Regulation of Arabidopsis thaliana 5S rRNA Genes
doi: 10.1093/pcp/pcm043
pmid: 17412735
Regulation of Arabidopsis thaliana 5S rRNA Genes
The Arabidopsis thaliana genome comprises around 1,000 copies of 5S rRNA genes encoding both major and minor 5S rRNAs. In mature wild-type leaves, the minor 5S rRNA genes are silent. Using different mutants of DNA methyltransferases (met1, cmt3 and met1 cmt3), components of the RNAi pathway (ago4) or post-translational histone modifier (hda6/sil1), we show that the corresponding proteins are needed to maintain proper methylation patterns at heterochromatic 5S rDNA repeats. Using reverse transcription-PCR and cytological analyses, we report that a decrease of 5S rDNA methylation at CG or CNG sites in these mutants leads to the release of 5S rRNA gene silencing which occurred without detectable changes of the 5S rDNA chromatin structure. In spite of severely reduced DNA methylation, the met1 cmt3 double mutant revealed no increase in minor 5S rRNA transcripts. Furthermore, the release of silencing of minor 5S rDNAs can be achieved without increased formation of euchromatic loops by 5S rDNA, and is independent from the global heterochromatin content. Additionally, fluorescence in situ hybridization with centromeric 180 bp repeats confirmed that these highly repetitive sequences, in spite of their elevated transcriptional activity in the DNA methyltransferase mutants (met1, cmt3 and met1 cmt3), remain within chromocenters of the mutant nuclei.
- Leibniz Association Germany
- Blaise Pascal University France
- Institute of Plant Genetics and Crop Plant Research Germany
- University of Clermont Auvergne France
DNA-Cytosine Methylases, Transcription, Genetic, Arabidopsis Proteins, Reverse Transcriptase Polymerase Chain Reaction, Arabidopsis, RNA, Ribosomal, 5S, Genes, rRNA, DNA Methylation, Plants, Genetically Modified, DNA, Ribosomal, Gene Expression Regulation, Plant, Heterochromatin, Mutation, DNA (Cytosine-5-)-Methyltransferases, In Situ Hybridization, Repetitive Sequences, Nucleic Acid
DNA-Cytosine Methylases, Transcription, Genetic, Arabidopsis Proteins, Reverse Transcriptase Polymerase Chain Reaction, Arabidopsis, RNA, Ribosomal, 5S, Genes, rRNA, DNA Methylation, Plants, Genetically Modified, DNA, Ribosomal, Gene Expression Regulation, Plant, Heterochromatin, Mutation, DNA (Cytosine-5-)-Methyltransferases, In Situ Hybridization, Repetitive Sequences, Nucleic Acid
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