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Differential sRNA Regulation in Leaves and Roots of Sugarcane under Water Depletion

Plants have developed multiple regulatory mechanisms to respond and adapt to stress. Drought stress is one of the major constraints to agricultural productivity worldwide and recent reports have highlighted the importance of plant sRNA in the response and adaptation to water availability. In order t...

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Autores principales: Thiebaut, Flávia, Grativol, Clícia, Tanurdzic, Milos, Carnavale-Bottino, Mariana, Vieira, Tauan, Motta, Mariana Romeiro, Rojas, Cristian, Vincentini, Renato, Chabregas, Sabrina Moutinho, Hemerly, Adriana Silva, Martienssen, Robert A., Ferreira, Paulo Cavalcanti Gomes
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3973653/
https://www.ncbi.nlm.nih.gov/pubmed/24695493
http://dx.doi.org/10.1371/journal.pone.0093822
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author Thiebaut, Flávia
Grativol, Clícia
Tanurdzic, Milos
Carnavale-Bottino, Mariana
Vieira, Tauan
Motta, Mariana Romeiro
Rojas, Cristian
Vincentini, Renato
Chabregas, Sabrina Moutinho
Hemerly, Adriana Silva
Martienssen, Robert A.
Ferreira, Paulo Cavalcanti Gomes
author_facet Thiebaut, Flávia
Grativol, Clícia
Tanurdzic, Milos
Carnavale-Bottino, Mariana
Vieira, Tauan
Motta, Mariana Romeiro
Rojas, Cristian
Vincentini, Renato
Chabregas, Sabrina Moutinho
Hemerly, Adriana Silva
Martienssen, Robert A.
Ferreira, Paulo Cavalcanti Gomes
author_sort Thiebaut, Flávia
collection PubMed
description Plants have developed multiple regulatory mechanisms to respond and adapt to stress. Drought stress is one of the major constraints to agricultural productivity worldwide and recent reports have highlighted the importance of plant sRNA in the response and adaptation to water availability. In order to increase our understanding of the roles of sRNA in response to water depletion, cultivars of sugarcane were submitted to treatment of ceasing drip irrigation for 24 hours. Deep sequencing analysis was carried out to identify the sRNA regulated in leaves and roots of sugarcane cultivars with different drought sensitivities. The pool of sRNA selected allowed the analysis of different sRNA classes (miRNA and siRNA). Twenty-eight and 36 families of conserved miRNA were identified in leaf and root libraries, respectively. Dynamic regulation of miRNA was observed and the expression profiles of eight miRNA were verified in leaf samples from three biological replicates by stem-loop qRT-PCR assay using the cultivars: SP90–1638 - sensitive cultivar- and; SP83–2847 and SP83–5073 - tolerant cultivars. Altered miRNA regulation was correlated with changes in mRNA levels of specific targets. Two leaf libraries from individual sugarcane cultivars with contrasting drought-tolerance properties were also analyzed. An enrichment of 22-nt sRNA species was observed in leaf libraries. 22-nt miRNA triggered siRNA production by cleavage of their targets in response to water depletion. A number of genes of the sRNA biogenesis pathway were down-regulated in tolerant genotypes and up-regulated in sensitive in response to water depletion treatment. Our analysis contributes to increase the knowledge on the roles of sRNA in sugarcane submitted to water depletion.
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spelling pubmed-39736532014-04-04 Differential sRNA Regulation in Leaves and Roots of Sugarcane under Water Depletion Thiebaut, Flávia Grativol, Clícia Tanurdzic, Milos Carnavale-Bottino, Mariana Vieira, Tauan Motta, Mariana Romeiro Rojas, Cristian Vincentini, Renato Chabregas, Sabrina Moutinho Hemerly, Adriana Silva Martienssen, Robert A. Ferreira, Paulo Cavalcanti Gomes PLoS One Research Article Plants have developed multiple regulatory mechanisms to respond and adapt to stress. Drought stress is one of the major constraints to agricultural productivity worldwide and recent reports have highlighted the importance of plant sRNA in the response and adaptation to water availability. In order to increase our understanding of the roles of sRNA in response to water depletion, cultivars of sugarcane were submitted to treatment of ceasing drip irrigation for 24 hours. Deep sequencing analysis was carried out to identify the sRNA regulated in leaves and roots of sugarcane cultivars with different drought sensitivities. The pool of sRNA selected allowed the analysis of different sRNA classes (miRNA and siRNA). Twenty-eight and 36 families of conserved miRNA were identified in leaf and root libraries, respectively. Dynamic regulation of miRNA was observed and the expression profiles of eight miRNA were verified in leaf samples from three biological replicates by stem-loop qRT-PCR assay using the cultivars: SP90–1638 - sensitive cultivar- and; SP83–2847 and SP83–5073 - tolerant cultivars. Altered miRNA regulation was correlated with changes in mRNA levels of specific targets. Two leaf libraries from individual sugarcane cultivars with contrasting drought-tolerance properties were also analyzed. An enrichment of 22-nt sRNA species was observed in leaf libraries. 22-nt miRNA triggered siRNA production by cleavage of their targets in response to water depletion. A number of genes of the sRNA biogenesis pathway were down-regulated in tolerant genotypes and up-regulated in sensitive in response to water depletion treatment. Our analysis contributes to increase the knowledge on the roles of sRNA in sugarcane submitted to water depletion. Public Library of Science 2014-04-02 /pmc/articles/PMC3973653/ /pubmed/24695493 http://dx.doi.org/10.1371/journal.pone.0093822 Text en © 2014 Thiebaut 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
Thiebaut, Flávia
Grativol, Clícia
Tanurdzic, Milos
Carnavale-Bottino, Mariana
Vieira, Tauan
Motta, Mariana Romeiro
Rojas, Cristian
Vincentini, Renato
Chabregas, Sabrina Moutinho
Hemerly, Adriana Silva
Martienssen, Robert A.
Ferreira, Paulo Cavalcanti Gomes
Differential sRNA Regulation in Leaves and Roots of Sugarcane under Water Depletion
title Differential sRNA Regulation in Leaves and Roots of Sugarcane under Water Depletion
title_full Differential sRNA Regulation in Leaves and Roots of Sugarcane under Water Depletion
title_fullStr Differential sRNA Regulation in Leaves and Roots of Sugarcane under Water Depletion
title_full_unstemmed Differential sRNA Regulation in Leaves and Roots of Sugarcane under Water Depletion
title_short Differential sRNA Regulation in Leaves and Roots of Sugarcane under Water Depletion
title_sort differential srna regulation in leaves and roots of sugarcane under water depletion
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3973653/
https://www.ncbi.nlm.nih.gov/pubmed/24695493
http://dx.doi.org/10.1371/journal.pone.0093822
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