The regulation of chromatin configuration at AGAMOUS locus by LFR‐SYD‐containing complex is critical for reproductive organ development in Arabidopsis

Author:

Lin Xiaowei12,Yuan Tingting1,Guo Hong1,Guo Yi1,Yamaguchi Nobutoshi3,Wang Shuge1,Zhang Dongxia1,Qi Dongmei1,Li Jiayu1,Chen Qiang1,Liu Xinye1,Zhao Long4,Xiao Jun4,Wagner Doris5,Cui Sujuan1,Zhao Hongtao1ORCID

Affiliation:

1. Hebei Key Laboratory of Molecular and Cellular Biology, Key Laboratory of Molecular and Cellular Biology of Ministry of Education, Hebei Research Center of the Basic Discipline of Cell Biology, Hebei Collaboration Innovation Center for Cell Signaling, College of Life Science Hebei Normal University Shijiazhuang 050024 China

2. School of Traditional Chinese Medicine Tianjin University of Traditional Chinese Medicine Tianjin 301617 China

3. Biological Science Nara Institute of Science and Technology 8916‐5, Takayama, Ikoma Nara 630‐0192 Japan

4. Institute of Genetics and Developmental Biology Chinese Academy of Sciences Beijing China

5. Department of Biology University of Pennsylvania Philadelphia 19104‐6084 Pennsylvania USA

Abstract

SUMMARYSwitch defective/sucrose non‐fermentable (SWI/SNF) chromatin remodeling complexes are evolutionarily conserved, multi‐subunit machinery that play vital roles in the regulation of gene expression by controlling nucleosome positioning and occupancy. However, little is known about the subunit composition of SPLAYED (SYD)‐containing SWI/SNF complexes in plants. Here, we show that the Arabidopsis thaliana Leaf and Flower Related (LFR) is a subunit of SYD‐containing SWI/SNF complexes. LFR interacts directly with multiple SWI/SNF subunits, including the catalytic ATPase subunit SYD, in vitro and in vivo. Phenotypic analyses of lfr‐2 mutant flowers revealed that LFR is important for proper filament and pistil development, resembling the function of SYD. Transcriptome profiling revealed that LFR and SYD shared a subset of co‐regulated genes. We further demonstrate that the LFR and SYD interdependently activate the transcription of AGAMOUS (AG), a C‐class floral organ identity gene, by regulating the occupation of nucleosome, chromatin loop, histone modification, and Pol II enrichment on the AG locus. Furthermore, the chromosome conformation capture (3C) assay revealed that the gene loop at AG locus is negatively correlated with the AG expression level, and LFR‐SYD was functional to demolish the AG chromatin loop to promote its transcription. Collectively, these results provide insight into the molecular mechanism of the Arabidopsis SYD‐SWI/SNF complex in the control of higher chromatin conformation of the floral identity gene essential to plant reproductive organ development.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Cell Biology,Plant Science,Genetics

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