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Transcriptome Mining Provides Insights into Cell Wall Metabolism and Fiber Lignification in Agave tequilana Weber

Resilience of growing in arid and semiarid regions and a high capacity of accumulating sugar-rich biomass with low lignin percentages have placed Agave species as an emerging bioenergy crop. Although transcriptome sequencing of fiber-producing agave species has been explored, molecular bases that co...

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Autores principales: Maceda-López, Luis F., Góngora-Castillo, Elsa B., Ibarra-Laclette, Enrique, Morán-Velázquez, Dalia C., Girón Ramírez, Amaranta, Bourdon, Matthieu, Villalpando-Aguilar, José L., Toomer, Gabriela, Tang, John Z., Azadi, Parastoo, Santamaría, Jorge M., López-Rosas, Itzel, López, Mercedes G., Simpson, June, Alatorre-Cobos, Fulgencio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9182668/
https://www.ncbi.nlm.nih.gov/pubmed/35684270
http://dx.doi.org/10.3390/plants11111496
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author Maceda-López, Luis F.
Góngora-Castillo, Elsa B.
Ibarra-Laclette, Enrique
Morán-Velázquez, Dalia C.
Girón Ramírez, Amaranta
Bourdon, Matthieu
Villalpando-Aguilar, José L.
Toomer, Gabriela
Tang, John Z.
Azadi, Parastoo
Santamaría, Jorge M.
López-Rosas, Itzel
López, Mercedes G.
Simpson, June
Alatorre-Cobos, Fulgencio
author_facet Maceda-López, Luis F.
Góngora-Castillo, Elsa B.
Ibarra-Laclette, Enrique
Morán-Velázquez, Dalia C.
Girón Ramírez, Amaranta
Bourdon, Matthieu
Villalpando-Aguilar, José L.
Toomer, Gabriela
Tang, John Z.
Azadi, Parastoo
Santamaría, Jorge M.
López-Rosas, Itzel
López, Mercedes G.
Simpson, June
Alatorre-Cobos, Fulgencio
author_sort Maceda-López, Luis F.
collection PubMed
description Resilience of growing in arid and semiarid regions and a high capacity of accumulating sugar-rich biomass with low lignin percentages have placed Agave species as an emerging bioenergy crop. Although transcriptome sequencing of fiber-producing agave species has been explored, molecular bases that control wall cell biogenesis and metabolism in agave species are still poorly understood. Here, through RNAseq data mining, we reconstructed the cellulose biosynthesis pathway and the phenylpropanoid route producing lignin monomers in A. tequilana, and evaluated their expression patterns in silico and experimentally. Most of the orthologs retrieved showed differential expression levels when they were analyzed in different tissues with contrasting cellulose and lignin accumulation. Phylogenetic and structural motif analyses of putative CESA and CAD proteins allowed to identify those potentially involved with secondary cell wall formation. RT-qPCR assays revealed enhanced expression levels of AtqCAD5 and AtqCESA7 in parenchyma cells associated with extraxylary fibers, suggesting a mechanism of formation of sclerenchyma fibers in Agave similar to that reported for xylem cells in model eudicots. Overall, our results provide a framework for understanding molecular bases underlying cell wall biogenesis in Agave species studying mechanisms involving in leaf fiber development in monocots.
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spelling pubmed-91826682022-06-10 Transcriptome Mining Provides Insights into Cell Wall Metabolism and Fiber Lignification in Agave tequilana Weber Maceda-López, Luis F. Góngora-Castillo, Elsa B. Ibarra-Laclette, Enrique Morán-Velázquez, Dalia C. Girón Ramírez, Amaranta Bourdon, Matthieu Villalpando-Aguilar, José L. Toomer, Gabriela Tang, John Z. Azadi, Parastoo Santamaría, Jorge M. López-Rosas, Itzel López, Mercedes G. Simpson, June Alatorre-Cobos, Fulgencio Plants (Basel) Article Resilience of growing in arid and semiarid regions and a high capacity of accumulating sugar-rich biomass with low lignin percentages have placed Agave species as an emerging bioenergy crop. Although transcriptome sequencing of fiber-producing agave species has been explored, molecular bases that control wall cell biogenesis and metabolism in agave species are still poorly understood. Here, through RNAseq data mining, we reconstructed the cellulose biosynthesis pathway and the phenylpropanoid route producing lignin monomers in A. tequilana, and evaluated their expression patterns in silico and experimentally. Most of the orthologs retrieved showed differential expression levels when they were analyzed in different tissues with contrasting cellulose and lignin accumulation. Phylogenetic and structural motif analyses of putative CESA and CAD proteins allowed to identify those potentially involved with secondary cell wall formation. RT-qPCR assays revealed enhanced expression levels of AtqCAD5 and AtqCESA7 in parenchyma cells associated with extraxylary fibers, suggesting a mechanism of formation of sclerenchyma fibers in Agave similar to that reported for xylem cells in model eudicots. Overall, our results provide a framework for understanding molecular bases underlying cell wall biogenesis in Agave species studying mechanisms involving in leaf fiber development in monocots. MDPI 2022-06-02 /pmc/articles/PMC9182668/ /pubmed/35684270 http://dx.doi.org/10.3390/plants11111496 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Maceda-López, Luis F.
Góngora-Castillo, Elsa B.
Ibarra-Laclette, Enrique
Morán-Velázquez, Dalia C.
Girón Ramírez, Amaranta
Bourdon, Matthieu
Villalpando-Aguilar, José L.
Toomer, Gabriela
Tang, John Z.
Azadi, Parastoo
Santamaría, Jorge M.
López-Rosas, Itzel
López, Mercedes G.
Simpson, June
Alatorre-Cobos, Fulgencio
Transcriptome Mining Provides Insights into Cell Wall Metabolism and Fiber Lignification in Agave tequilana Weber
title Transcriptome Mining Provides Insights into Cell Wall Metabolism and Fiber Lignification in Agave tequilana Weber
title_full Transcriptome Mining Provides Insights into Cell Wall Metabolism and Fiber Lignification in Agave tequilana Weber
title_fullStr Transcriptome Mining Provides Insights into Cell Wall Metabolism and Fiber Lignification in Agave tequilana Weber
title_full_unstemmed Transcriptome Mining Provides Insights into Cell Wall Metabolism and Fiber Lignification in Agave tequilana Weber
title_short Transcriptome Mining Provides Insights into Cell Wall Metabolism and Fiber Lignification in Agave tequilana Weber
title_sort transcriptome mining provides insights into cell wall metabolism and fiber lignification in agave tequilana weber
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9182668/
https://www.ncbi.nlm.nih.gov/pubmed/35684270
http://dx.doi.org/10.3390/plants11111496
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