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Deep Sequencing of Maize Small RNAs Reveals a Diverse Set of MicroRNA in Dry and Imbibed Seeds

Seed germination plays a pivotal role during the life cycle of plants. As dry seeds imbibe water, the resumption of energy metabolism and cellular repair occur and miRNA-mediated gene expression regulation is involved in the reactivation events. This research was aimed at understanding the role of m...

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Autores principales: Li, Detao, Wang, Liwen, Liu, Xu, Cui, Dezhou, Chen, Tingting, Zhang, Hua, Jiang, Chuan, Xu, Chunyan, Li, Peng, Li, Song, Zhao, Li, Chen, Huabang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3554676/
https://www.ncbi.nlm.nih.gov/pubmed/23359822
http://dx.doi.org/10.1371/journal.pone.0055107
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author Li, Detao
Wang, Liwen
Liu, Xu
Cui, Dezhou
Chen, Tingting
Zhang, Hua
Jiang, Chuan
Xu, Chunyan
Li, Peng
Li, Song
Zhao, Li
Chen, Huabang
author_facet Li, Detao
Wang, Liwen
Liu, Xu
Cui, Dezhou
Chen, Tingting
Zhang, Hua
Jiang, Chuan
Xu, Chunyan
Li, Peng
Li, Song
Zhao, Li
Chen, Huabang
author_sort Li, Detao
collection PubMed
description Seed germination plays a pivotal role during the life cycle of plants. As dry seeds imbibe water, the resumption of energy metabolism and cellular repair occur and miRNA-mediated gene expression regulation is involved in the reactivation events. This research was aimed at understanding the role of miRNA in the molecular control during seed imbibition process. Small RNA libraries constructed from dry and imbibed maize seed embryos were sequenced using the Illumina platform. Twenty-four conserved miRNA families were identified in both libraries. Sixteen of them showed significant expression differences between dry and imbibed seeds. Twelve miRNA families, miR156, miR159, miR164, miR166, miR167, miR168, miR169, miR172, miR319, miR393, miR394 and miR397, were significantly down-regulated; while four families, miR398, miR408, miR528 and miR529, were significantly up-regulated in imbibed seeds compared to that in dry seeds. Furthermore, putative novel maize miRNAs and their target genes were predicted. Target gene GO analysis was performed for novel miRNAs that were sequenced more than 50 times in the normalized libraries. The result showed that carbohydrate catabolic related genes were specifically enriched in the dry seed, while in imbibed seed target gene enrichment covered a broad range of functional categories including genes in amino acid biosynthesis, isomerase activity, ligase activity and others. The sequencing results were partially validated by quantitative RT-PCR for both conserved and novel miRNAs and the predicted target genes. Our data suggested that diverse and complex miRNAs are involved in the seed imbibition process. That miRNA are involved in plant hormone regulation may play important roles during the dry-imbibed seed transition.
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spelling pubmed-35546762013-01-28 Deep Sequencing of Maize Small RNAs Reveals a Diverse Set of MicroRNA in Dry and Imbibed Seeds Li, Detao Wang, Liwen Liu, Xu Cui, Dezhou Chen, Tingting Zhang, Hua Jiang, Chuan Xu, Chunyan Li, Peng Li, Song Zhao, Li Chen, Huabang PLoS One Research Article Seed germination plays a pivotal role during the life cycle of plants. As dry seeds imbibe water, the resumption of energy metabolism and cellular repair occur and miRNA-mediated gene expression regulation is involved in the reactivation events. This research was aimed at understanding the role of miRNA in the molecular control during seed imbibition process. Small RNA libraries constructed from dry and imbibed maize seed embryos were sequenced using the Illumina platform. Twenty-four conserved miRNA families were identified in both libraries. Sixteen of them showed significant expression differences between dry and imbibed seeds. Twelve miRNA families, miR156, miR159, miR164, miR166, miR167, miR168, miR169, miR172, miR319, miR393, miR394 and miR397, were significantly down-regulated; while four families, miR398, miR408, miR528 and miR529, were significantly up-regulated in imbibed seeds compared to that in dry seeds. Furthermore, putative novel maize miRNAs and their target genes were predicted. Target gene GO analysis was performed for novel miRNAs that were sequenced more than 50 times in the normalized libraries. The result showed that carbohydrate catabolic related genes were specifically enriched in the dry seed, while in imbibed seed target gene enrichment covered a broad range of functional categories including genes in amino acid biosynthesis, isomerase activity, ligase activity and others. The sequencing results were partially validated by quantitative RT-PCR for both conserved and novel miRNAs and the predicted target genes. Our data suggested that diverse and complex miRNAs are involved in the seed imbibition process. That miRNA are involved in plant hormone regulation may play important roles during the dry-imbibed seed transition. Public Library of Science 2013-01-24 /pmc/articles/PMC3554676/ /pubmed/23359822 http://dx.doi.org/10.1371/journal.pone.0055107 Text en © 2013 Li 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
Li, Detao
Wang, Liwen
Liu, Xu
Cui, Dezhou
Chen, Tingting
Zhang, Hua
Jiang, Chuan
Xu, Chunyan
Li, Peng
Li, Song
Zhao, Li
Chen, Huabang
Deep Sequencing of Maize Small RNAs Reveals a Diverse Set of MicroRNA in Dry and Imbibed Seeds
title Deep Sequencing of Maize Small RNAs Reveals a Diverse Set of MicroRNA in Dry and Imbibed Seeds
title_full Deep Sequencing of Maize Small RNAs Reveals a Diverse Set of MicroRNA in Dry and Imbibed Seeds
title_fullStr Deep Sequencing of Maize Small RNAs Reveals a Diverse Set of MicroRNA in Dry and Imbibed Seeds
title_full_unstemmed Deep Sequencing of Maize Small RNAs Reveals a Diverse Set of MicroRNA in Dry and Imbibed Seeds
title_short Deep Sequencing of Maize Small RNAs Reveals a Diverse Set of MicroRNA in Dry and Imbibed Seeds
title_sort deep sequencing of maize small rnas reveals a diverse set of microrna in dry and imbibed seeds
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3554676/
https://www.ncbi.nlm.nih.gov/pubmed/23359822
http://dx.doi.org/10.1371/journal.pone.0055107
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