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Tissue and regional expression patterns of dicistronic tRNA–mRNA transcripts in grapevine (Vitis vinifera) and their evolutionary co-appearance with vasculature in land plants

Transfer RNAs (tRNA) are crucial adaptor molecules between messenger RNA (mRNA) and amino acids. Recent evidence in plants suggests that dicistronic tRNA-like structures also act as mobile signals for mRNA transcripts to move between distant tissues. Co-transcription is not a common feature in the p...

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Autores principales: Fabres, Pastor Jullian, Anand, Lakshay, Sai, Na, Pederson, Stephen, Zheng, Fei, Stewart, Alexander A., Clements, Benjamin, Lampugnani, Edwin R., Breen, James, Gilliham, Matthew, Tricker, Penny, Rodríguez López, Carlos M., David, Rakesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8166872/
https://www.ncbi.nlm.nih.gov/pubmed/34059643
http://dx.doi.org/10.1038/s41438-021-00572-5
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author Fabres, Pastor Jullian
Anand, Lakshay
Sai, Na
Pederson, Stephen
Zheng, Fei
Stewart, Alexander A.
Clements, Benjamin
Lampugnani, Edwin R.
Breen, James
Gilliham, Matthew
Tricker, Penny
Rodríguez López, Carlos M.
David, Rakesh
author_facet Fabres, Pastor Jullian
Anand, Lakshay
Sai, Na
Pederson, Stephen
Zheng, Fei
Stewart, Alexander A.
Clements, Benjamin
Lampugnani, Edwin R.
Breen, James
Gilliham, Matthew
Tricker, Penny
Rodríguez López, Carlos M.
David, Rakesh
author_sort Fabres, Pastor Jullian
collection PubMed
description Transfer RNAs (tRNA) are crucial adaptor molecules between messenger RNA (mRNA) and amino acids. Recent evidence in plants suggests that dicistronic tRNA-like structures also act as mobile signals for mRNA transcripts to move between distant tissues. Co-transcription is not a common feature in the plant nuclear genome and, in the few cases where polycistronic transcripts have been found, they include non-coding RNA species, such as small nucleolar RNAs and microRNAs. It is not known, however, the extent to which dicistronic transcripts of tRNA and mRNAs are expressed in field-grown plants, or the factors contributing to their expression. We analysed tRNA–mRNA dicistronic transcripts in the major horticultural crop grapevine (Vitis vinifera) using a novel pipeline developed to identify dicistronic transcripts from high-throughput RNA-sequencing data. We identified dicistronic tRNA–mRNA in leaf and berry samples from 22 commercial vineyards. Of the 124 tRNA genes that were expressed in both tissues, 18 tRNA were expressed forming part of 19 dicistronic tRNA–mRNAs. The presence and abundance of dicistronic molecules was tissue and geographic sub-region specific. In leaves, the expression patterns of dicistronic tRNA–mRNAs significantly correlated with tRNA expression, suggesting that their transcriptional regulation might be linked. We also found evidence of syntenic genomic arrangements of tRNAs and protein-coding genes between grapevine and Arabidopsis thaliana, and widespread prevalence of dicistronic tRNA–mRNA transcripts among vascular land plants but no evidence of these transcripts in non-vascular lineages. This suggests that the appearance of plant vasculature and tRNA–mRNA occurred concurrently during the evolution of land plants.
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spelling pubmed-81668722021-06-15 Tissue and regional expression patterns of dicistronic tRNA–mRNA transcripts in grapevine (Vitis vinifera) and their evolutionary co-appearance with vasculature in land plants Fabres, Pastor Jullian Anand, Lakshay Sai, Na Pederson, Stephen Zheng, Fei Stewart, Alexander A. Clements, Benjamin Lampugnani, Edwin R. Breen, James Gilliham, Matthew Tricker, Penny Rodríguez López, Carlos M. David, Rakesh Hortic Res Article Transfer RNAs (tRNA) are crucial adaptor molecules between messenger RNA (mRNA) and amino acids. Recent evidence in plants suggests that dicistronic tRNA-like structures also act as mobile signals for mRNA transcripts to move between distant tissues. Co-transcription is not a common feature in the plant nuclear genome and, in the few cases where polycistronic transcripts have been found, they include non-coding RNA species, such as small nucleolar RNAs and microRNAs. It is not known, however, the extent to which dicistronic transcripts of tRNA and mRNAs are expressed in field-grown plants, or the factors contributing to their expression. We analysed tRNA–mRNA dicistronic transcripts in the major horticultural crop grapevine (Vitis vinifera) using a novel pipeline developed to identify dicistronic transcripts from high-throughput RNA-sequencing data. We identified dicistronic tRNA–mRNA in leaf and berry samples from 22 commercial vineyards. Of the 124 tRNA genes that were expressed in both tissues, 18 tRNA were expressed forming part of 19 dicistronic tRNA–mRNAs. The presence and abundance of dicistronic molecules was tissue and geographic sub-region specific. In leaves, the expression patterns of dicistronic tRNA–mRNAs significantly correlated with tRNA expression, suggesting that their transcriptional regulation might be linked. We also found evidence of syntenic genomic arrangements of tRNAs and protein-coding genes between grapevine and Arabidopsis thaliana, and widespread prevalence of dicistronic tRNA–mRNA transcripts among vascular land plants but no evidence of these transcripts in non-vascular lineages. This suggests that the appearance of plant vasculature and tRNA–mRNA occurred concurrently during the evolution of land plants. Nature Publishing Group UK 2021-06-01 /pmc/articles/PMC8166872/ /pubmed/34059643 http://dx.doi.org/10.1038/s41438-021-00572-5 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Fabres, Pastor Jullian
Anand, Lakshay
Sai, Na
Pederson, Stephen
Zheng, Fei
Stewart, Alexander A.
Clements, Benjamin
Lampugnani, Edwin R.
Breen, James
Gilliham, Matthew
Tricker, Penny
Rodríguez López, Carlos M.
David, Rakesh
Tissue and regional expression patterns of dicistronic tRNA–mRNA transcripts in grapevine (Vitis vinifera) and their evolutionary co-appearance with vasculature in land plants
title Tissue and regional expression patterns of dicistronic tRNA–mRNA transcripts in grapevine (Vitis vinifera) and their evolutionary co-appearance with vasculature in land plants
title_full Tissue and regional expression patterns of dicistronic tRNA–mRNA transcripts in grapevine (Vitis vinifera) and their evolutionary co-appearance with vasculature in land plants
title_fullStr Tissue and regional expression patterns of dicistronic tRNA–mRNA transcripts in grapevine (Vitis vinifera) and their evolutionary co-appearance with vasculature in land plants
title_full_unstemmed Tissue and regional expression patterns of dicistronic tRNA–mRNA transcripts in grapevine (Vitis vinifera) and their evolutionary co-appearance with vasculature in land plants
title_short Tissue and regional expression patterns of dicistronic tRNA–mRNA transcripts in grapevine (Vitis vinifera) and their evolutionary co-appearance with vasculature in land plants
title_sort tissue and regional expression patterns of dicistronic trna–mrna transcripts in grapevine (vitis vinifera) and their evolutionary co-appearance with vasculature in land plants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8166872/
https://www.ncbi.nlm.nih.gov/pubmed/34059643
http://dx.doi.org/10.1038/s41438-021-00572-5
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