胚乳
糊粉
生物
转录因子
调节器
转录调控
细胞生物学
基因
营养物
农学
基因表达调控
栽培
抄写(语言学)
粮食产量
基因表达
功能(生物学)
生物技术
植物
粮食品质
植物育种
产量(工程)
发起人
胚胎
作者
Jian Shi,Zhiqiang Li,Zeyu Wang,S. Y. Pan,Xu Wu,Xi Wang,Yafeng Ye,Zhuoping Xu,Junjun He,Zhiyong Zhang
出处
期刊:Nature plants
[Nature Portfolio]
日期:2026-03-19
卷期号:12 (3): 617-634
被引量:1
标识
DOI:10.1038/s41477-026-02238-3
摘要
As the main nutrient reservoir in cereal grains, the endosperm largely determines grain yield, performance and nutrition. However, knowledge of genes that coordinate endosperm filling and nutrient deposition, which could offer potential for genetic improvement of grain traits, remain limited. Here we identified ZmMYB127, a filling-endosperm-specific MYB transcription factor. Its knockout disrupted filling-stage aleurone layer morphology and nutrient accumulation, leading to reduced kernel weight, quality and nutrition. ZmMYB127 exerts dual transcriptional control over core endosperm-filling genes, including naked endosperm-1/2 (NKD1/2), crinkly4 (CR4) and opaque2 (O2). ZmMYB127 forms an activation complex with O2 to synergistically induce NKD1/2 expression by binding to two distinct cis-regulatory elements (CREs). Conversely, the co-repressor ZmLUG3 bridges ZmMYB127 and ZmABI4, a B3-domain transcription factor, to form a repressive complex that suppresses O2 and CR4 via another CRE pair. Filling-endosperm-specific overexpression of ZmMYB127 enhanced kernel weight, quality and nutrition. Introducing this overexpression into the elite cultivar Zhengdan958 confirmed its breeding potential. Furthermore, its rice homologue OsMYB20 also plays a conserved role in endosperm filling. Our findings establish ZmMYB127 as a promising target for grain improvement without trade-offs for precision breeding.
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