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Correction: High throughput approaches reveal splicing of primary microRNA transcripts and tissue specific expression of mature microRNAs in Vitis vinifera

The version of this article published in BMC Genomics 2009, 10:558, contains data in Table 1 which are now known to be unreliable, and an illustration, in Figure 1, of unusual miRNA processing events predicted by these unreliable data. In this full-length correction, new data replace those found to...

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Autores principales: Mica, Erica, Piccolo, Viviana, Delledonne, Massimo, Ferrarini, Alberto, Pezzotti, Mario, Casati, Cesare, Del Fabbro, Cristian, Valle, Giorgio, Policriti, Alberto, Morgante, Michele, Pesole, Graziano, Pè, M Enrico, Horner, David S
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2831844/
https://www.ncbi.nlm.nih.gov/pubmed/20152027
http://dx.doi.org/10.1186/1471-2164-11-109
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author Mica, Erica
Piccolo, Viviana
Delledonne, Massimo
Ferrarini, Alberto
Pezzotti, Mario
Casati, Cesare
Del Fabbro, Cristian
Valle, Giorgio
Policriti, Alberto
Morgante, Michele
Pesole, Graziano
Pè, M Enrico
Horner, David S
author_facet Mica, Erica
Piccolo, Viviana
Delledonne, Massimo
Ferrarini, Alberto
Pezzotti, Mario
Casati, Cesare
Del Fabbro, Cristian
Valle, Giorgio
Policriti, Alberto
Morgante, Michele
Pesole, Graziano
Pè, M Enrico
Horner, David S
author_sort Mica, Erica
collection PubMed
description The version of this article published in BMC Genomics 2009, 10:558, contains data in Table 1 which are now known to be unreliable, and an illustration, in Figure 1, of unusual miRNA processing events predicted by these unreliable data. In this full-length correction, new data replace those found to be unreliable, leading to a more straightforward interpretation without altering the principle conclusions of the study. Table 1 and associated methods have been corrected, Figure 1 deleted, supplementary file 1 added, and modifications made to the sections "Deep sequencing of small RNAs from grapevine leaf tissue" and "Microarray analysis of miRNA expression". The editors and authors regret the inconvenience caused to readers by premature publication of the original paper. BACKGROUND: MicroRNAs are short (~21 base) single stranded RNAs that, in plants, are generally coded by specific genes and cleaved specifically from hairpin precursors. MicroRNAs are critical for the regulation of multiple developmental, stress related and other physiological processes in plants. The recent annotation of the genome of the grapevine (Vitis vinifera L.) allowed the identification of many putative conserved microRNA precursors, grouped into multiple gene families. RESULTS: Here we use oligonucleotide arrays to provide the first indication that many of these microRNAs show differential expression patterns between tissues and during the maturation of fruit in the grapevine. Furthermore we demonstrate that whole transcriptome sequencing and deep-sequencing of small RNA fractions can be used both to identify which microRNA precursors are expressed in different tissues and to estimate genomic coordinates and patterns of splicing and alternative splicing for many primary miRNA transcripts. CONCLUSIONS: Our results show that many microRNAs are differentially expressed in different tissues and during fruit maturation in the grapevine. Furthermore, the demonstration that whole transcriptome sequencing can be used to identify candidate splicing events and approximate primary microRNA transcript coordinates represents a significant step towards the large-scale elucidation of mechanisms regulating the expression of microRNAs at the transcriptional and post-transcriptional levels.
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spelling pubmed-28318442010-03-04 Correction: High throughput approaches reveal splicing of primary microRNA transcripts and tissue specific expression of mature microRNAs in Vitis vinifera Mica, Erica Piccolo, Viviana Delledonne, Massimo Ferrarini, Alberto Pezzotti, Mario Casati, Cesare Del Fabbro, Cristian Valle, Giorgio Policriti, Alberto Morgante, Michele Pesole, Graziano Pè, M Enrico Horner, David S BMC Genomics Correction The version of this article published in BMC Genomics 2009, 10:558, contains data in Table 1 which are now known to be unreliable, and an illustration, in Figure 1, of unusual miRNA processing events predicted by these unreliable data. In this full-length correction, new data replace those found to be unreliable, leading to a more straightforward interpretation without altering the principle conclusions of the study. Table 1 and associated methods have been corrected, Figure 1 deleted, supplementary file 1 added, and modifications made to the sections "Deep sequencing of small RNAs from grapevine leaf tissue" and "Microarray analysis of miRNA expression". The editors and authors regret the inconvenience caused to readers by premature publication of the original paper. BACKGROUND: MicroRNAs are short (~21 base) single stranded RNAs that, in plants, are generally coded by specific genes and cleaved specifically from hairpin precursors. MicroRNAs are critical for the regulation of multiple developmental, stress related and other physiological processes in plants. The recent annotation of the genome of the grapevine (Vitis vinifera L.) allowed the identification of many putative conserved microRNA precursors, grouped into multiple gene families. RESULTS: Here we use oligonucleotide arrays to provide the first indication that many of these microRNAs show differential expression patterns between tissues and during the maturation of fruit in the grapevine. Furthermore we demonstrate that whole transcriptome sequencing and deep-sequencing of small RNA fractions can be used both to identify which microRNA precursors are expressed in different tissues and to estimate genomic coordinates and patterns of splicing and alternative splicing for many primary miRNA transcripts. CONCLUSIONS: Our results show that many microRNAs are differentially expressed in different tissues and during fruit maturation in the grapevine. Furthermore, the demonstration that whole transcriptome sequencing can be used to identify candidate splicing events and approximate primary microRNA transcript coordinates represents a significant step towards the large-scale elucidation of mechanisms regulating the expression of microRNAs at the transcriptional and post-transcriptional levels. BioMed Central 2010-02-12 /pmc/articles/PMC2831844/ /pubmed/20152027 http://dx.doi.org/10.1186/1471-2164-11-109 Text en Copyright ©2010 Mica et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Correction
Mica, Erica
Piccolo, Viviana
Delledonne, Massimo
Ferrarini, Alberto
Pezzotti, Mario
Casati, Cesare
Del Fabbro, Cristian
Valle, Giorgio
Policriti, Alberto
Morgante, Michele
Pesole, Graziano
Pè, M Enrico
Horner, David S
Correction: High throughput approaches reveal splicing of primary microRNA transcripts and tissue specific expression of mature microRNAs in Vitis vinifera
title Correction: High throughput approaches reveal splicing of primary microRNA transcripts and tissue specific expression of mature microRNAs in Vitis vinifera
title_full Correction: High throughput approaches reveal splicing of primary microRNA transcripts and tissue specific expression of mature microRNAs in Vitis vinifera
title_fullStr Correction: High throughput approaches reveal splicing of primary microRNA transcripts and tissue specific expression of mature microRNAs in Vitis vinifera
title_full_unstemmed Correction: High throughput approaches reveal splicing of primary microRNA transcripts and tissue specific expression of mature microRNAs in Vitis vinifera
title_short Correction: High throughput approaches reveal splicing of primary microRNA transcripts and tissue specific expression of mature microRNAs in Vitis vinifera
title_sort correction: high throughput approaches reveal splicing of primary microrna transcripts and tissue specific expression of mature micrornas in vitis vinifera
topic Correction
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2831844/
https://www.ncbi.nlm.nih.gov/pubmed/20152027
http://dx.doi.org/10.1186/1471-2164-11-109
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