2 also promotes NO 3 − uptake via feed-forward interaction with OsNRT1.1B , a gene encoding a NO 3 − uptake transporter. These properties enable indica OsNR2 to confer increased effective tiller number, grain yield and NUE on japonica rice, effects enhanced by interaction with an additionally introgressed indica OsNRT1.1B allele. In consequence, indica OsNR2 provides an important breeding resource for the sustainable increases in japonica rice yields necessary for future global food security.


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