Locus-Specific Ribosomal RNA Gene Silencing in Nucleolar Dominance

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Locus-Specific Ribosomal RNA Gene Silencing in Nucleolar Dominance

The silencing of one parental set of rRNA genes in a genetic hybrid is an epigenetic phenomenon known as nucleolar dominance. We showed previously that silencing is restricted to the nucleolus organizer regions (NORs), the loci where rRNA genes are tandemly arrayed, and does not spread to or from neighboring protein-coding genes. One hypothesis is that nucleolar dominance is the net result of h...

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Nucleolar dominance and ribosomal RNA gene silencing.

Nucleolar dominance is an epigenetic phenomenon that occurs in genetic hybrids and describes the expression of 45S rRNA genes inherited from one progenitor due to the silencing of the other progenitor's rRNA genes. Nucleolar dominance is a manifestation of rRNA gene dosage control, which also occurs in non-hybrids, regulating the number of active rRNA genes according to the cellular demand for ...

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A common feature of interspecific animal and plant hybrids is the uniparental silencing of ribosomal RNA gene transcription, or nucleolar dominance. A leading explanation for the genetic basis of nucleolar dominance in animal hybrids is the enhancer-imbalance model. The model proposes that limiting transcription factors are titrated by a greater number of enhancer-bearing subrepeat elements in ...

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Postembryonic Establishment of Megabase-Scale Gene Silencing in Nucleolar Dominance

Nucleolar dominance is an epigenetic phenomenon in plant and animal genetic hybrids that describes the expression of 45S ribosomal RNA genes (rRNA genes) inherited from only one progenitor due to the silencing of the other progenitor's rRNA genes. rRNA genes are tandemly arrayed at nucleolus organizer regions (NORs) that span millions of basepairs, thus gene silencing in nucleolar dominance occ...

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Research over the last decade has demonstrated that the regulated packaging of DNA into chromatin is fundamental to keeping genes in an active/open or a more condensed/inactive conformation. Nucleosomes, the basic repeating unit of chromatin, contain two molecules each of canonical histones, H2A, H2B, H3, and H4. These are organized as an H3–H4 tetramer associated with two H2A–H2B dimers. The N...

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ژورنال

عنوان ژورنال: PLoS ONE

سال: 2007

ISSN: 1932-6203

DOI: 10.1371/journal.pone.0000815