ArticleNature communications2024
Upstream regulator of genomic imprinting in rice endosperm is a small RNA-associated chromatin remodeler.
Article in Nature communications, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed.
- Presence and function of small RNAs during plant reproduction.RNA biology · 2026Review
- Histone variant H2A.X represses deposition of active H3K4me3 marks and restricts H2A.W incorporation.Nucleic acids research · 2026Article
- From the MMC Specification to Endosperm Cellularization in Arabidopsis: A Developmental-Handover Framework for Seed Initiation.Plants (Basel, Switzerland) · 2026Review
- Transposable element-mediated DNA methylation of the NAC20 and NAC26 promoters led to a maternal effect on grain filling.Journal of integrative plant biology · 2026Article
- Article
- Targeted Bisulfite Sequencing and DNA Methylation Analysis in Rice Endosperm and Other Tissues.Methods in molecular biology (Clifton, N.J.) · 2026Article
- Epigenetic control of seed development and dormancy in cereals.Plant signaling & behavior · 2025Review
- Transcription factors instruct DNA methylation patterns in plant reproductive tissues.Nature cell biology · 2025Article
- Loss of function of chromatin remodeler OsCLSY4 leads to RdDM-mediated mis-expression of endosperm-specific genes affecting grain qualities.PLoS genetics · 2025Article
- Decoding hybridization barriers: the molecular and genetic orchestration of the triploid block in Arabidopsis thaliana.BMC plant biology · 2025Review
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4 authors.
Funding
Abstract
Genomic imprinting is observed in endosperm, a placenta-like seed tissue, where transposable elements (TEs) and repeat-derived small RNAs (sRNAs) mediate epigenetic changes in plants. In imprinting, uniparental gene expression arises due to parent-specific epigenetic marks on one allele but not on the other. The importance of sRNAs and their regulation in endosperm development or in imprinting is poorly understood in crops. Here we show that a previously uncharacterized CLASSY (CLSY)-family chromatin remodeler named OsCLSY3 is essential for rice endosperm development and imprinting, acting as an upstream player in the sRNA pathway. Comparative transcriptome and genetic analysis indicated its endosperm-preferred expression and its likely paternal imprinted nature. These important features are modulated by RNA-directed DNA methylation (RdDM) of tandemly arranged TEs in its promoter. Upon perturbation of OsCLSY3 in transgenic lines, we observe defects in endosperm development and a loss of around 70% of all sRNAs. Interestingly, well-conserved endosperm-specific sRNAs (siren) that are vital for reproductive fitness in angiosperms are also dependent on OsCLSY3. We observed that many imprinted genes and seed development-associated genes are under the control of OsCLSY3. These results support an essential role of OsCLSY3 in rice endosperm development and imprinting, and propose similar regulatory strategies involving CLSY3 homologs among other cereals.
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