Resetting of a tandem microRNA156 enables vegetative perennial growth in rice

成果类型:
Article
署名作者:
Dai, Bingxin; Lv, Danfeng; Chen, Erwang; Gu, Zhoulin; Guo, Dongling; Li, Yan; Zhang, Yaoxin; Liu, Kun; Wang, Ahong; Zhao, Qiang; Zhao, Yan; Hou, Qingqing; Wang, Yongchun; Feng, Qi; Fan, Danlin; Zhou, Congcong; Tian, Qilin; Wang, Zixuan; Wang, Jia-Wei; Han, Bin
署名单位:
Chinese Academy of Sciences; Center for Excellence in Molecular Plant Sciences, CAS; Chinese Academy of Sciences; Center for Excellence in Molecular Plant Sciences, CAS; ShanghaiTech University
刊物名称:
SCIENCE
ISSN/ISSBN:
0036-8075; 1095-9203
DOI:
10.1126/science.adv2188
发表日期:
2026-03-19
关键词:
PLANT ARCHITECTURE transcription factors domestication EVOLUTION TRANSITION expression genetics insights reveals HISTORY
摘要:
Annual cultivated rice was domesticated from perennial wild rice, yet the genetic mechanism of perennial growth habit remains unclear. Using introgression lines of wild and cultivated rice, we identified the Endless Branches and Tillers (EBT1) locus, comprising tandem microRNA156 genes (MIR156BC). This locus is responsible for floral reversion and vegetative propagation contributing to perennial growth in wild rice. The wild rice allele EBT1W1943 exhibits higher chromatin accessibility and lower levels of the repressive histone mark H3K27me3 to reset MIR156BC expression in tiller buds compared with the cultivated allele. Additionally, we introgressed EBT1 and prostrate growth genes PROG1 and TIG1 to generate recombinant lines exhibiting a robust perennial habit. Our findings pave the way for developing sustainable perennial rice cultivars in the future.
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