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DRB2 Is Required for MicroRNA Biogenesis in Arabidopsis thaliana

BACKGROUND: The Arabidopsis thaliana (Arabidopsis) DOUBLE-STRANDED RNA BINDING (DRB) protein family consists of five members, DRB1 to DRB5. The biogenesis of two developmentally important small RNA (sRNA) species, the microRNAs (miRNAs) and trans-acting small interfering RNAs (tasiRNAs) by DICER-LIK...

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Autores principales: Eamens, Andrew L., Kim, Ki Wook, Curtin, Shaun J., Waterhouse, Peter M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3335824/
https://www.ncbi.nlm.nih.gov/pubmed/22545148
http://dx.doi.org/10.1371/journal.pone.0035933
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author Eamens, Andrew L.
Kim, Ki Wook
Curtin, Shaun J.
Waterhouse, Peter M.
author_facet Eamens, Andrew L.
Kim, Ki Wook
Curtin, Shaun J.
Waterhouse, Peter M.
author_sort Eamens, Andrew L.
collection PubMed
description BACKGROUND: The Arabidopsis thaliana (Arabidopsis) DOUBLE-STRANDED RNA BINDING (DRB) protein family consists of five members, DRB1 to DRB5. The biogenesis of two developmentally important small RNA (sRNA) species, the microRNAs (miRNAs) and trans-acting small interfering RNAs (tasiRNAs) by DICER-LIKE (DCL) endonucleases requires the assistance of DRB1 and DRB4 respectively. The importance of miRNA-directed target gene expression in plant development is exemplified by the phenotypic consequence of loss of DRB1 activity (drb1 plants). PRINCIPAL FINDINGS: Here we report that the developmental phenotype of the drb235 triple mutant plant is the result of deregulated miRNA biogenesis in the shoot apical meristem (SAM) region. The expression of DRB2, DRB3 and DRB5 in wild-type seedlings is restricted to the SAM region. Small RNA sequencing of the corresponding tissue of drb235 plants revealed altered miRNA accumulation. Approximately half of the miRNAs detected remained at levels equivalent to those of wild-type plants. However, the accumulation of the remaining miRNAs was either elevated or reduced in the triple mutant. Examination of different single and multiple drb mutants revealed a clear association between the loss of DRB2 activity and altered accumulation for both the elevated and reduced miRNA classes. Furthermore, we show that the constitutive over-expression of DRB2 outside of its wild-type expression domain can compensate for the loss of DRB1 activity in drb1 plants. CONCLUSIONS/SIGNIFICANCE: Our results suggest that in the SAM region, DRB2 is both antagonistic and synergistic to the role of DRB1 in miRNA biogenesis, adding an additional layer of gene regulatory complexity in this developmentally important tissue.
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spelling pubmed-33358242012-04-27 DRB2 Is Required for MicroRNA Biogenesis in Arabidopsis thaliana Eamens, Andrew L. Kim, Ki Wook Curtin, Shaun J. Waterhouse, Peter M. PLoS One Research Article BACKGROUND: The Arabidopsis thaliana (Arabidopsis) DOUBLE-STRANDED RNA BINDING (DRB) protein family consists of five members, DRB1 to DRB5. The biogenesis of two developmentally important small RNA (sRNA) species, the microRNAs (miRNAs) and trans-acting small interfering RNAs (tasiRNAs) by DICER-LIKE (DCL) endonucleases requires the assistance of DRB1 and DRB4 respectively. The importance of miRNA-directed target gene expression in plant development is exemplified by the phenotypic consequence of loss of DRB1 activity (drb1 plants). PRINCIPAL FINDINGS: Here we report that the developmental phenotype of the drb235 triple mutant plant is the result of deregulated miRNA biogenesis in the shoot apical meristem (SAM) region. The expression of DRB2, DRB3 and DRB5 in wild-type seedlings is restricted to the SAM region. Small RNA sequencing of the corresponding tissue of drb235 plants revealed altered miRNA accumulation. Approximately half of the miRNAs detected remained at levels equivalent to those of wild-type plants. However, the accumulation of the remaining miRNAs was either elevated or reduced in the triple mutant. Examination of different single and multiple drb mutants revealed a clear association between the loss of DRB2 activity and altered accumulation for both the elevated and reduced miRNA classes. Furthermore, we show that the constitutive over-expression of DRB2 outside of its wild-type expression domain can compensate for the loss of DRB1 activity in drb1 plants. CONCLUSIONS/SIGNIFICANCE: Our results suggest that in the SAM region, DRB2 is both antagonistic and synergistic to the role of DRB1 in miRNA biogenesis, adding an additional layer of gene regulatory complexity in this developmentally important tissue. Public Library of Science 2012-04-24 /pmc/articles/PMC3335824/ /pubmed/22545148 http://dx.doi.org/10.1371/journal.pone.0035933 Text en Eamens et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Eamens, Andrew L.
Kim, Ki Wook
Curtin, Shaun J.
Waterhouse, Peter M.
DRB2 Is Required for MicroRNA Biogenesis in Arabidopsis thaliana
title DRB2 Is Required for MicroRNA Biogenesis in Arabidopsis thaliana
title_full DRB2 Is Required for MicroRNA Biogenesis in Arabidopsis thaliana
title_fullStr DRB2 Is Required for MicroRNA Biogenesis in Arabidopsis thaliana
title_full_unstemmed DRB2 Is Required for MicroRNA Biogenesis in Arabidopsis thaliana
title_short DRB2 Is Required for MicroRNA Biogenesis in Arabidopsis thaliana
title_sort drb2 is required for microrna biogenesis in arabidopsis thaliana
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3335824/
https://www.ncbi.nlm.nih.gov/pubmed/22545148
http://dx.doi.org/10.1371/journal.pone.0035933
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