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The fate of 35S rRNA genes in the allotetraploid grass Brachypodium hybridum

Nucleolar dominance (ND) consists of the reversible silencing of 35S/45S rDNA loci inherited from one of the ancestors of an allopolyploid. The molecular mechanisms by which one ancestral rDNA set is selected for silencing remain unclear. We applied a combination of molecular (Southern blot hybridiz...

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Autores principales: Borowska‐Zuchowska, Natalia, Kovarik, Ales, Robaszkiewicz, Ewa, Tuna, Metin, Tuna, Gulsemin Savas, Gordon, Sean, Vogel, John P., Hasterok, Robert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7497271/
https://www.ncbi.nlm.nih.gov/pubmed/32506573
http://dx.doi.org/10.1111/tpj.14869
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author Borowska‐Zuchowska, Natalia
Kovarik, Ales
Robaszkiewicz, Ewa
Tuna, Metin
Tuna, Gulsemin Savas
Gordon, Sean
Vogel, John P.
Hasterok, Robert
author_facet Borowska‐Zuchowska, Natalia
Kovarik, Ales
Robaszkiewicz, Ewa
Tuna, Metin
Tuna, Gulsemin Savas
Gordon, Sean
Vogel, John P.
Hasterok, Robert
author_sort Borowska‐Zuchowska, Natalia
collection PubMed
description Nucleolar dominance (ND) consists of the reversible silencing of 35S/45S rDNA loci inherited from one of the ancestors of an allopolyploid. The molecular mechanisms by which one ancestral rDNA set is selected for silencing remain unclear. We applied a combination of molecular (Southern blot hybridization and reverse‐transcription cleaved amplified polymorphic sequence analysis), genomic (analysis of variants) and cytogenetic (fluorescence in situ hybridization) approaches to study the structure, expression and epigenetic landscape of 35S rDNA in an allotetraploid grass that exhibits ND, Brachypodium hybridum (genome composition DDSS), and its putative progenitors, Brachypodium distachyon (DD) and Brachypodium stacei (SS). In progenitor genomes, B. stacei showed a higher intragenomic heterogeneity of rDNA compared with B. distachyon. In all studied accessions of B. hybridum, there was a reduction in the copy number of S homoeologues, which was accompanied by their inactive transcriptional status. The involvement of DNA methylation in CG and CHG contexts in the silencing of the S‐genome rDNA loci was revealed. In the B. hybridum allotetraploid, ND is stabilized towards the D‐genome units, irrespective of the polyphyletic origin of the species, and does not seem to be influenced by homoeologous 35S rDNA ratios and developmental stage.
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spelling pubmed-74972712020-09-25 The fate of 35S rRNA genes in the allotetraploid grass Brachypodium hybridum Borowska‐Zuchowska, Natalia Kovarik, Ales Robaszkiewicz, Ewa Tuna, Metin Tuna, Gulsemin Savas Gordon, Sean Vogel, John P. Hasterok, Robert Plant J Original Articles Nucleolar dominance (ND) consists of the reversible silencing of 35S/45S rDNA loci inherited from one of the ancestors of an allopolyploid. The molecular mechanisms by which one ancestral rDNA set is selected for silencing remain unclear. We applied a combination of molecular (Southern blot hybridization and reverse‐transcription cleaved amplified polymorphic sequence analysis), genomic (analysis of variants) and cytogenetic (fluorescence in situ hybridization) approaches to study the structure, expression and epigenetic landscape of 35S rDNA in an allotetraploid grass that exhibits ND, Brachypodium hybridum (genome composition DDSS), and its putative progenitors, Brachypodium distachyon (DD) and Brachypodium stacei (SS). In progenitor genomes, B. stacei showed a higher intragenomic heterogeneity of rDNA compared with B. distachyon. In all studied accessions of B. hybridum, there was a reduction in the copy number of S homoeologues, which was accompanied by their inactive transcriptional status. The involvement of DNA methylation in CG and CHG contexts in the silencing of the S‐genome rDNA loci was revealed. In the B. hybridum allotetraploid, ND is stabilized towards the D‐genome units, irrespective of the polyphyletic origin of the species, and does not seem to be influenced by homoeologous 35S rDNA ratios and developmental stage. John Wiley and Sons Inc. 2020-07-03 2020-08 /pmc/articles/PMC7497271/ /pubmed/32506573 http://dx.doi.org/10.1111/tpj.14869 Text en © 2020 The Authors. The Plant Journal published by Society for Experimental Biology and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Borowska‐Zuchowska, Natalia
Kovarik, Ales
Robaszkiewicz, Ewa
Tuna, Metin
Tuna, Gulsemin Savas
Gordon, Sean
Vogel, John P.
Hasterok, Robert
The fate of 35S rRNA genes in the allotetraploid grass Brachypodium hybridum
title The fate of 35S rRNA genes in the allotetraploid grass Brachypodium hybridum
title_full The fate of 35S rRNA genes in the allotetraploid grass Brachypodium hybridum
title_fullStr The fate of 35S rRNA genes in the allotetraploid grass Brachypodium hybridum
title_full_unstemmed The fate of 35S rRNA genes in the allotetraploid grass Brachypodium hybridum
title_short The fate of 35S rRNA genes in the allotetraploid grass Brachypodium hybridum
title_sort fate of 35s rrna genes in the allotetraploid grass brachypodium hybridum
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7497271/
https://www.ncbi.nlm.nih.gov/pubmed/32506573
http://dx.doi.org/10.1111/tpj.14869
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