开枪
分蘖(植物学)
农学
生物量(生态学)
氮气
生长素
生物量分配
作物
生物
营养物
肥料
氮肥
禾本科
植物营养
植物生长
农作物产量
细胞分裂素
植物
化学
氮气循环
机制(生物学)
人类受精
生产(经济)
作者
Chengbo Shen,Zhe Ji,Wu Jiao,Siyu Zhang,Yunzhi Huang,Yaojun Qin,Menghan Huang,Shuming Kang,Zulong Mo,Bingyu Jiang,Ying Yu,Yajing Song,Yue Li,Jiayi Xu,Yanan Tian,Yuchen Xie,Guosheng Xiong,Shaokui Wang,Guohua Xu,Xiangdong Fu
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-02-26
卷期号:391 (6788): 937-945
被引量:5
标识
DOI:10.1126/science.aeb8384
摘要
Nitrogen (N) deficiency–induced increases in the root-to-shoot biomass ratio in plants are adaptive in nature but suboptimal for agriculture. Understanding the regulatory mechanisms governing this developmental plasticity could help improve crop performance while reducing fertilizer application. We identified OsWRI1a (WRINKLED1a) as a regulatory hub coordinating rice root and shoot growth in response to external N supply, thereby stabilizing the root-to-shoot ratio. In roots, OsWRI1a enhances N-responsive development by promoting auxin accumulation. Meanwhile, shoot OsWRI1a stimulates tiller development and therefore shoot growth. We identified an elite OsWRI1a haplotype that minimizes root-to-shoot ratio fluctuation under N deficiency, improving N-use efficiency and grain yield. Our findings reveal a central mechanism coordinating N-responsive growth allocation for sustainable agriculture.
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