Polycomb protein ZmEMF1a restricts endosperm proliferation and directs differentiation via stage‐specific H2Aub1 and H3K27me3 landscapes in maize

Polycomb group (PcG) proteins serve as pivotal epigenetic repressors that govern the transcriptional programs underlying cell growth and differentiation. However, their functional roles in maize endosperm remain largely unexplored. Here, we characterize the recessive maize small-kernel mutant sks1, which exhibits persistent endosperm cell hyperproliferation and compromised cell expansion during grain filling. Map-based cloning reveals that SKS1 encodes ZmEMF1a, a PcG protein that physically interacts with subunits of both PRC1 and PRC2. Integrated ChIP-seq and RNA-seq analyses were performed to investigate its epigenetic regulatory functions. ZmEMF1a orchestrates a stage-specific epigenetic regulatory program: it predominantly mediates H3K27me3 deposition at 6 d after pollination (DAP), while coordinately regulating the deposition of both H3K27me3 and H2Aub1 at 10 DAP. Loss of ZmEMF1a leads to ectopic hyperproliferation of differentiated endosperm tissues, specifically the basal endosperm transfer layer (BETL) and aleurone (AL), as well as elevated vitamin B content in the endosperm. Collectively, these findings establish ZmEMF1a as an epigenetic regulator that balances endosperm proliferation, cell fate specification, and nutrient accumulation through stage-specific histone modifications, thereby offering promising targets for enhancing maize yield and nutritional quality.

Authors

Institutions

Publication Details

Journal
New Phytologist
Published
2026-09-09
DOI
https://doi.org/10.1111/nph.71543
Primary Topic
Plant Molecular Biology Research
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Polycomb protein ZmEMF1a restricts endosperm proliferation and directs differentiation via stage‐specific H2Aub1 and H3K27me3 landscapes in maize

Mingyue Zhang, Jiechen Wang, Yongcai Huang, Xian Sheng Zhang et al.
New Phytologist
Plant Molecular Biology Research
article

Polycomb protein ZmEMF1a restricts endosperm proliferation and directs differentiation via stage‐specific H2Aub1 and H3K27me3 landscapes in maize

Mingyue Zhang, Jiechen Wang, Yongcai Huang, Xian Sheng Zhang, Jinxiao Zhang, Hongjie Zhu, Hongjun Liu, Qiong Wang, Shuai Li, Xiang Zhao, Xiaohan Li, Chao Zhou, Lina Xu, Dongsheng Shi, Xuerong Yang, Gang Xu, Yuqing Ni, Yajie Zhao, Mengyao Li
article en

Abstract

Polycomb group (PcG) proteins serve as pivotal epigenetic repressors that govern the transcriptional programs underlying cell growth and differentiation. However, their functional roles in maize endosperm remain largely unexplored. Here, we characterize the recessive maize small-kernel mutant sks1, which exhibits persistent endosperm cell hyperproliferation and compromised cell expansion during grain filling. Map-based cloning reveals that SKS1 encodes ZmEMF1a, a PcG protein that physically interacts with subunits of both PRC1 and PRC2. Integrated ChIP-seq and RNA-seq analyses were performed to investigate its epigenetic regulatory functions. ZmEMF1a orchestrates a stage-specific epigenetic regulatory program: it predominantly mediates H3K27me3 deposition at 6 d after pollination (DAP), while coordinately regulating the deposition of both H3K27me3 and H2Aub1 at 10 DAP. Loss of ZmEMF1a leads to ectopic hyperproliferation of differentiated endosperm tissues, specifically the basal endosperm transfer layer (BETL) and aleurone (AL), as well as elevated vitamin B content in the endosperm. Collectively, these findings establish ZmEMF1a as an epigenetic regulator that balances endosperm proliferation, cell fate specification, and nutrient accumulation through stage-specific histone modifications, thereby offering promising targets for enhancing maize yield and nutritional quality.

New Phytologist
Sichuan Agricultural University (CN), Shanghai Architectural Design & Research Institute (CN), Center for Excellence in Molecular Plant Sciences (CN), Sanya University (CN), Henan Agricultural University (CN), Shandong Agricultural University (CN)
Zero hunger
Openalex Percentile: Top 13%
Plant Molecular Biology Research
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.