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A combined transcriptome - miRNAome approach revealed that a kinesin gene is differentially targeted by a novel miRNA in an apomictic genotype of Eragrostis curvula

Weeping lovegrass (Eragrostis curvula [Shrad.] Nees) is a perennial grass typically established in semi-arid regions, with good adaptability to dry conditions and sandy soils. This polymorphic complex includes both sexual and apomictic cytotypes, with different ploidy levels (2x-8x). Diploids are kn...

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Autores principales: Pasten, María Cielo, Carballo, José, Gallardo, Jimena, Zappacosta, Diego, Selva, Juan Pablo, Rodrigo, Juan Manuel, Echenique, Viviana, Garbus, Ingrid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9563718/
https://www.ncbi.nlm.nih.gov/pubmed/36247597
http://dx.doi.org/10.3389/fpls.2022.1012682
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author Pasten, María Cielo
Carballo, José
Gallardo, Jimena
Zappacosta, Diego
Selva, Juan Pablo
Rodrigo, Juan Manuel
Echenique, Viviana
Garbus, Ingrid
author_facet Pasten, María Cielo
Carballo, José
Gallardo, Jimena
Zappacosta, Diego
Selva, Juan Pablo
Rodrigo, Juan Manuel
Echenique, Viviana
Garbus, Ingrid
author_sort Pasten, María Cielo
collection PubMed
description Weeping lovegrass (Eragrostis curvula [Shrad.] Nees) is a perennial grass typically established in semi-arid regions, with good adaptability to dry conditions and sandy soils. This polymorphic complex includes both sexual and apomictic cytotypes, with different ploidy levels (2x-8x). Diploids are known to be sexual, while most polyploids are facultative apomicts, and full apomicts have also been reported. Plant breeding studies throughout the years have focused on achieving the introgression of apomixis into species of agricultural relevance, but, given the complexity of the trait, a deeper understanding of the molecular basis of regulatory mechanisms of apomixis is still required. Apomixis is thought to be associated with silencing or disruption of the sexual pathway, and studies have shown it is influenced by epigenetic mechanisms. In a previous study, we explored the role of miRNA-mRNA interactions using two contrasting E. curvula phenotypes. Here, the sexual OTA-S, the facultative Don Walter and the obligate apomictic Tanganyika cDNA and sRNA libraries were inquired, searching for miRNA discovery and miRNA expression regulation of genes related to the reproductive mode. This allowed for the characterization of seven miRNAs and the validation of their miRNA-target interactions. Interestingly, a kinesin gene was found to be repressed in the apomictic cultivar Tanganyika, targeted by a novel miRNA that was found to be overexpressed in this genotype, suggestive of an involvement in the reproductive mode expression. Our work provided additional evidence of the contribution of the epigenetic regulation of the apomictic pathway.
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spelling pubmed-95637182022-10-15 A combined transcriptome - miRNAome approach revealed that a kinesin gene is differentially targeted by a novel miRNA in an apomictic genotype of Eragrostis curvula Pasten, María Cielo Carballo, José Gallardo, Jimena Zappacosta, Diego Selva, Juan Pablo Rodrigo, Juan Manuel Echenique, Viviana Garbus, Ingrid Front Plant Sci Plant Science Weeping lovegrass (Eragrostis curvula [Shrad.] Nees) is a perennial grass typically established in semi-arid regions, with good adaptability to dry conditions and sandy soils. This polymorphic complex includes both sexual and apomictic cytotypes, with different ploidy levels (2x-8x). Diploids are known to be sexual, while most polyploids are facultative apomicts, and full apomicts have also been reported. Plant breeding studies throughout the years have focused on achieving the introgression of apomixis into species of agricultural relevance, but, given the complexity of the trait, a deeper understanding of the molecular basis of regulatory mechanisms of apomixis is still required. Apomixis is thought to be associated with silencing or disruption of the sexual pathway, and studies have shown it is influenced by epigenetic mechanisms. In a previous study, we explored the role of miRNA-mRNA interactions using two contrasting E. curvula phenotypes. Here, the sexual OTA-S, the facultative Don Walter and the obligate apomictic Tanganyika cDNA and sRNA libraries were inquired, searching for miRNA discovery and miRNA expression regulation of genes related to the reproductive mode. This allowed for the characterization of seven miRNAs and the validation of their miRNA-target interactions. Interestingly, a kinesin gene was found to be repressed in the apomictic cultivar Tanganyika, targeted by a novel miRNA that was found to be overexpressed in this genotype, suggestive of an involvement in the reproductive mode expression. Our work provided additional evidence of the contribution of the epigenetic regulation of the apomictic pathway. Frontiers Media S.A. 2022-09-30 /pmc/articles/PMC9563718/ /pubmed/36247597 http://dx.doi.org/10.3389/fpls.2022.1012682 Text en Copyright © 2022 Pasten, Carballo, Gallardo, Zappacosta, Selva, Rodrigo, Echenique and Garbus https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Pasten, María Cielo
Carballo, José
Gallardo, Jimena
Zappacosta, Diego
Selva, Juan Pablo
Rodrigo, Juan Manuel
Echenique, Viviana
Garbus, Ingrid
A combined transcriptome - miRNAome approach revealed that a kinesin gene is differentially targeted by a novel miRNA in an apomictic genotype of Eragrostis curvula
title A combined transcriptome - miRNAome approach revealed that a kinesin gene is differentially targeted by a novel miRNA in an apomictic genotype of Eragrostis curvula
title_full A combined transcriptome - miRNAome approach revealed that a kinesin gene is differentially targeted by a novel miRNA in an apomictic genotype of Eragrostis curvula
title_fullStr A combined transcriptome - miRNAome approach revealed that a kinesin gene is differentially targeted by a novel miRNA in an apomictic genotype of Eragrostis curvula
title_full_unstemmed A combined transcriptome - miRNAome approach revealed that a kinesin gene is differentially targeted by a novel miRNA in an apomictic genotype of Eragrostis curvula
title_short A combined transcriptome - miRNAome approach revealed that a kinesin gene is differentially targeted by a novel miRNA in an apomictic genotype of Eragrostis curvula
title_sort combined transcriptome - mirnaome approach revealed that a kinesin gene is differentially targeted by a novel mirna in an apomictic genotype of eragrostis curvula
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9563718/
https://www.ncbi.nlm.nih.gov/pubmed/36247597
http://dx.doi.org/10.3389/fpls.2022.1012682
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