A novel HSI2 mutation in Arabidopsis affects the PHD-like domain and leads to derepression of seed-specific gene expression
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Summary
Results indicate that the transcriptional repression activity of the HSI2 PHD domain could be mediated, at least in part, by its participation in the deposition of H3K27me3 on the chromatin of specific target genes.
- Type
- article
- Published
- 2012-04-03
- Cited by
- 40
- References
- 65
- OpenAlex
- https://openalex.org/W1979372894
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:17456753
Keywords
Biology, Arabidopsis, Mutant, Genetics, Arabidopsis thaliana
References
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- Dynamics of histone H3 lysine 27 trimethylation in Plant Development
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- The auxin, hydrogen peroxide and salicylic acid induced expression of the Arabidopsis GST6 promoter is mediated in part by an ocs element.
- Arabidopsis TFL2/LHP1 Specifically Associates with Genes Marked by Trimethylation of Histone H3 Lysine 27
- Positional cloning in Arabidopsis. Why it feels good to have a genome initiative working for you.
- Model-based analysis of oligonucleotide arrays: expression index computation and outlier detection.
Cited by
- Identification and Characterization of MicroRNAs in the Leaf of Ma Bamboo (Dendrocalamus latiflorus) by Deep Sequencing
- The Arabidopsis KH-Domain RNA-Binding Protein ESR1 Functions in Components of Jasmonate Signalling, Unlinking Growth Restraint and Resistance to Stress
- PHDs govern plant development
- Identification of Direct Targets of FUSCA3, a Key Regulator of Arabidopsis Seed Development1[C][W][OA]
- The Use of Bio-Guided Fractionation to Explore the Use of Leftover Biomass in Dutch Flower Bulb Production as Allelochemicals against Weeds
- HSI2/VAL1 PHD-like domain promotes H3K27 trimethylation to repress the expression of seed maturation genes and complex transgenes in Arabidopsis seedlings
- Root restriction affected anthocyanin composition and up-regulated the transcription of their biosynthetic genes during berry development in ‘Summer Black’ grape
- Distinct Roles of LAFL Network Genes in Promoting the Embryonic Seedling Fate in the Absence of VAL Repression1[W][OPEN]
- The rice GERMINATION DEFECTIVE 1, encoding a B3 domain transcriptional repressor, regulates seed germination and seedling development by integrating GA and carbohydrate metabolism
- Regulation of galactomannan biosynthesis in coffee seeds.
- High-level expression of sugar inducible gene2 (HSI2) is a negative regulator of drought stress tolerance in Arabidopsis
- PRC1 marks the difference in plant PcG repression.
- Regulation of the seed to seedling developmental phase transition by the LAFL and VAL transcription factor networks
- Investigating the Role of the VAL1 Transcription Factor in Arabidopsis thaliana Embryo Development
- Potential targets of VIVIPAROUS1/ABI3-LIKE1 (VAL1) repression in developing Arabidopsis thaliana embryos.
- SCARECROW-LIKE15 interacts with HISTONE DEACETYLASE19 and is essential for repressing the seed maturation programme
- HSI2 Repressor Recruits MED13 and HDA6 to Down-Regulate Seed Maturation Gene Expression Directly During Arabidopsis Early Seedling Growth.
- Isoform-Specific Expression During Embryo Development in Arabidopsis and Soybean
- A cis cold memory element and a trans epigenome reader mediate Polycomb silencing of FLC by vernalization in Arabidopsis
- ABI5-binding proteins (AFPs) alter transcription of ABA-induced genes via a variety of interactions with chromatin modifiers
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