基因座(遗传学)
生物
粮食产量
等位基因
农学
栽培
调节器
产量(工程)
动物科学
植物育种
植物生长
突变体
持续时间(音乐)
氮气
作者
Zhiyong Li,Guan Li,Zhichao Liu,Zhichao Liu,Zhen Cheng,Yibo Wu,Xinyong Liu,Xin Ai,Xin Ai,Guanghao Li,Guanghao Li,Guanghao Li,Yichen Cheng,Man Yin,Yichen Cheng,Yu Cheng,Yifeng Wang,Xiaohong Tong,Jie Huang,Guomin Zhang
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-08-20
卷期号:393 (6813): eady1619-eady1619
标识
DOI:10.1126/science.ady1619
摘要
Reconciling the trade-off between short growth duration and high grain yield is essential for enhancing annual rice yields. We found that qTGW1a , encoding a flowering locus T-like protein, controls heading and nitrogen use efficiency (NUE) underpinning grain weight and yield in rice. TGW1a interacts with and stabilizes Ghd7 and Hd1 to boost NUE and grain yield. Natural variations in the promoter enable the ancestral allele TGW1a JZ to maintain an intermediate level of TGW1a transcription. By decoupling its linkage to the weak grain number regulator Gn1a JZ , TGW1a JZ conferred 3.67 to 8.67 days shorter growth duration and 4.22 to 11.00% higher grain yield in five modern cultivars and derived F 1 hybrids. This research uncovers a locus for breeding rice varieties featuring shorter growth durations and higher yields.
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