G1-mediated OsMADS1 repression regulates sterile lemma development in rice.

IF 4.5 2区 生物学 Q1 PLANT SCIENCES
Xuemei Qin, Jinliang Sun, Ru Li, Weijian Cen, Rongbai Li, Jijing Luo
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引用次数: 0

Abstract

Key message: This study shows that transcription factor G1 represses the floral development regulator OsMADS1 by binding to the CArG-box and YACTGTW motifs in OsMADS1 promoter to specify sterile lemma development in rice. In addition, we first demonstrate that G1 physically interacted with the OsMADS1 K-box domain, which enhances G1-mediated repression of OsMADS1. Sterile lemma is a unique organ formation during the development of rice spikelet, and the regulatory mechanism underlying its development remains poorly understood. Previous studies showed that transcription factor G1 (Os07g0139300) plays a critical role in sterile lemma development. Here, we further reveal that G1 transcriptionally represses the expression of OsMADS1, a key gene regulating floral organ development in rice, by directly binding to the CArG box and YACTGTW motifs in its promoter. Importantly, we first demonstrate that G1 specifically targets the K-box domain of OsMADS1 to establish physical interaction, and the interaction significantly enhances G1-mediated transcriptional repression of OsMADS1 expression. The feedback regulatory loop formed between G1 and OsMADS1 provides a key clue for further elucidating the molecular mechanisms underlying sterile lemma development.

g1介导的OsMADS1抑制调控水稻不育外稃发育。
关键信息:本研究表明,转录因子G1通过结合OsMADS1启动子中的CArG-box和YACTGTW基序来抑制水稻花发育调节因子OsMADS1,从而指定不育外稃的发育。此外,我们首次证明了G1与OsMADS1的K-box结构域相互作用,从而增强了G1介导的OsMADS1抑制。不育外稃是水稻小穗发育过程中一个独特的器官,其发育的调控机制尚不清楚。既往研究表明,转录因子G1 (Os07g0139300)在不育外稃发育中起关键作用。本研究进一步发现,G1通过直接结合其启动子中的CArG box和YACTGTW基序,通过转录抑制水稻花器官发育关键基因OsMADS1的表达。重要的是,我们首先证明了G1特异性地靶向OsMADS1的K-box结构域来建立物理相互作用,这种相互作用显著增强了G1介导的OsMADS1表达的转录抑制。G1和OsMADS1之间形成的反馈调控回路为进一步阐明不育外稃发育的分子机制提供了关键线索。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Plant Cell Reports
Plant Cell Reports 生物-植物科学
CiteScore
10.80
自引率
1.60%
发文量
135
审稿时长
3.2 months
期刊介绍: Plant Cell Reports publishes original, peer-reviewed articles on new advances in all aspects of plant cell science, plant genetics and molecular biology. Papers selected for publication contribute significant new advances to clearly identified technological problems and/or biological questions. The articles will prove relevant beyond the narrow topic of interest to a readership with broad scientific background. The coverage includes such topics as: - genomics and genetics - metabolism - cell biology - abiotic and biotic stress - phytopathology - gene transfer and expression - molecular pharming - systems biology - nanobiotechnology - genome editing - phenomics and synthetic biology The journal also publishes opinion papers, review and focus articles on the latest developments and new advances in research and technology in plant molecular biology and biotechnology.
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