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Temporal Gene Expression in Apical Culms Shows Early Changes in Cell Wall Biosynthesis Genes in Sugarcane

Multiple genes in sugarcane control sucrose accumulation and the biosynthesis of cell wall components; however, it is unclear how these genes are expressed in its apical culms. To better understand this process, we sequenced mRNA from +1 stem internodes collected from four genotypes with different c...

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Autores principales: Hosaka, Guilherme Kenichi, Correr, Fernando Henrique, da Silva, Carla Cristina, Sforça, Danilo Augusto, Barreto, Fernanda Zatti, Balsalobre, Thiago Willian Almeida, Pasha, Asher, de Souza, Anete Pereira, Provart, Nicholas James, Carneiro, Monalisa Sampaio, Margarido, Gabriel Rodrigues Alves
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8710541/
https://www.ncbi.nlm.nih.gov/pubmed/34966397
http://dx.doi.org/10.3389/fpls.2021.736797
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author Hosaka, Guilherme Kenichi
Correr, Fernando Henrique
da Silva, Carla Cristina
Sforça, Danilo Augusto
Barreto, Fernanda Zatti
Balsalobre, Thiago Willian Almeida
Pasha, Asher
de Souza, Anete Pereira
Provart, Nicholas James
Carneiro, Monalisa Sampaio
Margarido, Gabriel Rodrigues Alves
author_facet Hosaka, Guilherme Kenichi
Correr, Fernando Henrique
da Silva, Carla Cristina
Sforça, Danilo Augusto
Barreto, Fernanda Zatti
Balsalobre, Thiago Willian Almeida
Pasha, Asher
de Souza, Anete Pereira
Provart, Nicholas James
Carneiro, Monalisa Sampaio
Margarido, Gabriel Rodrigues Alves
author_sort Hosaka, Guilherme Kenichi
collection PubMed
description Multiple genes in sugarcane control sucrose accumulation and the biosynthesis of cell wall components; however, it is unclear how these genes are expressed in its apical culms. To better understand this process, we sequenced mRNA from +1 stem internodes collected from four genotypes with different concentrations of soluble solids. Culms were collected at four different time points, ranging from six to 12-month-old plants. Here we show differentially expressed genes related to sucrose metabolism and cell wall biosynthesis, including genes encoding invertases, sucrose synthase and cellulose synthase. Our results showed increased expression of invertases in IN84-58, the genotype with lower sugar and higher fiber content, as well as delayed expression of secondary cell wall-related cellulose synthase for the other genotypes. Interestingly, genes involved with hormone metabolism were differentially expressed across time points in the three genotypes with higher soluble solids content. A similar result was observed for genes controlling maturation and transition to reproductive stages, possibly a result of selection against flowering in sugarcane breeding programs. These results indicate that carbon partitioning in apical culms of contrasting genotypes is mainly associated with differential cell wall biosynthesis, and may include early modifications for subsequent sucrose accumulation. Co-expression network analysis identified transcription factors related to growth and development, showing a probable time shift for carbon partitioning occurred in 10-month-old plants.
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spelling pubmed-87105412021-12-28 Temporal Gene Expression in Apical Culms Shows Early Changes in Cell Wall Biosynthesis Genes in Sugarcane Hosaka, Guilherme Kenichi Correr, Fernando Henrique da Silva, Carla Cristina Sforça, Danilo Augusto Barreto, Fernanda Zatti Balsalobre, Thiago Willian Almeida Pasha, Asher de Souza, Anete Pereira Provart, Nicholas James Carneiro, Monalisa Sampaio Margarido, Gabriel Rodrigues Alves Front Plant Sci Plant Science Multiple genes in sugarcane control sucrose accumulation and the biosynthesis of cell wall components; however, it is unclear how these genes are expressed in its apical culms. To better understand this process, we sequenced mRNA from +1 stem internodes collected from four genotypes with different concentrations of soluble solids. Culms were collected at four different time points, ranging from six to 12-month-old plants. Here we show differentially expressed genes related to sucrose metabolism and cell wall biosynthesis, including genes encoding invertases, sucrose synthase and cellulose synthase. Our results showed increased expression of invertases in IN84-58, the genotype with lower sugar and higher fiber content, as well as delayed expression of secondary cell wall-related cellulose synthase for the other genotypes. Interestingly, genes involved with hormone metabolism were differentially expressed across time points in the three genotypes with higher soluble solids content. A similar result was observed for genes controlling maturation and transition to reproductive stages, possibly a result of selection against flowering in sugarcane breeding programs. These results indicate that carbon partitioning in apical culms of contrasting genotypes is mainly associated with differential cell wall biosynthesis, and may include early modifications for subsequent sucrose accumulation. Co-expression network analysis identified transcription factors related to growth and development, showing a probable time shift for carbon partitioning occurred in 10-month-old plants. Frontiers Media S.A. 2021-12-13 /pmc/articles/PMC8710541/ /pubmed/34966397 http://dx.doi.org/10.3389/fpls.2021.736797 Text en Copyright © 2021 Hosaka, Correr, da Silva, Sforça, Barreto, Balsalobre, Pasha, de Souza, Provart, Carneiro and Margarido. 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
Hosaka, Guilherme Kenichi
Correr, Fernando Henrique
da Silva, Carla Cristina
Sforça, Danilo Augusto
Barreto, Fernanda Zatti
Balsalobre, Thiago Willian Almeida
Pasha, Asher
de Souza, Anete Pereira
Provart, Nicholas James
Carneiro, Monalisa Sampaio
Margarido, Gabriel Rodrigues Alves
Temporal Gene Expression in Apical Culms Shows Early Changes in Cell Wall Biosynthesis Genes in Sugarcane
title Temporal Gene Expression in Apical Culms Shows Early Changes in Cell Wall Biosynthesis Genes in Sugarcane
title_full Temporal Gene Expression in Apical Culms Shows Early Changes in Cell Wall Biosynthesis Genes in Sugarcane
title_fullStr Temporal Gene Expression in Apical Culms Shows Early Changes in Cell Wall Biosynthesis Genes in Sugarcane
title_full_unstemmed Temporal Gene Expression in Apical Culms Shows Early Changes in Cell Wall Biosynthesis Genes in Sugarcane
title_short Temporal Gene Expression in Apical Culms Shows Early Changes in Cell Wall Biosynthesis Genes in Sugarcane
title_sort temporal gene expression in apical culms shows early changes in cell wall biosynthesis genes in sugarcane
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8710541/
https://www.ncbi.nlm.nih.gov/pubmed/34966397
http://dx.doi.org/10.3389/fpls.2021.736797
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